Sulfonic acid generator, resist composition, method for producing resist pattern, sulfonate, and resin

By using specific sulfate and sulfuric acid generators in the resist composition, the problem of poor line edge roughness in the prior art is solved, and a better corrosion resistance effect is achieved.

JP2025071809APending Publication Date: 2025-05-08SUMITOMO CHEM CO LTD
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Patent Information

Application Number
JP2024186204
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Priority Date
2023-10-23
Filing Date
2024-10-22
Publication Date
2025-05-08

AI Technical Summary

Technical Problem

It is difficult to form a resist pattern with good linear edge roughness (LER) in the prior art.

Method used

Using a sulfuric acid generator and a resist composition containing a specific sulfate, a resist pattern with improved linear edge roughness is formed through a specific chemical structure and process.

Benefits of technology

A better line edge roughness than conventional corrosion-resistant compositions is achieved, and the quality of the corrosion-resistant pattern is improved.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

To provide a sulfonic acid generator, a resist composition and the like which allow a resist pattern having good line edge roughness to be produced.SOLUTION: There are provided: a sulfonic acid generator which contains a sulfonate represented by formula (I), a resin having a structural unit derived from formula (I), or the like; a resist composition; and the like. [In the formula, Q1, Q2, R11 and R12 each represent an H atom, an F atom or the like; X1 represents -CO-O-, -O-CO- or the like; L1 represents a single bond or a substituted / unsubstituted hydrocarbon group; R2 represents a halogen atom or the like; mm1 represents 0 or 1 and z represents an integer of 0-6; m2 represents an integer of 0-7; X represents an I atom or an S atom, represents an I atom when m22 is 1, and represents an S atom when m22 is 2; R22 represents a substituted / unsubstituted hydrocarbon group; and R33 represents a halogen atom, a haloalkyl group or the like.]SELECTED DRAWING: None
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Description

[Technical field]

[0001] The present invention relates to a sulfonic acid generator, a resist composition, a method for producing a resist pattern, and a sulfonate and a resin. [Background technology]

[0002] Patent Document 1 describes a composition containing a structural unit derived from a sulfonate salt represented by the following formula. TIFF2025071809000001.tif4054 [Prior art documents] [Patent documents]

[0003] [Patent Document 1] JP 2010-132852 A Summary of the Invention [Problem to be solved by the invention]

[0004] The present invention provides a sulfonate that forms a resist pattern that has better line edge roughness (LER) than a resist pattern formed with a resist composition containing the above-mentioned sulfonate. [Means for solving the problem]

[0005] The present invention includes the following inventions. [1] A sulfonate salt represented by formula (I) or a sulfonic acid generator containing a structural unit represented by formula (IP). TIFF2025071809000002.tif79161 [In formula (I) and formula (IP), Q 1 and Q 2 each independently represents a hydrogen atom, a fluorine atom, an alkyl group having 1 to 6 carbon atoms, or a perfluoroalkyl group having 1 to 6 carbon atoms. R 11 and R 12each independently represents a hydrogen atom, a fluorine atom, an alkyl group having 1 to 6 carbon atoms, or a perfluoroalkyl group having 1 to 6 carbon atoms. z represents an integer of 0 to 6, and when z is 2 or more, a plurality of R 11 and R 12 may be the same or different from each other. X 1 represents *-CO-O-, *-O-CO-, *-O-CO-O-, or *-O-, and * represents C(R 11 )(R 12 ) or C(Q 1 )(Q 2 ) binding site. mm1 represents 0 or 1. L 1 represents a single bond or a hydrocarbon group having 1 to 40 carbon atoms which may have a substituent, and -CH2- contained in the hydrocarbon group may be replaced by -O-, -S-, -SO2- or -CO-. R 2 represents a halogen atom, a haloalkyl group having 1 to 12 carbon atoms, or an alkyl group having 1 to 12 carbon atoms, and -CH2- contained in the haloalkyl group and the alkyl group may be replaced by -O- or -CO-. m2 represents an integer of 0 to 7, and when m2 is 2 or more, a plurality of R 2 may be the same or different from each other. X represents an iodine atom or a sulfur atom. R 22 represents a hydrocarbon group having 1 to 36 carbon atoms which may have a substituent, and -CH2- contained in the hydrocarbon group may be replaced by -O-, -S-, -CO- or -SO2-. m22 represents 1 or 2. When m22 is 1, X is an iodine atom. When m22 is 2, X is a sulfur atom. 22 may be joined together to form a ring containing a sulfur atom, and -CH2- contained in the ring may be replaced by -O-, -S-, -CO-, -SO- or -SO2-. R 33represents a halogen atom, a haloalkyl group having 1 to 12 carbon atoms, or a hydrocarbon group having 1 to 18 carbon atoms, the hydrocarbon group optionally having a substituent, and -CH2- contained in the haloalkyl group and the hydrocarbon group may be replaced by -O-, -S-, -CO- or -SO2-. m33 represents an integer of 0 to 4, and when m33 is 2 or more, a plurality of R 33 may be the same or different from each other. L 11 and L 20 each independently represents a single bond or a hydrocarbon group having 1 to 36 carbon atoms which may have a substituent, and -CH2- contained in the hydrocarbon group may be replaced by -O-, -S-, -CO- or -SO2-. R 20 represents a hydrogen atom, a halogen atom or an alkyl group having 1 to 6 carbon atoms which may have a halogen atom. X 20 is a single bond, *-O-**, *-CO-O-**, *-O-CO-O-**, *-CO-NR 21 -**, *-NR 21 -CO-O-**, *-O-CO-NR 21 -** or *-Ax-Ph-Ay-**. R 21 represents a hydrogen atom or an alkyl group having 1 to 6 carbon atoms. Ax and Ay each independently represent one or more bond types selected from the group consisting of a single bond, an ether bond, a thioether bond, an ester bond, an amide bond, and a carbonate bond. Ph represents a phenylene group which may have a substituent. *R 20 represents the bonding site with the carbon atom to which it is bonded, and ** represents L 20 or the bonding site with the benzene ring. [2] m2 is an integer equal to or greater than 1; R 2is an iodine atom, a fluorine atom, a hydroxy group, a carboxy group, an alkoxy group having 1 to 5 carbon atoms, an alkoxyalkoxy group having 2 to 4 carbon atoms, or a haloalkyl group having 1 to 6 carbon atoms (-CH2- contained in the haloalkyl group may be replaced by -O- or -CO-). [3] L 1 is a single bond, *-L 2 -or*-L 2 -X 3 -L 3 -(L 2 represents an optionally substituted chain hydrocarbon group having 1 to 10 carbon atoms, an optionally substituted cyclic hydrocarbon group having 3 to 24 carbon atoms, or a group combining an optionally substituted cyclic hydrocarbon group having 3 to 24 carbon atoms and an optionally substituted chain hydrocarbon group having 1 to 8 carbon atoms, in which -CH2- contained in the cyclic hydrocarbon group may be replaced by -O-, -S-, -CO- or -SO2-, and -CH2- contained in the chain hydrocarbon group may be replaced by -O- or -CO-. * represents X 1 It represents the binding site with X 3 represents **-CO-O-, **-O-CO-, **-O-CO-O- or **-O-, and ** represents L 2 It represents the binding site with L 3 represents a single bond or a chain hydrocarbon group having 1 to 8 carbon atoms which may have a substituent, and -CH2- contained in the chain hydrocarbon group may be replaced by -O- or -CO-. 2 , X 3 and L 3 The sulfonic acid generator according to [1] or [2], wherein the total number of carbon atoms contained in does not exceed 40. [4]X 20 is a single bond or a group represented by the formula (X 20 -1)~Formula(X 20 The sulfonic acid generator according to any one of [1] to [3], wherein the sulfonic acid generator is a group represented by any one of the following groups: TIFF2025071809000003.tif44162[Formula(X 20 -1)~Formula(X 20 -10) Medium, *, ** are binding sites, ** is L20 or the bonding site with a benzene ring. Rx represents a halogen atom, a hydroxy group, a fluorinated alkyl group having 1 to 6 carbon atoms, an alkyl group having 1 to 18 carbon atoms, or an alkoxy group having 1 to 6 carbon atoms. mx represents an integer of 0 to 4. X 21 is -O- or -NR 21 - represents. R 21 represents a hydrogen atom or an alkyl group having 1 to 6 carbon atoms.] [5] L 20 is a single bond, an alkanediyl group having 1 to 6 carbon atoms, a cyclic hydrocarbon group having 3 to 18 carbon atoms, or a group formed by combining an alkanediyl group having 1 to 6 carbon atoms and a cyclic hydrocarbon group having 3 to 18 carbon atoms, The sulfonic acid generator according to any one of [1] to [4], wherein -CH2- contained in the alkanediyl group and the cyclic hydrocarbon group may be replaced by -O-, -S-, -SO2- or -CO-, and the cyclic hydrocarbon group may have a substituent. [6] A resist composition comprising the sulfonic acid generator according to any one of [1] to [5]. [7] The resist composition according to [6], which contains a sulfonate represented by formula (I) and a resin including a structural unit having an acid labile group. [8] A resin containing a structural unit represented by formula (IP), The resist composition according to [6] or [7], wherein the resin comprising the structural unit represented by formula (IP) further comprises a structural unit having an acid labile group. [9] The resist composition according to [8], further comprising a sulfonate salt represented by formula (I).

[10] The resist composition according to any one of [7] to [9], wherein the structural unit having an acid labile group includes at least one selected from the group consisting of a structural unit represented by formula (a1-0), a structural unit represented by formula (a1-1), a structural unit represented by formula (a1-2), a structural unit represented by formula (a1-4), a structural unit represented by formula (a1-5), and a structural unit represented by formula (a1-6). TIFF2025071809000004.tif45149 [In formula (a1-0), formula (a1-1) and formula (a1-2), L a01 , L a1 and L a2 are each independently -O- or *-O-(CH2) k1 represents --CO--O--, k1 represents an integer of 1 to 7, and * represents a bonding site with --CO--. R a01 , R a4 and R a5 each independently represents a hydrogen atom, a halogen atom or an alkyl group having 1 to 6 carbon atoms which may have a halogen atom. R a02 , R a03 and R a04 each independently represents an alkyl group having 1 to 8 carbon atoms, an alicyclic hydrocarbon group having 3 to 18 carbon atoms, an aromatic hydrocarbon group having 6 to 18 carbon atoms, or a combination thereof, and the alkyl group, alicyclic hydrocarbon group and aromatic hydrocarbon group may have a halogen atom. R a6 and R a7 each independently represents an alkyl group having 1 to 8 carbon atoms, an alkenyl group having 2 to 8 carbon atoms, an alicyclic hydrocarbon group having 3 to 18 carbon atoms, an aromatic hydrocarbon group having 6 to 18 carbon atoms, or a group formed by combining these, and the alkyl group, alkenyl group, alicyclic hydrocarbon group and aromatic hydrocarbon group may have a halogen atom. m1 represents an integer of 0 to 14. n1 represents an integer of 0 to 10. n1' represents an integer of 0 to 3. TIFF2025071809000005.tif31119[In formula (a1-4), R a1 represents a hydrogen atom, a halogen atom, or an alkyl group having 1 to 6 carbon atoms which may have a halogen atom. R a17represents a halogen atom, a hydroxy group, a carboxy group, an alkyl group having 1 to 6 carbon atoms which may have a halogen atom, an alkoxy group having 1 to 6 carbon atoms, an alkoxyalkyl group having 2 to 12 carbon atoms, an alkoxyalkoxy group having 2 to 12 carbon atoms, an alkylcarbonyl group having 2 to 4 carbon atoms, an alkylcarbonyloxy group having 2 to 4 carbon atoms, an acryloyloxy group or a methacryloyloxy group. A a11 represents a single bond or an alkanediyl group having 1 to 12 carbon atoms, and -CH2- contained in the alkanediyl group is -O-, -CO- or -NR a18 - may be replaced. R a18 represents a hydrogen atom or an alkyl group having 1 to 6 carbon atoms. X a1 represents a single bond or a carbonyl group. R a34 and R a35 each independently represents a hydrogen atom or a hydrocarbon group having 1 to 12 carbon atoms; R a36 represents a hydrocarbon group having 1 to 20 carbon atoms, or R a35 and R a36 are bonded to each other to form a divalent hydrocarbon group having 2 to 20 carbon atoms together with the -CO- to which they are bonded, and the -CH2- contained in the hydrocarbon group and the divalent hydrocarbon group may be replaced by -O- or -S-. na1 represents an integer of any one of 1 to 5, and when na1 is 2 or more, the groups in the multiple parentheses may be the same or different. na11 represents an integer of 0 to 4. When na11 is 2 or more, multiple R a17 may be the same or different from each other. mc represents an integer from 0 to 2. TIFF2025071809000006.tif4558[In formula (a1-5), R a8 represents an alkyl group having 1 to 6 carbon atoms which may have a halogen atom, a hydrogen atom, or a halogen atom. Z a1 is a single bond or -(CH2) h3 -CO-L54 -, h3 represents an integer of 1 to 4, * represents L 51 represents the binding site with L 51 , L 52 , L 53 and L 54 each independently represents -O- or -S-. s1 represents an integer of 1 to 3. s1' represents an integer of 0 to 3. TIFF2025071809000007.tif3479[In formula (a1-6), R a61 represents a hydrogen atom, a halogen atom or an alkyl group having 1 to 6 carbon atoms which may have a halogen atom. R a62 , R a63 and R a64 each independently represents an alkyl group having 1 to 6 carbon atoms or a cyclic hydrocarbon group having 3 to 18 carbon atoms which may have a substituent, or R a62 and R a63 are bonded to each other to form a ring having 3 to 20 carbon atoms together with the carbon atoms to which they are attached. X a61 is a single bond, -CO-O-* or -CO-NR a65 -*, where * represents the bonding site with Ar, and R a65 represents a hydrogen atom or an alkyl group having 1 to 6 carbon atoms. X a62 is a single bond, *-OL a61 -or*-CO-OL a62 -, * represents the bonding site with Ar, L a61 and L a62 each independently represents an alkanediyl group having 1 to 4 carbon atoms. Ar represents an aromatic hydrocarbon group having 6 to 20 carbon atoms which may have a substituent.]

[11] The resist composition according to any one of [6] to

[10] , which contains a resin containing a structural unit represented by formula (a2-A). TIFF2025071809000008.tif30128[In formula (a2-A), R a2represents a hydrogen atom, a halogen atom or an alkyl group having 1 to 6 carbon atoms which may have a halogen atom. R a27 represents a halogen atom, a hydroxy group, a carboxy group, an alkyl group having 1 to 6 carbon atoms which may have a halogen atom, an alkoxy group having 1 to 6 carbon atoms, an alkoxyalkyl group having 2 to 12 carbon atoms, an alkoxyalkoxy group having 2 to 12 carbon atoms, an alkylcarbonyl group having 2 to 4 carbon atoms, an alkylcarbonyloxy group having 2 to 4 carbon atoms, an acryloyloxy group or a methacryloyloxy group. A a21 represents a single bond or an alkanediyl group having 1 to 12 carbon atoms, and -CH2- contained in the alkanediyl group is -O-, -CO- or -NR a28 - may be replaced. R a28 represents a hydrogen atom or an alkyl group having 1 to 6 carbon atoms. X a2 represents a single bond or a carbonyl group. nA2 represents an integer of 1 to 5, and when nA2 is 2 or greater, the groups in the multiple parentheses may be the same or different. na21 represents an integer of 0 to 4, and when na21 is 2 or more, a plurality of R a27 may be the same or different from each other. mc represents an integer from 0 to 2.

[12] (1) A step of applying the resist composition according to any one of [6] to

[11] onto a substrate; (2) A step of drying the applied resist composition to form a composition layer; (3) exposing the composition layer to light; (4) heating the composition layer after exposure; and (5) A method for producing a resist pattern, comprising the step of developing the composition layer after heating.

[13] A sulfonate salt represented by the above formula (I).

[14] m2 is an integer equal to or greater than 1; R 2is an iodine atom, a fluorine atom, a hydroxy group, a carboxy group, an alkoxy group having 1 to 5 carbon atoms, an alkoxyalkoxy group having 2 to 4 carbon atoms, or a haloalkyl group having 1 to 6 carbon atoms (-CH2- contained in the haloalkyl group may be replaced by -O- or -CO-).

[15] L 1 is a single bond, *-L 2 -or*-L 2 -X 3 -L 3 -(L 2 represents an optionally substituted chain hydrocarbon group having 1 to 10 carbon atoms, an optionally substituted cyclic hydrocarbon group having 3 to 24 carbon atoms, or a group combining an optionally substituted cyclic hydrocarbon group having 3 to 24 carbon atoms and an optionally substituted chain hydrocarbon group having 1 to 8 carbon atoms, in which -CH2- contained in the cyclic hydrocarbon group may be replaced by -O-, -S-, -CO- or -SO2-, and -CH2- contained in the chain hydrocarbon group may be replaced by -O- or -CO-. * represents X 1 It represents the binding site with X 3 represents **-CO-O-, **-O-CO-, **-O-CO-O- or **-O-, and ** represents L 2 It represents the binding site with L 3 represents a single bond or a chain hydrocarbon group having 1 to 8 carbon atoms which may have a substituent, and -CH2- contained in the chain hydrocarbon group may be replaced by -O- or -CO-. 2 , X 3 and L 3 The sulfonate salt according to

[13] or

[14] , wherein the total number of carbon atoms contained in does not exceed 40.

[16] X 20 is a single bond or the above formula (X 20 -1)~Formula(X 20 The sulfonate according to any one of

[13] to

[15] , wherein the sulfonate is a group represented by any one of the following groups:

[17] L 20 is a single bond, an alkanediyl group having 1 to 6 carbon atoms, a cyclic hydrocarbon group having 3 to 18 carbon atoms, or a group formed by combining an alkanediyl group having 1 to 6 carbon atoms and a cyclic hydrocarbon group having 3 to 18 carbon atoms, The sulfonate according to any of

[13] to

[16] , wherein -CH2- contained in the alkanediyl group and the cyclic hydrocarbon group may be replaced by -O-, -S-, -SO2- or -CO-, and the cyclic hydrocarbon group may have a substituent.

[18] A resin comprising a structural unit represented by the above formula (IP). Effect of the Invention

[0006] By using a resist composition containing the salt of the present invention, a resist pattern with good line edge roughness (LER) can be produced. DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS

[0007] In this specification, "(meth)acrylic monomer" means "at least one of acrylic monomer and methacrylic monomer". The expressions "(meth)acrylate" and "(meth)acrylic acid" have the same meaning. In the group described in this specification, both a straight chain structure and a branched structure may be used. When -CH2- contained in a hydrocarbon group or the like is replaced with -O-, -S-, -CO- or -SO2-, the same example applies to each group, and the number of carbon atoms before the replacement is the number of carbon atoms of the hydrocarbon group or the like. "Combined group" means a group in which two or more of the exemplified groups are bonded, and the valence of these groups may be appropriately changed depending on the bond form. "Derived from" or "derived from" refers to a polymerizable C=C bond contained in the molecule becoming a -CC- group (single bond) by polymerization. When stereoisomers exist, all stereoisomers are included. Depending on the number of substituents, etc., hydrogen atoms in each group at any position and number may be replaced with bonds. The number of carbon atoms in a substituent is not included in the number of carbon atoms of the substituted group. An acid labile group means a group that, when contacted with an acid (e.g., trifluoromethanesulfonic acid, etc.), the leaving group is eliminated to form a hydrophilic group (e.g., a hydroxyl group or a carboxyl group, etc.). A base labile group means a group that, when contacted with a base (e.g., trimethylamine, etc.), the leaving group is eliminated to form a hydrophilic group (e.g., a carboxyl group or a hydroxyl group, etc.). In this specification, the term "solids content of a resist composition" refers to the sum of the components excluding the solvent (E), which will be described later, from the total amount of the resist composition.

[0008] [Sulfonic acid salt represented by formula (I)] The present invention relates to a sulfonate represented by formula (I) (hereinafter sometimes referred to as "salt (I)" or "sulfonate (I)"). In sulfonate (I), the negatively charged side is sometimes called the "anion (I)" and the positively charged side is sometimes called the "cation (I)". TIFF2025071809000009.tif39155 [wherein all symbols have the same meanings as defined above.]

[0009] [Anion (I)] In formula (I), Q 1 , Q 2 , R 11 and R 12 Examples of the perfluoroalkyl group include a trifluoromethyl group, a perfluoroethyl group, a perfluoropropyl group, a perfluoroisopropyl group, a perfluorobutyl group, a perfluorosec-butyl group, a perfluorotert-butyl group, a perfluoropentyl group, a perfluorohexyl group, etc. The number of carbon atoms in the perfluoroalkyl group is preferably 1 to 4, and more preferably 1 to 3. Q 1 , Q 2 , R 11 and R 12 Examples of the alkyl group include a methyl group, an ethyl group, a propyl group, an isopropyl group, a butyl group, a sec-butyl group, a tert-butyl group, a pentyl group, a hexyl group, etc. The number of carbon atoms in the alkyl group is preferably 1 to 4, and more preferably 1 to 3. Q 1 and Q 2 It is preferable that at least one of them contains a fluorine atom or a perfluoroalkyl group, it is more preferable that at least one of them is a fluorine atom or a perfluoroalkyl group, it is further preferable that they are each independently a trifluoromethyl group or a fluorine atom, and it is even more preferable that both are fluorine atoms. R 11 and R 12 are each independently preferably a hydrogen atom, a fluorine atom, a methyl group or a trifluoromethyl group, and more preferably a hydrogen atom or a trifluoromethyl group. z is preferably an integer of 0 to 4, more preferably an integer of 0 to 3, even more preferably an integer of 0 to 2, and even more preferably 0 or 1. X 1 is preferably *-CO-O-, *-O-CO-O- or *-O-CO-, more preferably *-CO-O- or *-O-CO- (* is C(R 11 )(R12 ) or C(Q 1 )(Q 2 ) represents the binding site.

[0010] L 1 Examples of the hydrocarbon group in include divalent linear or branched chain hydrocarbon groups such as alkanediyl groups, monocyclic or polycyclic (including spiro rings, condensed rings or bridged rings) divalent alicyclic hydrocarbon groups, and divalent cyclic hydrocarbon groups such as divalent aromatic hydrocarbon groups, and may be groups combining two or more of these groups (for example, divalent hydrocarbon groups formed from alicyclic hydrocarbon groups or aromatic hydrocarbon groups and chain hydrocarbon groups). Chain hydrocarbon groups and alicyclic hydrocarbon groups are also called aliphatic hydrocarbon groups, and alicyclic hydrocarbon groups and aromatic hydrocarbon groups are also called cyclic hydrocarbon groups. The number of carbon atoms in the hydrocarbon group is preferably 1 to 38, more preferably 1 to 36, even more preferably 1 to 32, and even more preferably 1 to 28. Examples of the alkanediyl group include linear alkanediyl groups such as a methylene group, an ethylene group, a propane-1,3-diyl group, a butane-1,4-diyl group, a pentane-1,5-diyl group, a hexane-1,6-diyl group, a heptane-1,7-diyl group, an octane-1,8-diyl group, a nonane-1,9-diyl group, a decane-1,10-diyl group, an undecane-1,11-diyl group, a dodecane-1,12-diyl group, a tridecane-1,13-diyl group, a tetradecane-1,14-diyl group, a pentadecane-1,15-diyl group, a hexadecane-1,16-diyl group, and a heptadecane-1,17-diyl group; Examples of branched alkanediyl groups include ethane-1,1-diyl group, propane-1,1-diyl group, propane-1,2-diyl group, propane-2,2-diyl group, pentane-2,4-diyl group, 2-methylpropane-1,3-diyl group, 2-methylpropane-1,2-diyl group, pentane-1,4-diyl group, and 2-methylbutane-1,4-diyl group. The number of carbon atoms in the chain hydrocarbon group may be 1 to 36, and is 1 to 28, preferably 1 to 18, more preferably 1 to 12, even more preferably 1 to 10, still more preferably 1 to 8, even more preferably 1 to 7, even more preferably 1 to 6, even more preferably 1 to 5, and particularly preferably 1 to 4. Examples of the monocyclic or polycyclic divalent alicyclic hydrocarbon group include the following alicyclic hydrocarbon groups: The binding site may be any position. TIFF2025071809000010.tif47169Specifically, monocyclic divalent alicyclic hydrocarbon groups such as monocyclic cycloalkanediyl groups such as cyclobutane-1,3-diyl group, cyclopentane-1,3-diyl group, cyclohexane-1,4-diyl group, and cyclooctane-1,5-diyl group, and Examples of such divalent alicyclic hydrocarbon groups include cycloalkanediyl groups such as norbornane-1,4-diyl, norbornane-2,5-diyl, adamantane-1,5-diyl, and adamantane-2,6-diyl, as well as spirocyclohexane-1,2'-cyclopentane-diyl and spiroadamantane-2,3'-cyclopentane-diyl groups; and polycyclic cycloalkanediyl groups such as a spiro ring having a cycloalkanediyl group bonded to a norbornyl group or an adamantyl group via a spiro bond. The alicyclic hydrocarbon group may have 3 to 36 carbon atoms, for example, 3 to 28 carbon atoms, preferably 3 to 24 carbon atoms, more preferably 3 to 20 carbon atoms, even more preferably 3 to 18 carbon atoms, still more preferably 3 to 16 carbon atoms, and even more preferably 3 to 12 carbon atoms. Examples of the divalent aromatic hydrocarbon group include aromatic hydrocarbon groups such as arylene groups such as a phenylene group, a naphthylene group, an anthrylene group, a biphenylene group, a phenanthrylene group, etc. The number of carbon atoms in the aromatic hydrocarbon group is preferably 6 to 24, more preferably 6 to 20, still more preferably 6 to 18, still more preferably 6 to 14, and still more preferably 6 to 10.

[0011] Examples of groups that combine two or more types include a group that combines an alicyclic hydrocarbon group with a chain hydrocarbon group, a group that combines an aromatic hydrocarbon group with a chain hydrocarbon group, a group that combines an alicyclic hydrocarbon group with an aromatic hydrocarbon group, and a group that combines an alicyclic hydrocarbon group with a chain hydrocarbon group and an aromatic hydrocarbon group. In the combination, two or more types of each of the alicyclic hydrocarbon group, aromatic hydrocarbon group, and chain hydrocarbon group may be combined. In addition, when any group is X 1 may be bound to Examples of groups combining an alicyclic hydrocarbon group and a chain hydrocarbon group include -alicyclic hydrocarbon group-chain hydrocarbon group-, -chain hydrocarbon group-alicyclic hydrocarbon group-chain hydrocarbon group-, -chain hydrocarbon group-alicyclic hydrocarbon group-, and the like. Examples of groups combining an aromatic hydrocarbon group and a chain hydrocarbon group include -aromatic hydrocarbon group-chain hydrocarbon group-, -chain hydrocarbon group-aromatic hydrocarbon group-chain hydrocarbon group-, -chain hydrocarbon group-aromatic hydrocarbon group-, and the like. Examples of groups combining an alicyclic hydrocarbon group and an aromatic hydrocarbon group include -aromatic hydrocarbon group-alicyclic hydrocarbon group-, -alicyclic hydrocarbon group-aromatic hydrocarbon group-, -alicyclic hydrocarbon group-aromatic hydrocarbon group-, -alicyclic hydrocarbon group-aromatic hydrocarbon group-alicyclic hydrocarbon group-, and groups in which an alicyclic hydrocarbon group and an aromatic hydrocarbon group are condensed.

[0012] L 1 The --CH2-- contained in the hydrocarbon group having 1 to 40 carbon atoms may be replaced by --O--, --S--, --SO2-- or --CO--. L 1 When --CH2-- contained in the hydrocarbon group having 1 to 40 carbon atoms is replaced with --O--, --S--, --SO2-- or --CO--, the number of carbon atoms before replacement is regarded as the number of carbon atoms of the hydrocarbon group. Examples of groups in which -CH2- in a hydrocarbon group is replaced by -O-, -S-, -SO2- or -CO- include a hydroxy group (a group in which -CH2- in a methyl group is replaced by -O-), a carboxy group (a group in which -CH2-CH2- in an ethyl group is replaced by -O-CO-), a thiol group (a group in which -CH2- in a methyl group is replaced by -S-), an alkoxy group (a group in which -CH2- at any position in an alkyl group is replaced by -O-), an alkoxycarbonyl group (a group in which -CH2-CH 2- is replaced by -O-CO-), alkylsulfonyl group (a group in which -CH2- at any position in an alkyl group is replaced by -SO2-), alkylcarbonyl group (a group in which -CH2- at any position in an alkyl group is replaced by -CO-), alkylcarbonyloxy group (a group in which -CH2-CH2- at any position in an alkyl group is replaced by -CO-O-), alkoxycarbonyloxy group (a group in which -CH2-CH2-CH2- at any position in an alkyl group is replaced by -O-CO-O-), alkane Diyloxy group (a group in which -CH2- at any position in an alkanediyl group is replaced with -O-), alkanediyloxycarbonyl group (a group in which -CH2-CH2- at any position in an alkanediyl group is replaced with -O-CO-), alkanediylcarbonyl group (a group in which -CH2- at any position in an alkanediyl group is replaced with -CO-), alkanediylcarbonyloxy group (a group in which -CH2-CH2- at any position in an alkanediyl group is replaced with -CO-O-), alkanediylsulfonyl group (a an alkanediyl group in which -CH2- at any position is replaced with -SO2-), an alkylthio group (an alkyl group in which -CH2- at any position is replaced with -S-), an alkanediylthio group (an alkanediyl group in which -CH2- at any position is replaced with -S-), an oxy group (a methylene group in which -CH2- is replaced with -O-), a carbonyl group (a methylene group in which -CH2- is replaced with -CO-), a thio group (a methylene group in which -CH2- is replaced with -S-),Examples of such groups include a sulfonyl group (a group in which -CH2- in a methylene group is replaced with -SO2-), a cycloalkoxy group, a cycloalkylalkoxy group, an aromatic hydrocarbon group-carbonyloxy group, an aromatic hydrocarbon group-carbonyl group, an aromatic hydrocarbon group-oxy group, and a group in which two or more of these groups are combined.

[0013] Examples of the alkoxy group include alkoxy groups having 1 to 39 carbon atoms, such as a methoxy group, an ethoxy group, a propoxy group, a butoxy group, a pentyloxy group, a hexyloxy group, an octyloxy group, a 2-ethylhexyloxy group, a nonyloxy group, a decyloxy group, an undecyloxy group, etc. The number of carbon atoms in the alkoxy group may be 1 to 17, preferably 1 to 11, more preferably 1 to 6, further preferably 1 to 4, and further more preferably 1 to 3. Examples of the alkoxycarbonyl group include alkoxycarbonyl groups having 2 to 39 carbon atoms, such as methoxycarbonyl, ethoxycarbonyl, and butoxycarbonyl groups. Examples of the alkylcarbonyl group include alkylcarbonyl groups having 2 to 40 carbon atoms, such as acetyl, propionyl, and butyryl groups. Examples of the alkylcarbonyloxy group include alkylcarbonyloxy groups having 2 to 39 carbon atoms, such as acetyloxy, propionyloxy, and butyryloxy groups. Examples of the alkoxycarbonyloxy group include alkoxycarbonyloxy groups having 2 to 38 carbon atoms, such as butoxycarbonyloxy groups. The number of carbon atoms of the alkoxycarbonyl group and the alkylcarbonyloxy group may be 2 to 17, preferably 2 to 11, more preferably 2 to 6, even more preferably 2 to 4, and even more preferably 2 or 3. The alkylcarbonyl group may have 1 to 18 carbon atoms, preferably 2 to 12, more preferably 2 to 6, still more preferably 2 to 4, and even more preferably 2 or 3. The alkoxycarbonyloxy group may have 2 to 16 carbon atoms, preferably 2 to 10, more preferably 2 to 6, still more preferably 2 to 4, and even more preferably 2 or 3. The alkylsulfonyl group includes an alkylsulfonyl group having 1 to 39 carbon atoms, such as a methylsulfonyl group, an ethylsulfonyl group, a propylsulfonyl group, a butylsulfonyl group, a pentylsulfonyl group, a hexylsulfonyl group, an octylsulfonyl group, a 2-ethylhexylsulfonyl group, a nonylsulfonyl group, a decylsulfonyl group, and an undecylsulfonyl group. The alkylthio group includes an alkylthio group having 1 to 39 carbon atoms, such as a methylthio group, an ethylthio group, a propylthio group, a pentylthio group, a hexylthio group, an octylthio group, a 2-ethylhexylthio group, a nonylthio group, a decylthio group, and an undecylthio group. The number of carbon atoms in the alkylsulfonyl group and the alkylthio group may be 1 to 17, preferably 1 to 11, more preferably 1 to 6, even more preferably 1 to 4, and even more preferably 1 to 3. The alkanediyloxy group includes an alkanediyloxy group having 1 to 39 carbon atoms, such as a methyleneoxy group, an ethyleneoxy group, a propanediyloxy group, a butanediyloxy group, a pentanediyloxy group, etc. The number of carbon atoms in the alkanediyloxy group may be 1 to 17, preferably 1 to 11, more preferably 1 to 6, further preferably 1 to 4, and further more preferably 1 to 3. Examples of the alkanediyloxycarbonyl group include alkanediyloxycarbonyl groups having 2 to 39 carbon atoms, such as methyleneoxycarbonyl group, ethyleneoxycarbonyl group, propanediyloxycarbonyl group, butanediyloxycarbonyl group, etc. Examples of the alkanediylcarbonyl group include alkanediylcarbonyl groups having 2 to 40 carbon atoms, such as methylenecarbonyl group, ethylenecarbonyl group, propanediylcarbonyl group, butanediylcarbonyl group, pentanediylcarbonyl group, etc. Examples of the alkanediylcarbonyloxy group include alkanediylcarbonyloxy groups having 2 to 39 carbon atoms, such as methylenecarbonyloxy group, ethylenecarbonyloxy group, propanediylcarbonyloxy group, butanediylcarbonyloxy group, etc. The number of carbon atoms in the alkanediyloxycarbonyl group and the alkanediylcarbonyloxy group may each be 2 to 17, preferably 2 to 11, more preferably 2 to 6, still more preferably 2 to 4, and even more preferably 2 or 3. The number of carbon atoms in the alkanediylcarbonyl group may be 2 to 18, preferably 2 to 12, more preferably 2 to 6, still more preferably 2 to 4, and even more preferably 2 or 3. The alkanediylsulfonyl group includes an alkanediylsulfonyl group having 1 to 39 carbon atoms, such as a methylenesulfonyl group, an ethylenesulfonyl group, and a propylenesulfonyl group. The alkanediylthio group includes an alkanediylthio group having 1 to 39 carbon atoms, such as a methylenethio group, an ethylenethio group, and a propylenethio group. The number of carbon atoms in the alkanediylsulfonyl group and the alkanediylthio group may each be 1 to 17. It is preferably 1 to 11, more preferably 1 to 6, even more preferably 1 to 4, and even more preferably 1 to 3. Examples of the cycloalkoxy group include cycloalkoxy groups having 3 to 39 carbon atoms, such as cyclohexyloxy groups. Examples of the cycloalkylalkoxy group include cycloalkylalkoxy groups having 4 to 39 carbon atoms, such as cyclohexylmethoxy groups. Examples of the aromatic hydrocarbon group-carbonyloxy group include aromatic hydrocarbon group-carbonyloxy groups having 7 to 39 carbon atoms, such as benzoyloxy groups. Examples of the aromatic hydrocarbon group-carbonyl group include aromatic hydrocarbon group-carbonyl groups having 7 to 40 carbon atoms, such as benzoyl groups. Examples of the aromatic hydrocarbon group-oxy group include aromatic hydrocarbon group-oxy groups having 6 to 39 carbon atoms, such as phenyloxy groups. The number of carbon atoms in these groups may be 17 or less, and is preferably 12 or less. Examples of groups in which -CH2- in an alicyclic hydrocarbon group is replaced with -O-, -S-, -CO- or -SO2- include the following groups. -O- or -CO- in the groups shown below may be replaced with -S- or -SO2-. The bonding site may be at any position. TIFF2025071809000011.tif47168

[0014] L 1 The substituents that the chain hydrocarbon group contained in L may have include a halogen atom, a cyano group, and a nitro group. 1 Examples of the substituent that the cyclic hydrocarbon group contained in the formula (1) may have include a hydroxy group, a carboxy group, a halogen atom, a cyano group, a nitro group, an alkyl group having 1 to 12 carbon atoms, an alkoxy group having 1 to 12 carbon atoms, an alkoxycarbonyl group having 2 to 13 carbon atoms, an alkylcarbonyl group having 2 to 13 carbon atoms, an alkylcarbonyloxy group having 2 to 13 carbon atoms, or a combination of these groups. Examples of the halogen atom include a fluorine atom, a chlorine atom, a bromine atom, and an iodine atom. Examples of the alkyl group having 1 to 12 carbon atoms include a methyl group, an ethyl group, a propyl group, an isopropyl group, a butyl group, an isobutyl group, a tert-butyl group, a pentyl group, a hexyl group, an octyl group, and a nonyl group. Examples of the alkoxy group having 1 to 12 carbon atoms include a methoxy group, an ethoxy group, a propoxy group, a butoxy group, a pentyloxy group, a hexyloxy group, an octyloxy group, a 2-ethylhexyloxy group, a nonyloxy group, a decyloxy group, an undecyloxy group, and a dodecyloxy group. The alkoxycarbonyl group having 2 to 13 carbon atoms, the alkylcarbonyl group having 2 to 13 carbon atoms, and the alkylcarbonyloxy group having 2 to 13 carbon atoms represent groups in which a carbonyl group or a carbonyloxy group is bonded to the above-mentioned alkyl group or alkoxy group. Examples of the alkoxycarbonyl group having 2 to 13 carbon atoms include a methoxycarbonyl group, an ethoxycarbonyl group, and a butoxycarbonyl group. Examples of the alkylcarbonyl group having 2 to 13 carbon atoms include an acetyl group, a propionyl group, and a butyryl group. Examples of the alkylcarbonyloxy group having 2 to 13 carbon atoms include an acetyloxy group, a propionyloxy group, and a butyryloxy group. The substituent is preferably an alkyl group having 1 to 4 carbon atoms, a hydroxyl group or a halogen atom.

[0015] L 1represents a single bond, a chain hydrocarbon group having 1 to 10 carbon atoms which may have a substituent (provided that -CH2- contained in the chain hydrocarbon group may be replaced with -O- or -CO-), a cyclic hydrocarbon group having 3 to 24 carbon atoms which may have a substituent (provided that -CH2- contained in the cyclic hydrocarbon group may be replaced with -O-, -S-, -CO- or -SO2-), or a group formed by combining a chain hydrocarbon group having 1 to 8 carbon atoms which may have a substituent and a cyclic hydrocarbon group having 3 to 24 carbon atoms which may have a substituent (provided that -CH2 - may be replaced by -O- or -CO-, and -CH2- contained in the cyclic hydrocarbon group may be replaced by -O-, -S-, -SO2- or -CO-.) is preferred, and examples thereof include a single bond, a chain hydrocarbon group having 1 to 8 carbon atoms which may have a substituent (wherein -CH2- contained in the chain hydrocarbon group may be replaced by -O- or -CO-), and a cyclic hydrocarbon group having 3 to 20 carbon atoms which may have a substituent (wherein -CH2- contained in the cyclic hydrocarbon group may be replaced by -O-, -S-, -CO- or -SO2-). or a group formed by combining a chain hydrocarbon group having 1 to 6 carbon atoms which may have a substituent and a cyclic hydrocarbon group having 3 to 20 carbon atoms which may have a substituent (provided that -CH2- contained in the chain hydrocarbon group may be replaced by -O- or -CO-, and -CH2- contained in the cyclic hydrocarbon group may be replaced by -O-, -S-, -SO2- or -CO-), more preferably a single bond, a chain hydrocarbon group having 1 to 7 carbon atoms which may have a substituent (provided that -CH2- contained in the chain hydrocarbon group may be replaced by -O- or -CO-). and -CH2- in the cyclic hydrocarbon group may be replaced by -O- or -CO-.) or a group formed by combining a chain hydrocarbon group having 1 to 5 carbon atoms, which may have a substituent, with a cyclic hydrocarbon group having 3 to 18 carbon atoms, which may have a substituent (wherein -CH2- in the chain hydrocarbon group may be replaced by -O- or -CO-, and -CH2- in the cyclic hydrocarbon group may be replaced by -O- or -CO-). Also, L1 is a single bond, *-L 2 -or*-L 2 -X 3 -L 3 -(L 2 represents an optionally substituted chain hydrocarbon group having 1 to 10 carbon atoms, an optionally substituted cyclic hydrocarbon group having 3 to 24 carbon atoms, or a group combining an optionally substituted cyclic hydrocarbon group having 3 to 24 carbon atoms and an optionally substituted chain hydrocarbon group having 1 to 8 carbon atoms, in which -CH2- contained in the cyclic hydrocarbon group may be replaced by -O-, -S-, -CO- or -SO2-, and -CH2- contained in the chain hydrocarbon group may be replaced by -O- or -CO-. * represents X 1 It represents the binding site with X 3 represents **-CO-O-, **-O-CO-, **-O-CO-O- or **-O-, and ** represents L 2 It represents the binding site with L 3 represents a single bond or a chain hydrocarbon group having 1 to 8 carbon atoms which may have a substituent, and -CH2- contained in the chain hydrocarbon group may be replaced by -O- or -CO-. 2 , X 3 and L 3 The total number of carbon atoms contained in does not exceed 40. Examples of combinations of a chain hydrocarbon group and a cyclic hydrocarbon group include *-chain hydrocarbon group-alicyclic hydrocarbon group or aromatic hydrocarbon group-, *-alicyclic hydrocarbon group or aromatic hydrocarbon group-chain hydrocarbon group-, *-chain hydrocarbon group-alicyclic hydrocarbon group or aromatic hydrocarbon group-chain hydrocarbon group-, etc. * is X 1 It represents the binding site with

[0016] L 2 and L 3 The substituents that each group may have include L 1 The substituents which may be possessed by the group include the same groups as those exemplified above. L 2 Examples of the cyclic hydrocarbon group include an alicyclic hydrocarbon group, an aromatic hydrocarbon group, or a group obtained by condensing these groups. 1 Examples of the groups include the same groups as those exemplified in the above. L 2 and L 3 As the chain hydrocarbon group of L 1 Examples of the groups include the same groups as those exemplified in the above. L 2 is preferably a chain hydrocarbon group having 1 to 8 carbon atoms which may have a substituent (-CH2- contained in the chain hydrocarbon group may be replaced with -O- or -CO-), a cyclic hydrocarbon group having 3 to 20 carbon atoms which may have a substituent (-CH2- contained in the cyclic hydrocarbon group may be replaced with -O-, -S-, -CO- or -SO2-), or a group combining a cyclic hydrocarbon group having 3 to 20 carbon atoms which may have a substituent and a chain hydrocarbon group having 1 to 6 carbon atoms which may have a substituent (-CH2- contained in the cyclic hydrocarbon group may be replaced with -O-, -S-, -CO- or -SO2-, and -CH2- contained in the chain hydrocarbon group may be replaced with -O- or -CO-), More preferred are chain hydrocarbon groups having 1 to 6 carbon atoms which may have a substituent (-CH2- contained in the chain hydrocarbon group may be replaced with -O- or -CO-), cyclic hydrocarbon groups having 3 to 18 carbon atoms which may have a substituent (-CH2- contained in the cyclic hydrocarbon group may be replaced with -O-, -S-, -CO- or -SO2-), and groups combining cyclic hydrocarbon groups having 3 to 18 carbon atoms which may have a substituent and chain hydrocarbon groups having 1 to 4 carbon atoms which may have a substituent (-CH2- contained in the cyclic hydrocarbon group may be replaced with -O-, -S-, -CO- or -SO2-, and -CH2- contained in the chain hydrocarbon group may be replaced with -O- or -CO-). L 3 is preferably a single bond or a chain hydrocarbon group having 1 to 6 carbon atoms which may have a substituent, more preferably a single bond or a chain hydrocarbon group having 1 to 4 carbon atoms, even more preferably a single bond, a methylene group or an ethylene group, and even more preferably a single bond or a methylene group. Among them, L 1 is a single bond or *-L 2 -X 3 -L 3 In this case, L 2X is preferably a cyclic hydrocarbon group having 3 to 18 carbon atoms which may have a substituent, and more preferably an aromatic hydrocarbon group having 6 to 18 carbon atoms which may have a substituent. 3 is preferably **-CO-O- or **-O-CO-O-. 3 is preferably a chain hydrocarbon group having 1 to 4 carbon atoms, and more preferably a chain hydrocarbon group having 1 or 2 carbon atoms. L 1 The bonding position of to the naphthalene ring is not particularly limited, but is preferably the 1st or 2nd position of the naphthalene ring, and more preferably the 2nd position.

[0017] R 2 Examples of the halogen atom include a fluorine atom, a chlorine atom, a bromine atom, and an iodine atom. R 2 The haloalkyl group having 1 to 12 carbon atoms in the formula represents an alkyl group having 1 to 12 carbon atoms and a halogen atom, and examples thereof include a fluorinated alkyl group having 1 to 12 carbon atoms, a chlorinated alkyl group having 1 to 12 carbon atoms, a brominated alkyl group having 1 to 12 carbon atoms, and an iodinated alkyl group having 1 to 12 carbon atoms. Examples of the haloalkyl group include a perfluoroalkyl group having 1 to 12 carbon atoms (such as a trifluoromethyl group, a pentafluoroethyl group, a heptafluoropropyl group, and a nonafluorobutyl group), a difluoromethyl group, a 2,2,2-trifluoroethyl group, a 3,3,3-trifluoropropyl group, a 4,4,4-trifluorobutyl group, a 3,3,4,4,4-pentafluorobutyl group, a chloromethyl group, a bromomethyl group, and an iodomethyl group. The number of carbon atoms in the haloalkyl group is preferably 1 to 9, more preferably 1 to 6, even more preferably 1 to 4, and even more preferably 1 to 3. R 2Examples of the alkyl group having 1 to 12 carbon atoms include alkyl groups such as methyl group, ethyl group, propyl group, isopropyl group, butyl group, isobutyl group, tert-butyl group, pentyl group, hexyl group, octyl group, nonyl group, etc. The number of carbon atoms in the alkyl group is preferably 1 to 10, more preferably 1 to 8, still more preferably 1 to 6, still more preferably 1 to 4, and still more preferably 1 to 3.

[0018] R 2 When -CH2- in a haloalkyl group or an alkyl group represented by the formula (I) is replaced with -O- or -CO-, the number of carbon atoms before the replacement is regarded as the total number of carbon atoms in the haloalkyl group or the alkyl group. Examples of the replaced group include a hydroxy group (a group in which -CH2- in a methyl group is replaced with -O-), a carboxy group (a group in which -CH2-CH2- in an ethyl group is replaced with -O-CO-), an alkoxy group (a group in which -CH2- at any position in an alkyl group is replaced with -O-), an alkoxycarbonyl group (a group in which -CH2-CH2- at any position in an alkyl group is replaced with -O-CO-), an alkylcarbonyl group (a group in which -CH2- at any position in an alkyl group is replaced with -CO-), an alkylcarbonyloxy group (a group in which -CH2-CH2- at any position in an alkyl group is replaced with -CO-O-), an alkyl ... Examples of such groups include an alkoxyalkoxy group (a group in which two -CH2- groups at any position in an alkyl group are replaced with -O-), a haloalkoxy group (a group in which -CH2- at any position in a haloalkyl group is replaced with -O-), a haloalkoxycarbonyl group (a group in which -CH2-CH2- at any position in a haloalkyl group is replaced with -O-CO-), a haloalkylcarbonyl group (a group in which -CH2- at any position in a haloalkyl group is replaced with -CO-), a haloalkylcarbonyloxy group (a group in which -CH2-CH2- at any position in a haloalkyl group is replaced with -CO-O-), and a group combining two or more of these groups. Examples of the alkoxy group include alkoxy groups having 1 to 11 carbon atoms, such as a methoxy group, an ethoxy group, a propoxy group, a butoxy group, a pentyloxy group, a hexyloxy group, an octyloxy group, a 2-ethylhexyloxy group, a nonyloxy group, a decyloxy group, an undecyloxy group, etc. The number of carbon atoms in the alkoxy group is preferably 1 to 6, more preferably 1 to 4, and further preferably 1 to 3. Examples of the alkoxycarbonyl group include alkoxycarbonyl groups having 2 to 11 carbon atoms, such as methoxycarbonyl, ethoxycarbonyl, and butoxycarbonyl groups. Examples of the alkylcarbonyl group include alkylcarbonyl groups having 2 to 12 carbon atoms, such as acetyl, propionyl, and butyryl groups. Examples of the alkylcarbonyloxy group include alkylcarbonyloxy groups having 2 to 11 carbon atoms, such as acetyloxy, propionyloxy, and butyryloxy groups. The number of carbon atoms in the alkoxycarbonyl group and the alkylcarbonyloxy group is preferably 2 to 6, more preferably 2 to 4, and even more preferably 2 or 3. The number of carbon atoms in the alkylcarbonyl group is preferably 2 to 6, more preferably 2 to 4, and even more preferably 2 or 3. Examples of the alkoxyalkoxy group include an alkoxycarbonyl group having 2 to 10 carbon atoms, such as a methoxymethoxy group, a methoxyethoxy group, an ethoxymethoxy group, an ethoxyethoxy group, a propoxymethoxy group, an isopropoxymethoxy group, a butoxymethoxy group, a sec-butoxymethoxy group, and a tert-butoxymethoxy group. The number of carbon atoms in the alkoxyalkoxy group is preferably 2 to 8, more preferably 2 to 6, even more preferably 2 to 4, and even more preferably 2 or 3. Examples of the haloalkoxy group, the haloalkoxycarbonyl group, the haloalkylcarbonyl group and the haloalkylcarbonyloxy group include a haloalkoxy group having 1 to 11 carbon atoms, a haloalkoxycarbonyl group having 2 to 11 carbon atoms, a haloalkylcarbonyl group having 2 to 12 carbon atoms and a haloalkylcarbonyloxy group having 2 to 11 carbon atoms, and include, for example, groups in which one or more hydrogen atoms of the above-exemplified groups are replaced with a halogen atom.

[0019] m2 is preferably an integer from 0 to 6, more preferably an integer from 0 to 5, even more preferably an integer from 0 to 4, still more preferably an integer from 0 to 3, even more preferably an integer from 0 to 2, and even more preferably 0 or 1. R 2 is preferably an iodine atom, a fluorine atom, a haloalkyl group having 1 to 8 carbon atoms, or an alkyl group having 1 to 8 carbon atoms (-CH2- contained in the haloalkyl group and the alkyl group may be replaced by -O- or -CO-), more preferably an iodine atom, a fluorine atom, a haloalkyl group having 1 to 6 carbon atoms, or an alkyl group having 1 to 6 carbon atoms (-CH2- contained in the haloalkyl group and the alkyl group may be replaced by -O- or -CO-), and is preferably an iodine atom, a fluorine atom, a hydroxy group, a carboxy group, A haloalkyl group having 1 to 6 carbon atoms (-CH2- contained in the haloalkyl group may be replaced by -O- or -CO-), an alkoxy group having 1 to 5 carbon atoms, or an alkoxyalkoxy group having 2 to 4 carbon atoms is more preferred, an iodine atom, a fluorine atom, a hydroxy group, a trifluoromethyl group, an alkoxy group having 1 to 3 carbon atoms, or an alkoxyalkoxy group having 2 to 3 carbon atoms is even more preferred, and an iodine atom, a fluorine atom, a trifluoromethyl group, a hydroxy group, or an ethoxymethoxy group is even more preferred. R 2 The bonding position of L to the naphthalene ring is not particularly limited. 1 When is bonded to the 1- or 2-position of the naphthalene ring, it is preferably bonded to the 3- to 8-positions, more preferably to the 3- to 7-positions, and even more preferably to the 3- or 4-position of the naphthalene ring.

[0020] The sulfonate (I) also includes a sulfonate represented by formula (Ia) (hereinafter sometimes referred to as "sulfonate (Ia)" or "salt (Ia)"). TIFF2025071809000012.tif35156 [In formula (Ia), the symbols other than those below have the same meanings as defined above. R 1 represents a hydroxy group, a halogen atom, or a haloalkyl group having 1 to 12 carbon atoms. R 2a represents a halogen atom, a haloalkyl group having 1 to 12 carbon atoms, or an alkyl group having 1 to 12 carbon atoms, and -CH2- contained in the haloalkyl group and the alkyl group may be replaced by -O- or -CO-. m2a represents an integer of 0 to 6, and when m2a is 2 or more, a plurality of R 2a may be the same or different.] R 1 Halogen atoms and haloalkyl groups of R 2a The halogen atoms, haloalkyl groups, and alkyl groups (the -CH2- contained in the haloalkyl groups and the alkyl groups may be replaced by -O- or -CO-) are, within the range permitted by the number of carbon atoms, R 2 Examples of the groups include the same groups as those exemplified in the above. R 2a Preferred groups of R 2 The preferred groups are the same as those in the above. R 1 is preferably a hydroxy group, an iodine atom, a fluorine atom or a haloalkyl group having 1 to 6 carbon atoms, more preferably a hydroxy group, an iodine atom, a fluorine atom or a perfluoroalkyl group having 1 to 3 carbon atoms, still more preferably a hydroxy group, an iodine atom or a trifluoromethyl group, and even more preferably a hydroxy group or an iodine atom. m2a is preferably an integer of 0 to 5, more preferably an integer of 0 to 4, even more preferably an integer of 0 to 3, still more preferably an integer of 0 to 2, and even more preferably 0 or 1.

[0021] Examples of the anion (I) include the following anions. Among them, the anions represented by formulae (Ia-1) to (Ia-3), (Ia-5) to (Ia-7), (Ia-17) to (Ia-22), (Ia-26), (Ia-31) to (Ia-42), and (Ia-44) to (Ia-47) are preferred.

[0022] TIFF2025071809000013.tif186166

[0023] TIFF2025071809000014.tif241165

[0024] [Cation (I)] R 20 Examples of the halogen atom include a fluorine atom, a chlorine atom, a bromine atom, and an iodine atom. R 20 Examples of the alkyl group include a methyl group, an ethyl group, an n-propyl group, an isopropyl group, an n-butyl group, a sec-butyl group, a tert-butyl group, an n-pentyl group, and an n-hexyl group. An alkyl group having 1 to 4 carbon atoms is preferred, and a methyl group or an ethyl group is more preferred. R 20 Examples of the alkyl group having 1 to 6 carbon atoms and containing a halogen atom include a fluorinated alkyl group having 1 to 6 carbon atoms, a chlorinated alkyl group having 1 to 6 carbon atoms, a brominated alkyl group having 1 to 6 carbon atoms, and an iodinated alkyl group having 1 to 6 carbon atoms. Specific examples of the alkyl group having a halogen atom include a trifluoromethyl group, a perfluoroethyl group, a perfluoropropyl group, a perfluoroisopropyl group, a perfluorobutyl group, a perfluorosec-butyl group, a perfluorotert-butyl group, a perfluoropentyl group, a perfluorohexyl group, a perchloromethyl group, a perbromomethyl group, and a periodomethyl group. The alkyl group, fluorinated alkyl group, chlorinated alkyl group, brominated alkyl group and iodinated alkyl group each preferably have 1 to 4 carbon atoms, more preferably 1 to 3 carbon atoms, and further preferably 1 or 2 carbon atoms. R20 is preferably a hydrogen atom or an alkyl group having 1 to 4 carbon atoms, more preferably a hydrogen atom or an alkyl group having 1 to 3 carbon atoms, even more preferably a hydrogen atom or a methyl group, and even more preferably a methyl group. R 21 The alkyl group of R 20 Examples of the alkyl group include the alkyl group represented by the above formula (1). X 20 is a group represented by the formula *-Ax-Ph-Ay-**, it is preferably a linking group represented by the following formula (X20). TIFF2025071809000015.tif3351[In formula (X20), Ax is R 20 represents a bond type bonding to the carbon atom to which is bonded, and represents one or more bond types selected from the group consisting of a single bond, an ether bond, a thioether bond, an ester bond, an amide bond, and a carbonate ester bond. Ay is L 20 Or L 11 represents a bond type that bonds with a benzene ring to which the radical can be bonded, and represents one or more bond types selected from the group consisting of a single bond, an ether bond, a thioether bond, an ester bond, an amide bond, and a carbonate bond. Rx represents a halogen atom, a hydroxy group, a fluorinated alkyl group having 1 to 6 carbon atoms, an alkyl group having 1 to 18 carbon atoms, or an alkoxy group having 1 to 6 carbon atoms. mx represents an integer of 0 to 4. When mx is an integer of 2 or more, multiple Rx's may be the same or different. When either Ax or Ay is a single bond, the other is preferably one selected from the group consisting of an ether bond, a thioether bond, an ester bond, an amide bond, and a carbonate ester bond. Rx is preferably a fluorine atom, an iodine atom, a trifluoromethyl group, a methyl group or an ethyl group. mx is preferably 0, 1 or 2. The bonding position of Ay in the phenylene group is preferably the m-position or p-position relative to the bonding position of Ax, and more preferably the p-position. X20 For example, the following formula (X 20 -1)~Formula(X 20 -10) is a group represented by * -R 20 represents the bonding site with the carbon atom to which L is bonded. 20 or the bonding site with a benzene ring. TIFF2025071809000016.tif44162[expression(X 20 -1)~Formula(X 20 -10) where all symbols have the same meaning as above.] Expression(X 20 -1)~Formula(X 20 Specific examples of the group represented by -10) include the following groups. TIFF2025071809000017.tif87163Among them, X 20 is a single bond or a group of the formula (X 20 -1') and formula (X 20 -3')~expression(X 20 -10'), a single bond or a group represented by the formula (X 20 -1'), expression (X 20 -4'), expression (X 20 -5'), expression (X 20 -6') and formula (X 20 -10'), a single bond, a group represented by the formula (X 20 -1'), a group represented by the formula (X 20 -5') or a group represented by the formula (X 20 -6') is more preferable.

[0025] L 20 and L 11 The hydrocarbon groups having 1 to 36 carbon atoms each independently include aliphatic hydrocarbon groups (linear or branched chain hydrocarbon groups and alicyclic hydrocarbon groups such as alkanediyl groups, alkenediyl groups, and alkynediyl groups), aromatic hydrocarbon groups, etc., and may be a hydrocarbon group consisting of a combination of two or more of these groups. The number of carbon atoms in the hydrocarbon group is preferably 1 to 32, more preferably 1 to 28, even more preferably 1 to 24, and even more preferably 1 to 18.

[0026] Examples of the alkanediyl group include linear alkanediyl groups such as a methylene group, an ethylene group, a propane-1,3-diyl group, a butane-1,4-diyl group, a pentane-1,5-diyl group, a hexane-1,6-diyl group, a heptane-1,7-diyl group, an octane-1,8-diyl group, a nonane-1,9-diyl group, a decane-1,10-diyl group, an undecane-1,11-diyl group, and a dodecane-1,12-diyl group; Examples of branched alkanediyl groups include ethane-1,1-diyl, propane-1,1-diyl, propane-1,2-diyl, propane-2,2-diyl, pentane-2,4-diyl, 2-methylpropane-1,3-diyl, 2-methylpropane-1,2-diyl, pentane-1,4-diyl, and 2-methylbutane-1,4-diyl groups. The terminal of the branched alkanediyl group may be an alkyl group such as a methyl group. Examples of the alkenediyl group include an ethenediyl group, a propenediyl group, an isopropenediyl group, a butenediyl group, an isobutenediyl group, a tert-butenediyl group, a pentenediyl group, a hexenediyl group, a heptenediyl group, an octenediyl group, an isooctenediyl group, and a nonenediyl group. Examples of the alkynediyl group include an ethynediyl group, a propynediyl group, an isopropynediyl group, a butynediyl group, an isobutynediyl group, a tert-butynediyl group, a pentynediyl group, a hexynediyl group, an octynediyl group, and a nonynediyl group. The chain hydrocarbon group may have 1 to 18 carbon atoms, preferably 1 to 12, more preferably 1 to 9, even more preferably 1 to 6, still more preferably 1 to 4, and even more preferably 1 to 3. The alicyclic hydrocarbon group may be any of monocyclic, polycyclic and spirocyclic. Examples of the alicyclic hydrocarbon group include the groups shown below. The bonding site may be any position. TIFF2025071809000018.tif47167Specific examples of monocyclic divalent alicyclic hydrocarbon groups include monocyclic cycloalkanediyl groups such as a cyclobutane-1,3-diyl group, a cyclopentane-1,3-diyl group, a cyclohexane-1,4-diyl group, a cyclohexene-3,6-diyl group, and a cyclooctane-1,5-diyl group.Examples of polycyclic divalent alicyclic hydrocarbon groups include polycyclic cycloalkanediyl groups such as a norbornane-1,4-diyl group, a norbornane-2,5-diyl group, a 5-norbornene-2,3-diyl group, an adamantane-1,5-diyl group, and an adamantane-2,6-diyl group. The alicyclic hydrocarbon group preferably has 3 to 18 carbon atoms, more preferably 3 to 16 carbon atoms, and further preferably 3 to 12 carbon atoms. Examples of the aromatic hydrocarbon group include a phenylene group, a naphthylene group, an anthrylene group, a biphenylene group, a phenanthrylene group, etc. The aromatic hydrocarbon group preferably has 6 to 18 carbon atoms, more preferably 6 to 14 carbon atoms, and further preferably 6 to 10 carbon atoms. Examples of hydrocarbon groups in which two or more types are combined include groups in which an alkanediyl group is combined with an alicyclic hydrocarbon group and / or an aromatic hydrocarbon group, such as -alicyclic hydrocarbon group-alkanediyl group-, -alkanediyl group-alicyclic hydrocarbon group-, -alkanediyl group-alicyclic hydrocarbon group-alkanediyl group-, -alkanediyl group-aromatic hydrocarbon group-, -aromatic hydrocarbon group-alkanediyl group-, and the like.

[0027] L 20 and L 11 The --CH2-- contained in the hydrocarbon group having 1 to 36 carbon atoms may be replaced with --O--, --S--, --CO-- or --SO2--. L 20 and L 11 When the hydrocarbon group having 1 to 36 carbon atoms has a substituent, or when -CH2- contained in the hydrocarbon group is replaced with -O-, -S-, -CO- or -SO2-, the number of carbon atoms before replacement is regarded as the number of carbon atoms of the hydrocarbon group. Examples of groups in which -CH2- in a hydrocarbon group is replaced by -O-, -S-, -SO2- or -CO- include a hydroxy group (a group in which -CH2- in a methyl group is replaced by -O-), a carboxy group (a group in which -CH2-CH2- in an ethyl group is replaced by -O-CO-), a thiol group (a group in which -CH2- in a methyl group is replaced by -S-), a carbonyl group (a group in which -CH2- in a methylene group is replaced by -CO-), and a sulfonyl group (a group in which -CH2- in a methylene group is replaced by -SO2-). ), oxy group (a group in which -CH2- in a methylene group is replaced with -O-), thio group (a group in which -CH2- in a methylene group is replaced with -S-), alkoxy group (a group in which -CH2- at any position in an alkyl group is replaced with -O-), alkoxycarbonyl group (a group in which -CH2-CH2- at any position in an alkyl group is replaced with -O-CO-), alkylcarbonyl group (a group in which -CH2- at any position in an alkyl group is replaced with -CO-), alkylcarbonyloxy group (a group in which a group in which -CH2-CH2- at any position in an alkyl group is replaced with -CO-O-), an alkoxycarbonyloxy group (a group in which -CH2-CH2-CH2- at any position in an alkyl group is replaced with -O-CO-O-), an alkanediyloxy group (a group in which -CH2- at any position in an alkanediyl group is replaced with -O-), an alkanediyloxycarbonyl group (a group in which -CH2-CH2- at any position in an alkanediyl group is replaced with -O-CO-), an alkanediylcarbonyl group (a group in which -CH2- a group in which -CH2- at any position in an alkanediyl group is replaced with -CO-), an alkanediylcarbonyloxy group (a group in which -CH2-CH2- at any position in an alkanediyl group is replaced with -CO-O-), an alkylthio group (a group in which -CH2- at any position in an alkyl group is replaced with -S-), an alkylsulfonyl group (a group in which -CH2- at any position in an alkyl group is replaced with -SO2-), an alkanediylsulfonyl group (a group in which -CH2- at any position in an alkanediyl group is replaced with -SO2-),Examples of such groups include an alkanediylthio group (a group in which -CH- at any position in an alkanediyl group is replaced with -S-), a cycloalkoxy group, a cycloalkylalkoxy group, an aromatic hydrocarbon group-carbonyloxy group, an aromatic hydrocarbon group-carbonyl group, an aromatic hydrocarbon group-oxy group, and a group in which two or more of these groups are combined. Examples of the alkoxy group include alkoxy groups having 1 to 35 carbon atoms, such as a methoxy group, an ethoxy group, a propoxy group, a butoxy group, a pentyloxy group, a hexyloxy group, an octyloxy group, a 2-ethylhexyloxy group, a nonyloxy group, a decyloxy group, an undecyloxy group, etc. The number of carbon atoms in the alkoxy group may be 1 to 17, preferably 1 to 11, more preferably 1 to 6, further preferably 1 to 4, and further more preferably 1 to 3. Examples of the alkoxycarbonyl group include an alkoxycarbonyl group having 2 to 35 carbon atoms, such as a methoxycarbonyl group, an ethoxycarbonyl group, and a butoxycarbonyl group. Examples of the alkylcarbonyl group include an alkylcarbonyl group having 2 to 36 carbon atoms, such as an acetyl group, a propionyl group, and a butyryl group. Examples of the alkylcarbonyloxy group include an alkylcarbonyloxy group having 2 to 35 carbon atoms, such as an acetyloxy group, a propionyloxy group, and a butyryloxy group. Examples of the alkoxycarbonyloxy group include an alkoxycarbonyloxy group having 2 to 34 carbon atoms, such as a butoxycarbonyloxy group. The number of carbon atoms in the alkoxycarbonyl group, the alkylcarbonyl group, the alkylcarbonyloxy group, and the alkoxycarbonyloxy group may be 2 to 17, preferably 2 to 11, more preferably 2 to 6, even more preferably 2 to 4, and even more preferably 2 to 3. The alkanediyloxy group includes an alkanediyloxy group having 1 to 35 carbon atoms, such as a methyleneoxy group, an ethyleneoxy group, a propanediyloxy group, a butanediyloxy group, a pentanediyloxy group, etc. The number of carbon atoms in the alkanediyloxy group may be 1 to 17, preferably 1 to 11, more preferably 1 to 6, further preferably 1 to 4, and further more preferably 1 to 3. Examples of the alkanediyloxycarbonyl group include alkanediyloxycarbonyl groups having 2 to 35 carbon atoms, such as methyleneoxycarbonyl group, ethyleneoxycarbonyl group, propanediyloxycarbonyl group, butanediyloxycarbonyl group, etc. Examples of the alkanediylcarbonyl group include alkanediylcarbonyl groups having 2 to 36 carbon atoms, such as methylenecarbonyl group, ethylenecarbonyl group, propanediylcarbonyl group, butanediylcarbonyl group, pentanediylcarbonyl group, etc. Examples of the alkanediylcarbonyloxy group include alkanediylcarbonyloxy groups having 2 to 35 carbon atoms, such as methylenecarbonyloxy group, ethylenecarbonyloxy group, propanediylcarbonyloxy group, butanediylcarbonyloxy group, etc. The number of carbon atoms in the alkanediyloxycarbonyl group, the alkanediylcarbonyl group, and the alkanediylcarbonyloxy group may be 2 to 17, preferably 2 to 11, more preferably 2 to 6, still more preferably 2 to 4, and still more preferably 2 to 3. The alkylthio group includes an alkylthio group having 1 to 35 carbon atoms, such as a methylthio group, an ethylthio group, a propylthio group, etc. The number of carbon atoms in the alkylthio group may be 1 to 17, preferably 1 to 11, more preferably 1 to 6, further preferably 1 to 4, and further more preferably 1 to 3. The alkylsulfonyl group includes alkylsulfonyl groups having 1 to 35 carbon atoms, such as a methylsulfonyl group, an ethylsulfonyl group, a propylsulfonyl group, etc. The number of carbon atoms in the alkylsulfonyl group may be 1 to 17, preferably 1 to 11, more preferably 1 to 6, further preferably 1 to 4, and further more preferably 1 to 3. The alkanediylsulfonyl group includes an alkanediylsulfonyl group having 1 to 35 carbon atoms, such as a methylenesulfonyl group, an ethylenesulfonyl group, a propylenesulfonyl group, etc. The number of carbon atoms in the alkanediylsulfonyl group may be 1 to 17, preferably 1 to 11, more preferably 1 to 6, further preferably 1 to 4, and further more preferably 1 to 3. The alkanediylthio group includes an alkanediylthio group having 1 to 35 carbon atoms, such as a methylenethio group, an ethylenethio group, a propylenethio group, etc. The number of carbon atoms in the alkanediylthio group may be 1 to 17, preferably 1 to 11, more preferably 1 to 6, further preferably 1 to 4, and further more preferably 1 to 3. Examples of the cycloalkoxy group include cycloalkoxy groups having 3 to 35 carbon atoms, such as a cyclohexyloxy group. Examples of the cycloalkylalkoxy group include cycloalkylalkoxy groups having 4 to 35 carbon atoms, such as a cyclohexylmethoxy group. The number of carbon atoms in the cycloalkoxy group and the cycloalkylalkoxy group may be 3 to 17, preferably 3 to 11, and more preferably 3 to 6. Examples of the aromatic hydrocarbon group-carbonyloxy group include aromatic hydrocarbon group-carbonyloxy groups having 7 to 35 carbon atoms, such as a benzoyloxy group. Examples of the aromatic hydrocarbon group-carbonyl group include aromatic hydrocarbon group-carbonyl groups having 7 to 36 carbon atoms, such as a benzoyl group. Examples of the aromatic hydrocarbon group-oxy group include aromatic hydrocarbon group-oxy groups having 6 to 35 carbon atoms, such as a phenyloxy group. Examples of the group in which -CH2- in the alicyclic hydrocarbon group is replaced by -O-, -S-, -CO- or -SO2- include the groups shown below. -O- or -CO- in the groups shown below may be replaced by -S- or -SO2-. The bonding site may be at any position. TIFF2025071809000019.tif46168

[0028] L 20 and L 11 Examples of the substituent that the hydrocarbon group may have include a halogen atom, a cyano group, a nitro group, an alkyl group having 1 to 12 carbon atoms (-CH2- contained in the alkyl group may be replaced with -O- or -CO-), and combinations of these. L 20 and L 11 However, in the case of a group in which an alicyclic hydrocarbon group or an aromatic hydrocarbon group is combined with a chain hydrocarbon group such as an alkyl group, the chain hydrocarbon group such as an alkyl group can be regarded as substantially a substituent of the alicyclic hydrocarbon group or the aromatic hydrocarbon group. 20 and L 11 L is a group in which -CH2- in the hydrocarbon group is replaced with -O- or -CO-, etc. 20 and L 11 can substantially have a substituent such as a hydroxy group, a carboxy group, an alkoxy group, an alkoxycarbonyl group, an alkylcarbonyl group, an alkylcarbonyloxy group, a thiol group, an alkylthio group, or an alkylsulfonyl group. Examples of the halogen atom include a fluorine atom, a chlorine atom, a bromine atom, and an iodine atom. L 20 and L 11 The hydrocarbon group having 1 to 36 carbon atoms may have one or more substituents.

[0029] L 20represents a single bond, an alkanediyl group having 1 to 6 carbon atoms (provided that -CH2- contained in the alkanediyl group may be replaced by -O-, -S-, -SO2- or -CO-), a cyclic hydrocarbon group having 3 to 18 carbon atoms (provided that the cyclic hydrocarbon group may have a substituent, and the -CH2- contained in the cyclic hydrocarbon group may be replaced by -O-, -S-, -SO2- or -CO-), or a group formed by combining an alkanediyl group having 1 to 6 carbon atoms with a cyclic hydrocarbon group having 3 to 18 carbon atoms (provided that However, the cyclic hydrocarbon group may have a substituent, and -CH2- contained in the alkanediyl group and the cyclic hydrocarbon group may be replaced by -O-, -S-, -SO2- or -CO-.) is preferable, and a single bond, an alkanediyl group having 1 to 4 carbon atoms (wherein -CH2- contained in the alkanediyl group may be replaced by -O- or -CO-), an alicyclic hydrocarbon group having 3 to 18 carbon atoms (wherein -CH2- contained in the alicyclic hydrocarbon group may be replaced by -O-, -S-, -SO2- or -CO-), an aromatic hydrocarbon group having 6 to 18 carbon atoms which may have a substituent, a group formed by combining an alkanediyl group having 1 to 4 carbon atoms and an alicyclic hydrocarbon group having 3 to 18 carbon atoms (wherein -CH2- contained in the alkanediyl group may be replaced with -O- or -CO-, and -CH2- contained in the alicyclic hydrocarbon group may be replaced with -O-, -S-, -SO2- or -CO-), or an alkanediyl group having 1 to 4 carbon atoms which may have a substituent. and an aromatic hydrocarbon group having 6 to 18 carbon atoms (provided that -CH2- contained in the alkanediyl group may be replaced with -O- or -CO-). More preferred is a single bond, an alkanediyl group having 1 to 4 carbon atoms (provided that -CH2- contained in the alkanediyl group may be replaced with -O- or -CO-), or an alicyclic hydrocarbon group having 3 to 18 carbon atoms (provided that -CH2- contained in the alicyclic hydrocarbon group may be replaced with -O- or -CO-).), a phenylene group which may have a substituent, a group formed by combining an alkanediyl group having 1 to 4 carbon atoms and an alicyclic hydrocarbon group having 3 to 18 carbon atoms (provided that -CH2- contained in the alkanediyl group may be replaced by -O- or -CO-, and -CH2- contained in the alicyclic hydrocarbon group may be replaced by -O- or -CO-), or a group formed by combining an alkanediyl group having 1 to 4 carbon atoms and a phenylene group which may have a substituent (provided that -CH2- contained in the alkanediyl group may be replaced by -O- or -CO-), and even more preferably a single bond or an alkanediyl group having 1 to 4 carbon atoms (provided that -CH2- contained in the alkanediyl group may be replaced by -O- or -CO-).

[0030] L 11 Examples of the cyclic hydrocarbon group include a single bond, an alkanediyl group having 1 to 8 carbon atoms which may have a substituent (-CH2- contained in the alkanediyl group may be replaced with -O-, -S-, -SO2- or -CO), a cyclic hydrocarbon group having 3 to 18 carbon atoms which may have a substituent (-CH2- contained in the cyclic hydrocarbon group may be replaced with -O-, -S-, -SO2- or -CO-), and a group combining an alkanediyl group having 1 to 8 carbon atoms which may have a substituent and a cyclic hydrocarbon group having 3 to 18 carbon atoms which may have a substituent (the alkanediyl group and the -C Preferably, it is a single bond or an alkanediyl group having 1 to 6 carbon atoms (-CH2- contained in the alkanediyl group may be replaced by -O-, -S-, -SO2- or -CO-), more preferably a group combining an alkanediyl group having 1 to 6 carbon atoms (-CH2- contained in the alkanediyl group may be replaced by -O-, -S-, -SO2- or -CO-) with an aromatic hydrocarbon group having 6 to 18 carbon atoms which may have a substituent, and even more preferably a single bond or an *-O-phenylene group- or *-S-phenylene group- (the phenylene group may have a substituent, and * represents the bonding site with the benzene ring).

[0031] L 11 The bonding position of to the benzene ring is L 20 , X20 or R 20 The carbon atom to which L is bonded may be bonded at any of the o-, m-, and p-positions. 11 , L 20 , X 20 or R 20 is preferably bonded to the p-position or m-position, and more preferably bonded to the p-position, with respect to the bonding position of the carbon atom to which it is bonded.

[0032] R 22 Examples of the hydrocarbon group having 1 to 36 carbon atoms include chain hydrocarbon groups such as alkyl groups, alicyclic hydrocarbon groups, aromatic hydrocarbon groups, and combinations of these. Examples of the alkyl group include methyl, ethyl, propyl, isopropyl, butyl, isobutyl, tert-butyl, pentyl, hexyl, octyl, nonyl, etc. The number of carbon atoms in the chain hydrocarbon group is preferably 1 to 12, more preferably 1 to 9, still more preferably 1 to 6, still more preferably 1 to 4, and still more preferably 1 to 3. The alicyclic hydrocarbon group may be monocyclic, polycyclic or spirocyclic, and may be saturated or unsaturated. Examples of the alicyclic hydrocarbon group include the groups shown below. The bonding site may be any position. TIFF2025071809000020.tif47168Specifically, the alicyclic hydrocarbon group includes monocyclic cycloalkyl groups such as a cyclopropyl group, a cyclobutyl group, a cyclopentyl group, a cyclohexyl group, a cycloheptyl group, a cyclooctyl group, a cyclononyl group, a cyclodecyl group, and a cyclododecyl group, and polycyclic cycloalkyl groups such as a norbornyl group, an adamantyl group, and a decahydronaphthyl group.The number of carbon atoms in the alicyclic hydrocarbon group is preferably 3 to 18, more preferably 3 to 16, even more preferably 3 to 12, and even more preferably 3 to 10. Examples of the aromatic hydrocarbon group include aryl groups such as a phenyl group, a naphthyl group, a biphenyl group, an anthryl group, a phenanthryl group, etc. The number of carbon atoms in the aromatic hydrocarbon group is preferably 6 to 18, more preferably 6 to 14, and further preferably 6 to 10. Examples of the combined groups include a group in which an aromatic hydrocarbon group is combined with a chain hydrocarbon group (e.g., aromatic hydrocarbon group-alkanediyl group-*, alkyl group-aromatic hydrocarbon group-*, alkyl group-aromatic hydrocarbon group-alkanediyl group-*), a group in which an alicyclic hydrocarbon group is combined with a chain hydrocarbon group (e.g., alicyclic hydrocarbon group-alkanediyl group-*, alkyl group-alicyclic hydrocarbon group-*, alkyl group-alicyclic hydrocarbon group-alkanediyl group-*), a group in which an aromatic hydrocarbon group is combined with a alicyclic hydrocarbon group (e.g., aromatic hydrocarbon group-alicyclic hydrocarbon group-*, alicyclic hydrocarbon group-aromatic hydrocarbon group-*), etc. * represents a bonding site. The aromatic hydrocarbon group -alkanediyl group-* includes aralkyl groups such as benzyl group and phenethyl group. Examples of the alkyl group-aromatic hydrocarbon group-* include a tolyl group, a xylyl group, and a cumenyl group. Examples of the alicyclic hydrocarbon group -alkanediyl group-* include cycloalkylalkyl groups such as a cyclohexylmethyl group, a cyclohexylethyl group, a 1-(adamantan-1-yl)methyl group, and a 1-(adamantan-1-yl)-1-methylethyl group. Examples of the alkyl group-alicyclic hydrocarbon group-* include cycloalkyl groups having an alkyl group such as a methylcyclohexyl group, a dimethylcyclohexyl group, and a 2-alkyladamantan-2-yl group. Examples of the aromatic hydrocarbon group-alicyclic hydrocarbon group-* include a phenylcyclohexyl group. Examples of the alicyclic hydrocarbon group-aromatic hydrocarbon group-* include a cyclohexylphenyl group. In the combination, two or more of the alicyclic hydrocarbon groups, aromatic hydrocarbon groups, and chain hydrocarbon groups may be combined. Any of the combined groups may be bonded to X. R 22 In the case where -CH2- in the hydrocarbon group is replaced with -O-, -CO-, -S- or -SO2-, the number of carbon atoms before the replacement is regarded as the total number of carbon atoms in the hydrocarbon group. The number may be 1 or 2 or more. R 22 Examples of the hydrocarbon group in which -CH2- is replaced by -O-, -CO-, -S- or -SO2- include L 20 Examples of the hydrocarbon group include the same groups as those in which --CH2-- in the above formula is replaced by --O--, --CO--, --S-- or --SO2--.

[0033] R 22 Examples of the substituent that the hydrocarbon group in R may have include a halogen atom, a cyano group, and a nitro group. 22 However, in the case of a group in which an alicyclic hydrocarbon group or an aromatic hydrocarbon group is combined with a chain hydrocarbon group such as an alkyl group, the chain hydrocarbon group such as an alkyl group can be used as a substituent of the alicyclic hydrocarbon group or the aromatic hydrocarbon group. R 22 R is a group in which -CH2- in the hydrocarbon group is replaced with -O- or -CO-. 22 can substantially have a substituent such as a hydroxy group, a carboxy group, an alkoxy group, an alkoxycarbonyl group, an alkylcarbonyl group, or an alkylcarbonyloxy group. Examples of the halogen atom, alkyl group, alkoxy group, alkoxycarbonyl group, alkylcarbonyl group, alkylcarbonyloxy group, and combinations thereof include the same groups as those mentioned above. R 22 The substituent on the hydrocarbon group is preferably a halogen atom, an alkyl group having 1 to 4 carbon atoms, or a haloalkyl group having 1 to 4 carbon atoms, more preferably a halogen atom, an alkyl group having 1 to 4 carbon atoms, or a perfluoroalkyl group having 1 to 4 carbon atoms, and further preferably a fluorine atom, an iodine atom, a methyl group, a t-butyl group, or a trifluoromethyl group. R 22 The hydrocarbon group having 1 to 36 carbon atoms represented by the following formula may have one or more substituents. X represents an iodine atom or a sulfur atom. When X is a sulfur atom, two R 22 may be bonded to each other to form a ring together with the sulfur atom to which they are bonded, and -CH2- contained in the ring may be replaced with -O-, -S-, -CO-, -SO- or -SO2-.

[0034] R 22represents an optionally substituted chain hydrocarbon group having 1 to 8 carbon atoms (-CH2- contained in the chain hydrocarbon group may be replaced by -O-, -S-, -SO2- or -CO-, and the substituents or the chain hydrocarbon groups may be bonded to each other and together with the sulfur atom to which they are bonded form a ring), an optionally substituted cyclic hydrocarbon group having 3 to 18 carbon atoms (-CH2- contained in the cyclic hydrocarbon group may be replaced by -O-, -S-, -SO2- or -CO-, and the substituents or the cyclic hydrocarbon groups may be bonded to each other to form a ring), and may form a ring together with the sulfur atom to which they are bonded.) or a group combining a cyclic hydrocarbon group having 3 to 18 carbon atoms, which may have a substituent, and a chain hydrocarbon group having 1 to 8 carbon atoms, which may have a substituent (-CH2- contained in the cyclic hydrocarbon group and the chain hydrocarbon group may be replaced by -O-, -S-, -SO2- or -CO-, and the substituents or the combined groups may be bonded to each other and form a ring together with the sulfur atom to which they are bonded). It is more preferred that the aromatic hydrocarbon group is an aromatic hydrocarbon group having 6 to 18 carbon atoms, which may be substituted, or a group obtained by combining an aromatic hydrocarbon group having 6 to 18 carbon atoms, which may be substituted, with a chain hydrocarbon group having 1 to 6 carbon atoms, which may be substituted, (-CH2- contained in the chain hydrocarbon group may be replaced with -O- or -CO-, and the substituents or the combined groups may be bonded to each other and form a ring together with the sulfur atoms to which they are bonded). It is even more preferred that the aromatic hydrocarbon group is ... alkyl group may be replaced with -O- or -CO-, and the substituents or the combined groups may be bonded to each other and form a ring together with the sulfur atoms to which they are bonded). Here, -CH2- contained in the ring may be replaced by -O-, -S-, -CO-, -SO- or -SO2-.

[0035] R 33 Examples of the halogen atom include a fluorine atom, a chlorine atom, a bromine atom, and an iodine atom. R 33 The haloalkyl group having 1 to 12 carbon atoms represents an alkyl group having 1 to 12 carbon atoms and a halogen atom, and examples thereof include a fluorinated alkyl group having 1 to 12 carbon atoms, a chlorinated alkyl group having 1 to 12 carbon atoms, a brominated alkyl group having 1 to 12 carbon atoms, and an iodinated alkyl group having 1 to 12 carbon atoms. Examples of the haloalkyl group include a perfluoroalkyl group having 1 to 6 carbon atoms (trifluoromethyl group, pentafluoroethyl group, heptafluoropropyl group, nonafluorobutyl group), as well as a 2,2,2-trifluoroethyl group, a 3,3,3-trifluoropropyl group, a 4,4,4-trifluorobutyl group, and a 3,3,4,4,4-pentafluorobutyl group, a chloromethyl group, a bromomethyl group, and an iodomethyl group. The number of carbon atoms in the haloalkyl group is preferably 1 to 9, more preferably 1 to 6, even more preferably 1 to 4, and even more preferably 1 to 3. R 33 Examples of the hydrocarbon group having 1 to 18 carbon atoms include chain hydrocarbon groups such as alkyl groups, alicyclic hydrocarbon groups, aromatic hydrocarbon groups, and groups formed by combining these. Examples of the alkyl group include a methyl group, an ethyl group, an n-propyl group, an isopropyl group, an n-butyl group, a sec-butyl group, a tert-butyl group, a pentyl group, a hexyl group, a heptyl group, a 2-ethylhexyl group, an octyl group, a nonyl group, a decyl group, an undecyl group, and a dodecyl group, etc. The number of carbon atoms in the chain hydrocarbon group is preferably 1 to 12, more preferably 1 to 9, still more preferably 1 to 6, still more preferably 1 to 4, and still more preferably 1 to 3. The alicyclic hydrocarbon group may be either monocyclic or polycyclic. Examples of the alicyclic hydrocarbon group include the groups shown below. The bonding site may be any position. TIFF2025071809000021.tif47169Specific examples of the alicyclic hydrocarbon group include monocyclic cycloalkyl groups such as a cyclopropyl group, a cyclobutyl group, a cyclopentyl group, a cyclohexyl group, a cycloheptyl group, a cyclooctyl group, a cyclononyl group, a cyclodecyl group, and a cyclododecyl group, and polycyclic cycloalkyl groups such as a norbornyl group, an adamantyl group, and a decahydronaphthyl group.The number of carbon atoms in the alicyclic hydrocarbon group is preferably 3 to 18, more preferably 3 to 16, and even more preferably 3 to 12. Examples of the aromatic hydrocarbon group include a phenyl group, a naphthyl group, a biphenyl group, an anthryl group, a phenanthryl group, a binaphthyl group, etc. The number of carbon atoms in the aromatic hydrocarbon group is preferably 6 to 18, more preferably 6 to 14, and further preferably 6 to 10. Groups formed by combination include groups that combine an aromatic hydrocarbon group with a chain hydrocarbon group (e.g., aromatic hydrocarbon group-alkanediyl group-*, alkyl group-aromatic hydrocarbon group-*), groups that combine an alicyclic hydrocarbon group with a chain hydrocarbon group (e.g., alicyclic hydrocarbon group-alkanediyl group-*, alkyl group-alicyclic hydrocarbon group-*), and groups that combine an aromatic hydrocarbon group with a alicyclic hydrocarbon group (e.g., aromatic hydrocarbon group-alicyclic hydrocarbon group-*, alicyclic hydrocarbon group-aromatic hydrocarbon group-*). * represents a bonding site. The aromatic hydrocarbon group -alkanediyl group-* includes aralkyl groups such as benzyl group and phenethyl group. Examples of the alkyl group-aromatic hydrocarbon group-* include a tolyl group, a xylyl group, and a cumenyl group. Examples of the alicyclic hydrocarbon group -alkanediyl group-* include cycloalkylalkyl groups such as a cyclohexylmethyl group, a cyclohexylethyl group, a 1-(adamantan-1-yl)methyl group, and a 1-(adamantan-1-yl)-1-methylethyl group. Examples of the alkyl group-alicyclic hydrocarbon group-* include cycloalkyl groups having an alkyl group such as a methylcyclohexyl group, a dimethylcyclohexyl group, and a 2-alkyladamantan-2-yl group. Examples of the aromatic hydrocarbon group-alicyclic hydrocarbon group-* include a phenylcyclohexyl group. Examples of the alicyclic hydrocarbon group-aromatic hydrocarbon group-* include a cyclohexylphenyl group. In the combination, two or more of the alicyclic hydrocarbon group, aromatic hydrocarbon group, and chain hydrocarbon group may be combined. In addition, -CH2- contained in the alicyclic hydrocarbon group and chain hydrocarbon group (alkanediyl group, alkyl group) may be replaced with -O-, -S-, -CO-, or -SO2-. Any of the groups in the combination may be bonded to the benzene ring. Examples of groups in which -CH2- in a haloalkyl group or a hydrocarbon group is replaced with -O-, -S-, -CO- or -SO2- include a hydroxy group (a group in which -CH2- in a methyl group is replaced with -O-), a carboxy group (a group in which -CH2-CH2- in an ethyl group is replaced with -O-CO-), a thiol group (a group in which -CH2- in a methyl group is replaced with -S-), an alkoxy group (a group in which -CH2- at any position in an alkyl group is replaced with -O-), an alkylthio group (a group in which - a group in which -CH2- is replaced by -S-), an alkoxycarbonyl group (a group in which -CH2-CH2- at any position in an alkyl group is replaced by -O-CO-), an alkylsulfonyl group (a group in which -CH2- at any position in an alkyl group is replaced by -SO2-), an alkylcarbonyl group (a group in which -CH2- at any position in an alkyl group is replaced by -CO-), an alkylcarbonyloxy group (a group in which -CH2-CH2- at any position in an alkyl group is replaced by -CO-O-), an alkoxycarbonyloxy group (a group in which -CH2-CH2-CH2- at any position in an alkyl group is replaced with -O-CO-O-), an oxy group (a group in which -CH2- in a methylene group is replaced with -O-), a carbonyl group (a group in which -CH2- in a methylene group is replaced with -CO-), a thio group (a group in which -CH2- in a methylene group is replaced with -S-), a sulfonyl group (a group in which -CH2- in a methylene group is replaced with -SO2-), an alkanediyloxy group (a group in which -CH2- at any position in an alkanediyl group is replaced with -O-), replaced with -O-CO-), alkanediyloxycarbonyl group (a group in which -CH2-CH2- at any position contained in an alkanediyl group is replaced with -O-CO-), alkanediylcarbonyl group (a group in which -CH2- at any position contained in an alkanediyl group is replaced with -CO-), alkanediylcarbonyloxy group (a group in which -CH2-CH2- at any position contained in an alkanediyl group is replaced with -CO-O-), alkanediylsulfonyl group (a group in which -CH2- at any position contained in an alkanediyl group is replaced with -SO2-),Examples of such groups include an alkanediylthio group (a group in which -CH- at any position in an alkanediyl group is replaced with -S-), a cycloalkoxy group, a cycloalkylalkoxy group, an aromatic hydrocarbon group-carbonyloxy group, an aromatic hydrocarbon group-carbonyl group, an aromatic hydrocarbon group-oxy group, and a group in which two or more of these groups are combined. Examples of the alkoxy group include alkoxy groups having 1 to 17 carbon atoms, such as a methoxy group, an ethoxy group, a propoxy group, a butoxy group, a pentyloxy group, a hexyloxy group, an octyloxy group, a 2-ethylhexyloxy group, a nonyloxy group, a decyloxy group, an undecyloxy group, etc. The number of carbon atoms in the alkoxy group is preferably 1 to 11, more preferably 1 to 6, further preferably 1 to 4, and even more preferably 1 to 3. Examples of the alkoxycarbonyl group include alkoxycarbonyl groups having 2 to 17 carbon atoms, such as methoxycarbonyl, ethoxycarbonyl, and butoxycarbonyl groups. Examples of the alkylcarbonyl group include alkylcarbonyl groups having 2 to 18 carbon atoms, such as acetyl, propionyl, and butyryl groups. Examples of the alkylcarbonyloxy group include alkylcarbonyloxy groups having 2 to 17 carbon atoms, such as acetyloxy, propionyloxy, and butyryloxy groups. Examples of the alkoxycarbonyloxy group include alkoxycarbonyloxy groups having 2 to 16 carbon atoms, such as butoxycarbonyloxy groups. The number of carbon atoms in the alkoxycarbonyl group and the alkylcarbonyloxy group is preferably 2 to 11, more preferably 2 to 6, even more preferably 2 to 4, and even more preferably 2 or 3. The alkylcarbonyl group has preferably 2 to 12 carbon atoms, more preferably 2 to 6, still more preferably 2 to 4, and even more preferably 2 or 3. The alkoxycarbonyloxy group has preferably 2 to 11 carbon atoms, more preferably 2 to 6, still more preferably 2 to 4, and even more preferably 2 or 3. The alkylthio group includes an alkylthio group having 1 to 17 carbon atoms, such as a methylthio group, an ethylthio group, a propylthio group, a butylthio group, a pentylthio group, a hexylthio group, an octylthio group, a 2-ethylhexylthio group, a nonylthio group, a decylthio group, and an undecylthio group. The alkylsulfonyl group includes an alkylsulfonyl group having 1 to 17 carbon atoms, such as a methylsulfonyl group, an ethylsulfonyl group, a propylsulfonyl group, a butylsulfonyl group, a pentylsulfonyl group, a hexylsulfonyl group, an octylsulfonyl group, a 2-ethylhexylsulfonyl group, a nonylsulfonyl group, a decylsulfonyl group, and an undecylsulfonyl group. The number of carbon atoms in the alkylthio group and the alkylsulfonyl group is preferably 1 to 11, more preferably 1 to 6, further preferably 1 to 4, and even more preferably 1 to 3, respectively. The alkanediyloxy group includes an alkanediyloxy group having 1 to 17 carbon atoms, such as a methyleneoxy group, an ethyleneoxy group, a propanediyloxy group, a butanediyloxy group, a pentanediyloxy group, etc. The number of carbon atoms in the alkanediyloxy group is preferably 1 to 11, more preferably 1 to 6, further preferably 1 to 4, and further more preferably 1 to 3. Examples of the alkanediyloxycarbonyl group include alkanediyloxycarbonyl groups having 2 to 17 carbon atoms, such as methyleneoxycarbonyl group, ethyleneoxycarbonyl group, propanediyloxycarbonyl group, butanediyloxycarbonyl group, etc. Examples of the alkanediylcarbonyl group include alkanediylcarbonyl groups having 2 to 18 carbon atoms, such as methylenecarbonyl group, ethylenecarbonyl group, propanediylcarbonyl group, butanediylcarbonyl group, pentanediylcarbonyl group, etc. Examples of the alkanediylcarbonyloxy group include alkanediylcarbonyloxy groups having 2 to 17 carbon atoms, such as methylenecarbonyloxy group, ethylenecarbonyloxy group, propanediylcarbonyloxy group, butanediylcarbonyloxy group, etc. The number of carbon atoms in the alkanediyloxycarbonyl group and the alkanediylcarbonyloxy group is preferably 2 to 11, more preferably 2 to 6, still more preferably 2 to 4, and even more preferably 2 or 3. The number of carbon atoms in the alkanediylcarbonyl group is preferably 2 to 12, more preferably 2 to 6, still more preferably 2 to 4, and even more preferably 2 or 3. The alkanediylthio group includes an alkanediylthio group having 1 to 17 carbon atoms, such as a methylenethio group, an ethylenethio group, a propylenethio group, etc. The alkanediylsulfonyl group includes an alkanediylsulfonyl group having 1 to 17 carbon atoms, such as a methylenesulfonyl group, an ethylenesulfonyl group, a propylenesulfonyl group, etc. The number of carbon atoms in the alkanediylthio group and the alkanediylsulfonyl group is preferably 1 to 11, more preferably 1 to 6, further preferably 1 to 4, and further more preferably 1 to 3, respectively. Examples of the cycloalkoxy group include cycloalkoxy groups having 3 to 17 carbon atoms, such as a cyclohexyloxy group. Examples of the cycloalkylalkoxy group include cycloalkylalkoxy groups having 4 to 17 carbon atoms, such as a cyclohexylmethoxy group. The number of carbon atoms in the cycloalkoxy group and the cycloalkylalkoxy group is preferably 3 to 11, and more preferably 3 to 6. Examples of the aromatic hydrocarbon group-carbonyloxy group include aromatic hydrocarbon group-carbonyloxy groups having 7 to 17 carbon atoms, such as a benzoyloxy group. Examples of the aromatic hydrocarbon group-carbonyl group include aromatic hydrocarbon group-carbonyl groups having 7 to 18 carbon atoms, such as a benzoyl group. Examples of the aromatic hydrocarbon group-oxy group include aromatic hydrocarbon group-oxy groups having 6 to 17 carbon atoms, such as a phenyloxy group. Examples of the haloalkoxy group, the haloalkoxycarbonyl group, the haloalkylcarbonyl group and the haloalkylcarbonyloxy group include a haloalkoxy group having 1 to 11 carbon atoms, a haloalkoxycarbonyl group having 2 to 11 carbon atoms, a haloalkylcarbonyl group having 2 to 12 carbon atoms and a haloalkylcarbonyloxy group having 2 to 11 carbon atoms, and include, for example, groups in which one or more hydrogen atoms of the above-exemplified groups are replaced with a halogen atom. Examples of the group in which -CH2- in the alicyclic hydrocarbon group is replaced by -O-, -CO-, -S- or -SO2- include the groups shown below. -O- or -CO- in the groups shown below may be replaced by -S- or -SO2-. The bonding site may be at any position. TIFF2025071809000022.tif47168When -CH2- in a haloalkyl group or a hydrocarbon group is replaced with -O-, -CO-, -S-, or -SO2-, the number of carbon atoms before the replacement is the total number of carbon atoms in the haloalkyl group or the hydrocarbon group. The number may be 1 or 2 or more. The replacement of a haloalkyl group is the same as the replacement of an alkyl group. R 33Examples of the substituent that the hydrocarbon group may have include a halogen atom, a cyano group, an alkyl group having 1 to 12 carbon atoms (-CH2- contained in the alkyl group may be replaced with -O- or -CO-), and combinations of these. R 33 R is a group in which -CH2- in the hydrocarbon group is replaced with -O- or -CO-. 33 can substantially have a substituent such as a hydroxy group, a carboxy group, an alkoxy group, an alkoxycarbonyl group, an alkylcarbonyl group, or an alkylcarbonyloxy group. Examples of the halogen atom include the same groups as those mentioned above. The hydrocarbon group may have one substituent or multiple substituents.

[0036] R 33 is preferably a halogen atom, a haloalkyl group having 1 to 6 carbon atoms, or an alkyl group having 1 to 6 carbon atoms (-CH2- contained in the haloalkyl group and the alkyl group may be replaced with -O- or -CO-), more preferably a halogen atom, a haloalkyl group having 1 to 4 carbon atoms, or an alkyl group having 1 to 4 carbon atoms (-CH2- contained in the alkyl group may be replaced with -O- or -CO-), still more preferably a halogen atom, a fluorinated alkyl group having 1 to 4 carbon atoms, or an alkyl group having 1 to 4 carbon atoms (-CH2- contained in the alkyl group may be replaced with -O- or -CO-), still more preferably a fluorine atom, an iodine atom, a perfluoroalkyl group having 1 to 4 carbon atoms, or an alkyl group having 1 to 4 carbon atoms, and still more preferably a fluorine atom, an iodine atom, a methyl group, or a trifluoromethyl group. m33 is preferably an integer of 0 to 3, and more preferably 0, 1 or 2.

[0037] Examples of the cation of the sulfonate (I) include cations represented by the following formulae (Ic-1) to (Ic-45). TIFF2025071809000023.tif142164

[0038] TIFF2025071809000024.tif134157

[0039] TIFF2025071809000025.tif108150

[0040] TIFF2025071809000026.tif115149

[0041] In the above structural unit, R 20 and R 20 Specific examples of the structural unit (I) include structural units in which a hydrogen atom corresponding to the following formula is replaced with a halogen atom, a haloalkyl group or an alkyl group.

[0042] The sulfonate (I) is a combination of the above-mentioned anion and the above-mentioned organic cation, which can be arbitrarily combined. The sulfonate (I) is preferably a combination of an anion represented by any one of formulas (Ia-1) to (Ia-3), (Ia-5) to (Ia-7), (Ia-17) to (Ia-22), (Ia-26), (Ia-31) to (Ia-42), and (Ia-44) to (Ia-47) and a cation represented by formulas (Ic-1) to (Ic-45).

[0043] Examples of the sulfonate (I) include salts shown in Table 1. In the table below, each symbol represents the symbol attached to the structure representing the above-mentioned anion or cation. For example, the sulfonate (I-1) means a salt consisting of an anion represented by formula (Ia-1) and a cation represented by formula (Ic-1), and represents the salt shown below. TIFF2025071809000027.tif28107 [Table 1] TIFF2025071809000029.tif57142

[0044] Among these, as the salt (I), a salt obtained by combining an anion represented by any one of Formulas (Ia-1) to (Ia-3), (Ia-5) to (Ia-7), (Ia-17) to (Ia-22), (Ia-26), (Ia-31) to (Ia-42), and (Ia-44) to (Ia-47) with a cation represented by any one of Formulas (Ic-1) to (Ic-44) is preferable.

[0045] <Method for producing salt (I)> Salt (I) can be produced, for example, by reacting a salt represented by formula (I-a1), a salt represented by formula (I-a2), or a salt represented by formula (I-a3) with a compound represented by formula (Ib) in a solvent in the presence of a catalyst, and then, if necessary, treating with an acid. TIFF2025071809000030.tif134151 (wherein all symbols have the same meanings as defined above. nm2 represents 0 or 1. L 1’ , L 1 From - (CO) nm2 -O-(CO) 1-nm2 represents a group excluding -. Solvents for this reaction include chloroform, acetonitrile, and the like. Examples of the catalyst include carbonyldiimidazole, 1-[3-(dimethylamino)propyl]-3-ethylcarbodiimide hydrochloride, and the like. The acid in this reaction includes hydrochloric acid and the like. The reaction temperature is usually 5° C. to 80° C., and the reaction time is usually 0.5 hours to 24 hours.

[0046] Examples of the salt represented by formula (I-a1) include the salts represented by the following formulas, which are readily available on the market or can be easily produced by known methods. TIFF2025071809000031.tif57144

[0047] Examples of the salt represented by formula (I-a2) include the salts represented by the following formulas, which are readily available on the market or can be easily produced by known methods. TIFF2025071809000032.tif29142

[0048] Examples of the salt represented by formula (I-a3) include the salts represented by the following formulas, which are readily available on the market or can be easily produced by known methods. TIFF2025071809000033.tif145156 Examples of the compound represented by formula (Ib) include compounds represented by the following formula, which are easily available on the market and can also be easily produced by known production methods. TIFF2025071809000034.tif35148

[0049] In salt (I), mm1 = 1, X 0 However, *-CO-O-(* is C(R 11 )(R 12 ) or C(Q 1 )(Q 2 ) (salt represented by formula (I1)) can be produced, for example, by reacting a salt represented by formula (I1-a) with carbonyldiimidazole in a solvent, and then reacting the salt with a compound represented by formula (I1-b). TIFF2025071809000035.tif65166 (wherein all symbols have the same meanings as above.) Solvents for this reaction include chloroform, acetonitrile, and the like. The reaction temperature is usually 5° C. to 80° C., and the reaction time is usually 0.5 hours to 24 hours.

[0050] Examples of the compound represented by formula (Ib) include salts represented by the following formula, which are readily available on the market and can be easily produced by known methods. TIFF2025071809000036.tif125165

[0051] The salt represented by formula (I1-a) can be produced by reacting a salt represented by formula (I1-c) with a salt represented by formula (I1-d) in a solvent. TIFF2025071809000037.tif44162 [wherein all symbols have the same meanings as defined above.] Examples of the solvent used in this reaction include chloroform, acetonitrile, methanol, and ion-exchanged water. The reaction temperature is usually 0° C. to 80° C., and the reaction time is usually 0.5 hours to 24 hours.

[0052] Examples of the salt represented by formula (I1-c) include salts represented by the following formula, which are readily available on the market and can be easily produced by known methods. TIFF2025071809000038.tif24167

[0053] Examples of the salt represented by formula (I1-d) include salts represented by the following formula, which are readily available on the market and can be easily produced by known methods. TIFF2025071809000039.tif1834

[0054] In salt (I), mm1 = 1, X 0 The salt in which * is --O--CO--O-- (salt represented by formula (I2)) can be produced, for example, by reacting a salt represented by formula (I2-a) with carbonyldiimidazole in a solvent, and then reacting the resulting mixture with a compound represented by formula (I1-b). In addition, the salt represented by formula (I2) can also be produced, for example, by reacting a compound represented by formula (I1-b) with carbonyldiimidazole in a solvent, and then further reacting the resulting mixture with a salt represented by formula (I2-a). TIFF2025071809000040.tif99157 (wherein all symbols have the same meanings as above.) Solvents for this reaction include chloroform, acetonitrile, and the like. The reaction temperature is usually 5° C. to 80° C., and the reaction time is usually 0.5 hours to 24 hours.

[0055] The salt represented by formula (I2-a) can be produced by reacting a salt represented by formula (I1-c) with a salt represented by formula (I2-d) in a solvent. TIFF2025071809000041.tif43158 [wherein all symbols have the same meanings as defined above.] Examples of the solvent used in this reaction include chloroform, acetonitrile, methanol, and ion-exchanged water. The reaction temperature is usually 0° C. to 80° C., and the reaction time is usually 0.5 hours to 24 hours. Examples of the salt represented by formula (I2-d) include salts represented by the following formula, which are readily available on the market and can be easily produced by known methods. TIFF2025071809000042.tif1369

[0056] In salt (I), mm1 = 1, X 0 The salt in which * is --O--CO- (salt represented by formula (I3)) can be produced, for example, by reacting a compound represented by formula (I3-b) with carbonyldiimidazole in a solvent, and then further reacting it with a salt represented by formula (I2-a). TIFF2025071809000043.tif60165 (wherein all symbols have the same meanings as above.) Solvents for this reaction include chloroform, acetonitrile, and the like. The reaction temperature is usually 5° C. to 80° C., and the reaction time is usually 0.5 hours to 24 hours.

[0057] Examples of the compound represented by formula (I3-b) include the compounds represented by the following formulas, which are readily available on the market or can be readily produced by known methods. TIFF2025071809000044.tif47141

[0058] In salt (I), mm1 = 1, X 0 The salt in which is *-O- (salt represented by formula (I4)) can be obtained by reacting a salt represented by formula (I2-a) with a compound represented by formula (I1-b) in a solvent in the presence of a base. TIFF2025071809000045.tif59164 (wherein all symbols have the same meanings as above.) The base in this reaction includes potassium hydroxide and the like. The solvent for this reaction may be acetonitrile or the like. The reaction temperature is usually 5° C. to 80° C., and the reaction time is usually 0.5 hours to 24 hours.

[0059] In salt (I), mm1 = 1, L 1 A salt represented by the formula (I1-d) or the formula (I2-d) in synthesizing the salts represented by the formulas (I1) to (I4) is a group formed by combining an alkanediyl group having 1 to 4 carbon atoms with an alicyclic hydrocarbon group having 3 to 18 carbon atoms (wherein -CH2- contained in the alkanediyl group may be replaced with -O- or -CO-, and -CH2- contained in the alicyclic hydrocarbon group may be replaced with -O-, -S-, -SO2- or -CO-), can be produced by replacing the salt represented by the formula (I1-d) or the salt represented by the formula (I2-d) with the salt represented by the following formula when synthesizing the salts represented by the formulas (I1) to (I4). TIFF2025071809000046.tif18161

[0060] [Structural unit derived from sulfonate represented by formula (I)] The structural unit derived from the sulfonate represented by formula (I) is a structural unit represented by formula (IP) (hereinafter sometimes referred to as "structural unit (IP)"). TIFF2025071809000047.tif38158 [wherein all symbols have the same meanings as defined above.] The structural unit (IP) is CH2=CR contained in the sulfonate salt (I).20 This shows the state in which the double bond is cleaved. The structural unit represented by formula (IP) may be contained in a compound such as an oligomer, or may be one of the structural units constituting a resin. The structural unit (IP) can function as a sulfonic acid generator, similarly to the sulfonate (I).

[0061] [Resin containing structural units (IP) derived from sulfonate represented by formula (I)] The resin of the present invention is a resin containing a structural unit (IP) derived from a sulfonate salt represented by formula (I) (hereinafter, may be referred to as "resin (Ap)"). The resin (Ap) may be a homopolymer containing one type of structural unit (IP) or a copolymer containing two or more types of structural units (IP). The resin (Ap) may also contain a structural unit other than the structural unit (IP). As the structural unit other than the structural unit (IP), as described below, there may be mentioned a structural unit having an acid labile group (hereinafter, sometimes referred to as "structural unit (a1)") and a structural unit other than a structural unit having an acid labile group. As the structural unit other than a structural unit having an acid labile group, there may be mentioned a structural unit not having an acid labile group (hereinafter, sometimes referred to as "structural unit (s)") and a structural unit known in the art. Here, the "acid labile group" means a group having a leaving group, which is released by contact with an acid, and the structural unit is converted into a structural unit having a hydrophilic group (e.g., a hydroxyl group or a carboxyl group). The content of the structural unit (IP) is 0.1 mol% or more, preferably 0.5 mol% or more, more preferably 0.8 mol% or more, and even more preferably 1 mol% or more, based on the total structural units of the resin (Ap). Also, it is 100 mol% or less, preferably 50 mol% or less, more preferably 30 mol% or less, and even more preferably 10 mol% or less. Specifically, it is 0.1 to 100 mol%, preferably 0.5 to 50 mol%, more preferably 0.8 to 30 mol%, and even more preferably 1 to 10 mol%.

[0062] In particular, when the resin (Ap) is used in a resist composition as described below, in addition to the structural unit (IP), it can contain the structural unit (a1), the structural unit (s) and / or other structural units, etc. The resin (Ap) may further contain, for example, the structural unit (a1). Furthermore, as described below, when the resin (Ap) is used in a resist composition, regardless of whether it contains the structural unit (a1), it may be used in combination with a resin containing the structural unit (a1) (hereinafter sometimes referred to as "resin (A)"). Hereinafter, the resin (Ap) and / or the resin (A) may be referred to as "resin (A), etc." Each of the resin (Ap) and the resin (A) preferably further contains a structural unit other than the structural unit (a1).

[0063] <Structural unit (a1)> The structural unit (a1) is derived from a monomer having an acid labile group (hereinafter sometimes referred to as "monomer (a1)"). The acid labile group contained in the resin (A) etc. is preferably a group represented by formula (1) (hereinafter also referred to as group (1)) and / or a group represented by formula (2) (hereinafter also referred to as group (2)). TIFF2025071809000048.tif1988[In formula (1), R a1 , R a2 and R a3 each independently represents an alkyl group having 1 to 8 carbon atoms, an alkenyl group having 2 to 8 carbon atoms, an alicyclic hydrocarbon group having 3 to 20 carbon atoms, an aromatic hydrocarbon group having 6 to 18 carbon atoms, or a combination thereof, or R a1 and R a2 are bonded to each other to form, together with the carbon atom to which they are bonded, an alicyclic hydrocarbon group having 3 to 20 carbon atoms, and the alkyl group, the alkenyl group, the alicyclic hydrocarbon group and the aromatic hydrocarbon group may have a halogen atom. ma and na each independently represent 0 or 1, and at least one of ma and na represents 1. * denotes a binding site.] TIFF2025071809000049.tif2171[In formula (2), R a1’ and Ra2’ each independently represents a hydrogen atom or a hydrocarbon group having 1 to 12 carbon atoms; R a3’ represents a hydrocarbon group having 1 to 20 carbon atoms, or R a2’ and R a3’ are bonded to each other to form, together with the carbon atom to which they are bonded and X, a heterocyclic group having 3 to 20 carbon atoms, and -CH2- contained in the hydrocarbon group and the heterocyclic group may be replaced by -O- or -S-, and the hydrocarbon group and the heterocyclic group may have a halogen atom. X represents an oxygen atom or a sulfur atom. na′ represents 0 or 1. * denotes a binding site.]

[0064] R a1 , R a2 and R a3 Examples of the alkyl group in include a methyl group, an ethyl group, a propyl group, a butyl group, a pentyl group, a hexyl group, a heptyl group, and an octyl group. R a1 , R a2 and R a3 Examples of the alkenyl group in include an ethenyl group, a propenyl group, an isopropenyl group, a butenyl group, an isobutenyl group, a tert-butenyl group, a pentenyl group, a hexenyl group, a heptenyl group, an octenyl group, an isooctenyl group, and a nonenyl group. R a1 , R a2 and R a3 The alicyclic hydrocarbon group in may be either monocyclic or polycyclic. Examples of monocyclic alicyclic hydrocarbon groups include cycloalkyl groups such as cyclopentyl, cyclohexyl, cycloheptyl, and cyclooctyl. Examples of polycyclic alicyclic hydrocarbon groups include decahydronaphthyl, adamantyl, and norbornyl groups, as well as the following groups (* indicates a bonding site). R a1 , R a2 and R a3 The alicyclic hydrocarbon group preferably has 3 to 16 carbon atoms. TIFF2025071809000050.tif10150R a1 , R a2 and Ra3 Examples of the aromatic hydrocarbon group in include aryl groups such as a phenyl group, a naphthyl group, an anthryl group, a biphenyl group, and a phenanthryl group. Examples of the combined group include a group in which the above-mentioned alkyl group and an alicyclic hydrocarbon group are combined (for example, an alkylcycloalkyl group or a cycloalkylalkyl group such as a methylcyclohexyl group, a methylnorbornyl group, a cyclohexylmethyl group, an adamantylmethyl group, an adamantyldimethyl group, or a norbornylethyl group), an aralkyl group such as a benzyl group, an aromatic hydrocarbon group having an alkyl group (a p-methylphenyl group, a p-tert-butylphenyl group, a tolyl group, a xylyl group, a cumenyl group, a mesityl group, a 2,6-diethylphenyl group, a 2-methyl-6-ethylphenyl group, or the like), an aromatic hydrocarbon group having an alicyclic hydrocarbon group (a p-cyclohexylphenyl group, a p-adamantylphenyl group, or the like), and an aryl-cycloalkyl group such as a phenylcyclohexyl group. Preferably, ma is 0 and na is 1. R a1 and R a2 When they are bonded to each other to form an alicyclic hydrocarbon group, -C(R a1 )(R a2 )(R a3 ) includes the following groups. The alicyclic hydrocarbon group preferably has 3 to 12 carbon atoms. * represents the bonding site with -O-. TIFF2025071809000051.tif28138

[0065] R a1’ , R a2’ and R a3’ Examples of the hydrocarbon group in include an alkyl group, an alicyclic hydrocarbon group, an aromatic hydrocarbon group, and a group formed by combining these groups. Alkyl groups, alicyclic hydrocarbon groups, aromatic hydrocarbon groups, and groups formed by combining these groups are R a1 , R a2 and R a3 Examples of the groups include the same groups as those listed in the above. R a2’and R a3’ When they are bonded to each other to form a heterocyclic group together with the carbon atom to which they are bonded and X, -C(R a1’ )(R a2’ )-XR a3’ Examples of the group include the following: * represents a binding site. TIFF2025071809000052.tif18130R a1 , R a2 , R a3 , R a1 , R a2’ and R a3’ The halogen atom which may be contained includes a fluorine atom, a chlorine atom, a bromine atom, and an iodine atom. R a1’ and R a2’ At least one of these is preferably a hydrogen atom. na' is preferably 0.

[0066] Examples of the group (1) include the following groups. In formula (1), R a1 , R a2 and R a3 is an alkyl group, ma = 0, and na = 1. As the group, a tert-butoxycarbonyl group is preferable. In formula (1), R a1 , R a2 together with the carbon atom to which they are attached form an adamantyl group, R a3 is an alkyl group, ma=0, and na=1. In formula (1), R a1 and R a2 are each independently an alkyl group; R a3 is an adamantyl group, ma=0, and na=1. Specific examples of the group (1) include the following groups: * represents a binding site. TIFF2025071809000053.tif149165

[0067] Specific examples of the group (2) include the following groups: * represents a bonding site. TIFF2025071809000054.tif55153

[0068] The monomer (a1) is preferably a monomer having an acid labile group and an ethylenically unsaturated bond, more preferably a (meth)acrylic monomer having an acid labile group. Of the (meth)acrylic monomers having an acid labile group, preferred are those having an alicyclic hydrocarbon group having 5 to 20 carbon atoms. By using a resin (A) or the like having a structural unit derived from a monomer (a1) having a bulky structure such as an alicyclic hydrocarbon group in a resist composition, the resolution of the resist pattern can be improved.

[0069] Examples of the structural unit derived from the (meth)acrylic monomer having the group (1) include a structural unit represented by formula (a1-0) (hereinafter, sometimes referred to as structural unit (a1-0)), a structural unit represented by formula (a1-1) (hereinafter, sometimes referred to as structural unit (a1-1)), or a structural unit represented by formula (a1-2) (hereinafter, sometimes referred to as structural unit (a1-2)). Preferably, it is at least one structural unit selected from the group consisting of the structural unit (a1-0), the structural unit (a1-1) and the structural unit (a1-2), more preferably at least one structural unit selected from the group consisting of the structural unit (a1-1) and the structural unit (a1-2). These may be used alone or in combination of two or more. TIFF2025071809000055.tif45149 [In formula (a1-0), formula (a1-1) and formula (a1-2), all symbols have the same meaning as above.]

[0070] R a01 , R a4 and R a5 The halogen atom in the formula (I) includes a fluorine atom, a chlorine atom, a bromine atom, and an iodine atom. R a01 , R a4 and R a5Examples of the alkyl group which may have a halogen atom in the above formula include a trifluoromethyl group, a difluoromethyl group, a methyl group, a perfluoroethyl group, a 2,2,2-trifluoroethyl group, a 1,1,2,2-tetrafluoroethyl group, an ethyl group, a perfluoropropyl group, a 2,2,3,3,3-pentafluoropropyl group, a propyl group, a perfluorobutyl group, a 1,1,2,2,3,3,4,4-octafluorobutyl group, a butyl group, a perfluoropentyl group, a 2,2,3,3,4,4,5,5,5-nonafluoropentyl group, a pentyl group, a hexyl group, a perfluorohexyl group, a chloromethyl group, a bromomethyl group, and an iodomethyl group. The number of carbon atoms in the alkyl group is preferably 1 to 4, more preferably 1 to 3, and even more preferably 1 or 2. The alkyl group is preferably a methyl group or an ethyl group, and more preferably a methyl group. R a01 , R a4 and R a5 is preferably a hydrogen atom or a methyl group, and more preferably a methyl group. L a01 , L a1 and L a2 is preferably an oxygen atom or *-O-(CH2) k01 It is -CO-O- (wherein k01 is preferably an integer of any one of 1 to 4, more preferably 1), and more preferably an oxygen atom. R a02 , R a03 and R a04 The alkyl group, alicyclic hydrocarbon group, aromatic hydrocarbon group and combinations thereof in the formula (1) are R a1 , R a2 and R a3 Examples of the groups include the same groups as those listed in the above. R a6 and R a7 The alkyl group, alkenyl group, alicyclic hydrocarbon group, aromatic hydrocarbon group, and combinations thereof in the formula (1) include R a1 , R a2 and R a3 Examples of the groups include the same groups as those listed in the above. R a02 , Ra03 , and R a04 The alkyl group in the formula (I) is preferably an alkyl group having 1 to 6 carbon atoms, more preferably a methyl group or an ethyl group, and even more preferably a methyl group. R a6 and R a7 The alkyl group in the formula (I) is preferably an alkyl group having 1 to 6 carbon atoms, more preferably a methyl group, an ethyl group, an isopropyl group, or a t-butyl group, and even more preferably an ethyl group, an isopropyl group, or a t-butyl group. R a6 and R a7 The alkenyl group in is preferably an alkenyl group having 2 to 6 carbon atoms, and more preferably an ethenyl group, a propenyl group, an isopropenyl group, or a butenyl group. R a02 , R a03 , R a04 , R a6 and R a7 The alicyclic hydrocarbon group preferably has 5 to 12 carbon atoms, and more preferably 5 to 10 carbon atoms. R a02 , R a03 , R a04 , R a6 and R a7 The aromatic hydrocarbon group preferably has 6 to 12 carbon atoms, and more preferably 6 to 10 carbon atoms. In the group in which an alkyl group and an alicyclic hydrocarbon group are combined, the total number of carbon atoms in the combination of the alkyl group and the alicyclic hydrocarbon group is preferably 18 or less. In the group in which an alkyl group and an aromatic hydrocarbon group are combined, the total number of carbon atoms in the combination of the alkyl group and the aromatic hydrocarbon group is preferably 18 or less. R a02 and R a03 is preferably an alkyl group having 1 to 6 carbon atoms which may have a halogen atom or an aromatic hydrocarbon group having 6 to 12 carbon atoms which may have a halogen atom, and more preferably a methyl group, ethyl group, phenyl group or naphthyl group which may have a halogen atom. R a04is preferably an alkyl group having 1 to 6 carbon atoms which may have a halogen atom or an alicyclic hydrocarbon group having 5 to 12 carbon atoms which may have a halogen atom, and more preferably a methyl group, ethyl group, cyclohexyl group or adamantyl group which may have a halogen atom. R a6 and R a7 is preferably an alkyl group having 1 to 6 carbon atoms which may have a halogen atom, an alkenyl group having 2 to 6 carbon atoms which may have a halogen atom, or an aromatic hydrocarbon group having 6 to 12 carbon atoms which may have a halogen atom, more preferably a methyl group, ethyl group, isopropyl group, t-butyl group, ethenyl group, phenyl group or naphthyl group which may have a halogen atom, and even more preferably an ethyl group, isopropyl group, t-butyl group, ethenyl group or phenyl group which may have a halogen atom. m1 is preferably an integer of 0 to 3, and more preferably 0 or 1. n1 is preferably an integer of 0 to 3, and more preferably 0 or 1. n1' is preferably 0 or 1.

[0071] Examples of the structural unit (a1-0) include a structural unit represented by any one of formulas (a1-0-1) to (a1-0-24) and R a01 and structural units in which the methyl group corresponding to the formula (a1-0-1) is replaced with a hydrogen atom, a halogen atom, a haloalkyl group (an alkyl group having a halogen atom) or another alkyl group. Structural units represented by any of formulas (a1-0-1) to (a1-0-10), (a1-0-13), (a1-0-14), (a1-0-19) to (a1-0-21) are preferred. TIFF2025071809000056.tif120160

[0072] Examples of the structural unit (a1-1) include structural units derived from monomers described in JP 2010-204646 A. Among them, structural units represented by any one of formulas (a1-1-1) to (a1-1-7) and R in the structural unit (a1-1) are a4In the above formula (a1-1-1), a methyl group is replaced with a hydrogen atom, a halogen atom, a haloalkyl group or another alkyl group. In the above formula (a1-1-2), a methyl group is replaced with a hydrogen atom, a halogen atom, a haloalkyl group or another alkyl group. In the above formula (a1-1-3), a methyl group is replaced with a hydrogen atom, a halogen atom, a haloalkyl group or another alkyl group. In the above formula (a1-1-4), a structural unit is more preferred. TIFF2025071809000057.tif38168

[0073] The structural unit (a1-2) includes a structural unit represented by any one of formulas (a1-2-1) to (a1-2-20) and R a5 and structural units in which a methyl group corresponding to the formula (a1-2-2), (a1-2-5), (a1-2-6), and (a1-2-10) to (a1-2-20) are replaced with a hydrogen atom, a halogen atom, a haloalkyl group, or another alkyl group. TIFF2025071809000058.tif91163

[0074] When the resin (A) etc. contains the structural unit (a1-0) and / or the structural unit (a1-1) and / or the structural unit (a1-2), the total content of these units is 10 mol% or more, preferably 15 mol% or more, more preferably 20 mol% or more, even more preferably 25 mol% or more, even more preferably 30 mol% or more, even more preferably 40 mol% or more, and even more preferably 50 mol% or more, based on the total structural units of the resin (A) etc. Also, 95 mol% or less is mentioned, preferably 90 mol% or less, more preferably 85 mol% or less, even more preferably 70 mol% or less, and even more preferably 65 mol% or less. Specifically, 10 to 95 mol% is mentioned, preferably 15 to 90 mol%, more preferably 20 to 85 mol%, even more preferably 25 to 70 mol%, and even more preferably 30 to 70 mol%. When the resin (A) or the like contains the structural unit (a1-0), the content thereof is 5 mol% or more, preferably 10 mol% or more, more preferably 15 mol% or more, even more preferably 20 mol% or more, even more preferably 25 mol% or more, even more preferably 30 mol% or more, and even more preferably 35 mol% or more, based on the total structural units of the resin (A) or the like. Also, the content is 80 mol% or less, preferably 75 mol% or less, more preferably 70 mol% or less, even more preferably 65 mol% or less, and even more preferably 60 mol% or less. Specifically, the content is 5 to 80 mol%, preferably 5 to 75 mol%, and more preferably 10 to 70 mol%. When the resin (A) etc. contains the structural unit (a1-1) and / or the structural unit (a1-2), the total content of these units is 10 mol% or more, preferably 15 mol% or more, more preferably 20 mol% or more, even more preferably 25 mol% or more, even more preferably 30 mol% or more, even more preferably 40 mol% or more, and even more preferably 50 mol% or more, based on the total structural units of the resin (A) etc. Also, 95 mol% or less is included, preferably 90 mol% or less, more preferably 85 mol% or less, even more preferably 80 mol% or less, even more preferably 75 mol% or less, even more preferably 70 mol% or less, and even more preferably 65 mol% or less. Specifically, 10 to 90 mol% is included, preferably 15 to 85 mol%, more preferably 15 to 80 mol%, even more preferably 20 to 80 mol%, even more preferably 20 to 75 mol%, and even more preferably 20 to 70 mol%.

[0075] An example of the structural unit (a1) having a group (2) is a structural unit represented by formula (a1-4) (hereinafter, sometimes referred to as "structural unit (a1-4)"). TIFF2025071809000059.tif31119 [In formula (a1-4), all symbols have the same meaning as above.]

[0076] R a1 and R a17 Examples of the halogen atom and the alkyl group which may have a halogen atom in the formula (a1-0) to the formula (a1-2) include R a01 , R a4 and R a5 Examples of the above-mentioned examples are the same as those given above. R a1 is preferably a hydrogen atom or an alkyl group having 1 to 4 carbon atoms, more preferably a hydrogen atom, a methyl group or an ethyl group, and further preferably a hydrogen atom or a methyl group. R a17 Examples of the alkoxy group in include a methoxy group, an ethoxy group, a propoxy group, an isopropoxy group, a butoxy group, a sec-butoxy group, a tert-butoxy group, a pentyloxy group, and a hexyloxy group. The alkoxy group is preferably an alkoxy group having 1 to 4 carbon atoms, more preferably an alkoxy group having 1 to 3 carbon atoms, further preferably a methoxy group or an ethoxy group, and still further preferably a methoxy group. R a17 In the above, examples of the alkoxyalkyl group include a methoxymethyl group, an ethoxyethyl group, a propoxymethyl group, an isopropoxymethyl group, a butoxymethyl group, a sec-butoxymethyl group, and a tert-butoxymethyl group. The alkoxyalkyl group may be an alkoxyalkyl group having 2 to 8 carbon atoms, preferably an alkoxyalkyl group having 2 to 4 carbon atoms, more preferably a methoxymethyl group or an ethoxyethyl group, and further preferably a methoxymethyl group. R a17 In the above, examples of the alkoxyalkoxy group include a methoxymethoxy group, a methoxyethoxy group, an ethoxymethoxy group, an ethoxyethoxy group, a propoxymethoxy group, an isopropoxymethoxy group, a butoxymethoxy group, a sec-butoxymethoxy group, and a tert-butoxymethoxy group. The alkoxyalkoxy group is preferably an alkoxyalkoxy group having 2 to 8 carbon atoms, more preferably an alkoxyalkoxy group having 2 to 4 carbon atoms, and further preferably a methoxyethoxy group or an ethoxyethoxy group. R a17Examples of the alkylcarbonyl group in include an acetyl group, a propionyl group, a butyryl group, etc. The alkylcarbonyl group is preferably an alkylcarbonyl group having 2 to 4 carbon atoms, more preferably an alkylcarbonyl group having 2 to 3 carbon atoms, and further preferably an acetyl group. R a17 In the above formula, examples of the alkylcarbonyloxy group include an acetyloxy group, a propionyloxy group, and a butyryloxy group. The alkylcarbonyloxy group is preferably an alkylcarbonyloxy group having 2 to 4 carbon atoms, more preferably an alkylcarbonyloxy group having 2 to 3 carbon atoms, and further preferably an acetyloxy group. R a17 is preferably a halogen atom, a hydroxy group, a carboxy group, an alkyl group having 1 to 4 carbon atoms which may have a halogen atom, an alkoxy group having 1 to 4 carbon atoms, or an alkoxyalkoxy group having 2 to 8 carbon atoms, more preferably a fluorine atom, an iodine atom, a hydroxy group, a methyl group, a methoxy group, an ethoxy group, an ethoxyethoxy group, or an ethoxymethoxy group, and even more preferably a fluorine atom, an iodine atom, a hydroxy group, a methyl group, a methoxy group, or an ethoxyethoxy group.

[0077] A a11Examples of the alkanediyl group include straight-chain alkanediyl groups such as methylene, ethylene, propane-1,3-diyl, propane-1,2-diyl, butane-1,4-diyl, pentane-1,5-diyl, hexane-1,6-diyl, heptane-1,7-diyl, octane-1,8-diyl, nonane-1,9-diyl, decane-1,10-diyl, undecane-1,11-diyl, and dodecane-1,12-diyl groups. and branched alkanediyl groups such as butane-1,3-diyl, 2-methylpropane-1,3-diyl, 2-methylpropane-1,2-diyl, pentane-1,4-diyl, 2-methylbutane-1,4-diyl, heptane-1,6-diyl, octane-1,7-diyl, nonane-1,8-diyl, decane-1,9-diyl, and undecane-1,10-diyl. The number of carbon atoms in the alkanediyl group is preferably 1 to 10, more preferably 1 to 8, still more preferably 1 to 6, even more preferably 1 to 4, still more preferably 1 to 3, and even more preferably 1 or 2. R a18 Examples of the alkyl group include a methyl group, an ethyl group, an n-propyl group, an isopropyl group, an n-butyl group, and a tert-butyl group. A a11 The -CH2- in the alkanediyl group is -O-, -CO- or -NR a18 When the alkanediyl group is replaced by, the number of carbon atoms before the replacement is regarded as the number of carbon atoms of the alkanediyl group. A a11 The -CH2- in the alkanediyl group is -O-, -CO- or -NR a18 Examples of the group substituted for include a hydroxy group, a carboxy group, a carbonyl group, an oxy group, an amino group, an alkoxy group, an alkoxycarbonyl group, an alkylcarbonyl group, an alkylamino group, a peptide group, an alkanediyloxy group, an alkanediyloxycarbonyl group, an alkanediylcarbonyl group, an alkanediylcarbonyloxy group, an alkanediylsulfonyl group, an alkanediylthio group, an alkanediylamino group, etc. These substituted groups include the same as those exemplified in this specification, within the range permitted by the upper limit of the number of carbon atoms. The alkylamino group includes alkylamino groups having 1 to 11 carbon atoms, such as a methylamino group, an ethylamino group, a propylamino group, a butylamino group, a pentylamino group, a hexylamino group, an octylamino group, etc. The number of carbon atoms in the alkylamino group is preferably 1 to 8, more preferably 1 to 6, further preferably 1 to 4, and further more preferably 1 to 3. The alkanediylamino group includes an alkanediylamino group having 1 to 11 carbon atoms, such as a methyleneamino group, an ethyleneamino group, a propyleneamino group, etc. The number of carbon atoms in the alkanediylamino group is preferably 1 to 8, more preferably 1 to 6, further preferably 1 to 4, and further more preferably 1 to 3. For example, A a11 The -CH2- in the alkanediyl group is -O-, -CO- or -NR a18 Groups substituted with - include *-O-, *-CO-O-, *-O-CO-, *-CO-OA a12 -CO-O-, *-O-CO-A a12 -O-, *-OA a12 -CO-O-, *-CO-OA a12 -O-CO-, *-O-CO-A a12 -O-CO-, *-CO-NR a18 Among them, *-CO-O- and *-CO-OA a12 -CO-O-, *-OA a12 -CO-O-, *-CO-NR a18 - is preferred, where A a12 represents an alkanediyl group having 1 to 8 carbon atoms, and * represents R a1 A represents the bonding site with the carbon atom to which it is attached. a12 The alkanediyl group of A is as follows, within the upper limit of the carbon number. a11 Examples of the alkanediyl groups include those shown above. A a11 is a single bond, *-CO-O- or *-CO-OA a12-CO-O- is preferred, a single bond, *-CO-O- or *-CO-O-CH2-CO-O- is more preferred, and a single bond or *-CO-O- is even more preferred. na1 is preferably 1, 2, 3 or 4, more preferably 1, 2 or 3, and even more preferably 1 or 2. na11 is preferably 0, 1, 2 or 3, more preferably 0, 1 or 2, and further preferably 0 or 1. mc is preferably 0 or 1.

[0078] R a34 , R a35 and R a36 Examples of the hydrocarbon group in include an alkyl group, an alicyclic hydrocarbon group, an aromatic hydrocarbon group, and a group consisting of a combination thereof. Examples of the alkyl group include a methyl group, an ethyl group, a propyl group, a butyl group, a pentyl group, a hexyl group, a heptyl group, and an octyl group. The alicyclic hydrocarbon group may be either monocyclic or polycyclic. Examples of the monocyclic alicyclic hydrocarbon group include cycloalkyl groups such as cyclopentyl, cyclohexyl, cycloheptyl, and cyclooctyl. Examples of the polycyclic alicyclic hydrocarbon group include decahydronaphthyl, adamantyl, and norbornyl groups, as well as the following groups (* indicates a bonding site): TIFF2025071809000060.tif10151 Examples of the aromatic hydrocarbon group include aryl groups such as a phenyl group, a naphthyl group, an anthryl group, a biphenyl group, and a phenanthryl group. Examples of the combined group include a group in which the above-mentioned alkyl group and alicyclic hydrocarbon group are combined (e.g., alkylcycloalkyl groups or cycloalkylalkyl groups such as methylcyclohexyl group, dimethylcyclohexyl group, methylnorbornyl group, cyclohexylmethyl group, adamantylmethyl group, adamantyldimethyl group, and norbornylethyl group), aralkyl groups such as benzyl group, aromatic hydrocarbon groups having an alkyl group (p-methylphenyl group, p-tert-butylphenyl group, tolyl group, xylyl group, cumenyl group, mesityl group, 2,6-diethylphenyl group, 2-methyl-6-ethylphenyl group, etc.), aromatic hydrocarbon groups having an alicyclic hydrocarbon group (p-cyclohexylphenyl group, p-adamantylphenyl group, etc.), and aryl-cycloalkyl groups such as phenylcyclohexyl group. In particular, R a36 Examples of the alkyl group include an alkyl group having 1 to 18 carbon atoms, an alicyclic hydrocarbon group having 3 to 18 carbon atoms, an aromatic hydrocarbon group having 6 to 18 carbon atoms, or a group formed by combining these groups. R a35 and R a36 Examples of the divalent hydrocarbon group having 2 to 20 carbon atoms that is formed by bonding together with the -CO- to which they are bonded include the following groups. * represents a bonding site, and one of the groups is R a34 This is the binding site for TIFF2025071809000061.tif15105

[0079] R a34 is preferably a hydrogen atom. R a35 is preferably a hydrogen atom, an alkyl group having 1 to 12 carbon atoms, or an alicyclic hydrocarbon group having 3 to 12 carbon atoms, and more preferably a methyl group or an ethyl group. R a36 The hydrocarbon group in R is preferably an alkyl group having 1 to 18 carbon atoms, an alicyclic hydrocarbon group having 3 to 18 carbon atoms, an aromatic hydrocarbon group having 6 to 18 carbon atoms, or a group formed by combining these, and more preferably an alkyl group having 1 to 18 carbon atoms, an alicyclic hydrocarbon group having 3 to 18 carbon atoms, or an aralkyl group having 7 to 18 carbon atoms. a36The alkyl group and the alicyclic hydrocarbon group in R are preferably unsubstituted. a36 The aromatic hydrocarbon group in is preferably an aromatic ring having an aryloxy group having 6 to 10 carbon atoms.

[0080] -OC(R a34 )(R a35 )-OR a36 is eliminated on contact with an acid (e.g., p-toluenesulfonic acid) to form a hydroxy group or a carboxy group. -X a1 -OC(R a34 )(R a35 )-OR a36 In the case of a benzene ring, A a11 It is preferable that at least one of them is bonded to the o-position or the m-position, and more preferable that it is bonded to the p-position. In the case of a naphthalene ring, A a11 When the bonding position of A is the 1st position, it may be bonded to any of the 2nd to 8th positions. a11 When the bonding position of A is the 2-position, it may be bonded to any of the 1-position and the 3-8-positions. a11 When the bonding position of A is the 1st position, at least one of them is preferably bonded to the 3rd to 6th positions, and more preferably bonded to the 3rd or 4th position. a11 When the bonding position is the 2-position, it is preferably bonded to the 4- to 7-positions, and more preferably bonded to the 5- or 6-position.

[0081] Examples of the structural unit (a1-4) include structural units derived from monomers described in JP 2010-204646 A. Preferably, the structural units represented by formulas (a1-4-1) to (a1-4-42) and R in the structural unit (a1-4) are a1and more preferably, the structural units represented by formulae (a1-4-1) to (a1-4-5), (a1-4-10), (a1-4-13), (a1-4-14), (a1-4-19), and (a1-4-20), respectively. TIFF2025071809000062.tif155164

[0082] TIFF2025071809000063.tif75164 When the resin (A) or the like contains the structural unit (a1-4), the content thereof is 10 mol% or more, preferably 15 mol% or more, more preferably 20 mol% or more, even more preferably 25 mol% or more, even more preferably 30 mol% or more, even more preferably 40 mol% or more, and even more preferably 50 mol% or more, based on the total of all structural units of the resin (A) or the like. Also, 95 mol% or less is mentioned, preferably 90 mol% or less, more preferably 85 mol% or less, even more preferably 80 mol% or less, even more preferably 75 mol% or less, even more preferably 70 mol% or less, and even more preferably 65 mol% or less. Specifically, it is preferably 10 to 95 mol%, more preferably 15 to 90 mol%, even more preferably 20 to 85 mol%, even more preferably 20 to 70 mol%, and even more preferably 20 to 60 mol%.

[0083] An example of a structural unit derived from a (meth)acrylic monomer having the group (2) is a structural unit represented by formula (a1-5) (hereinafter, may be referred to as "structural unit (a1-5)"). TIFF2025071809000064.tif4558 [In formula (a1-5), all symbols have the same meaning as defined above.] R in formula (a1-5) a8 Examples of the halogen atom and the alkyl group which may have a halogen atom in the formula (a1-0) to the formula (a1-2) include R a01 , R a4and R a5 Examples of the above-mentioned examples are the same as those given above. In formula (a1-5), R a8 is preferably a hydrogen atom, a methyl group, or a trifluoromethyl group. L 51 is preferably an oxygen atom. L 52 and L 53 Of these, it is preferred that one is -O- and the other is -S-. It is preferable that s1 is 1. s1' is preferably an integer of 0 to 2. Z a1 is preferably a single bond or -CH2-CO-O-.

[0084] Examples of the structural unit (a1-5) include structural units derived from monomers described in JP 2010-61117 A. Among them, the structural units represented by formulae (a1-5-1) to (a1-5-4) are preferred, and the structural unit represented by formula (a1-5-1) or (a1-5-2) is more preferred. TIFF2025071809000065.tif33133

[0085] When the resin (A) or the like contains the structural unit (a1-5), the content thereof is 1 mol% or more, preferably 2 mol% or more, more preferably 3 mol% or more, even more preferably 5 mol% or more, even more preferably 10 mol% or more, even more preferably 20 mol% or more, and even more preferably 25 mol% or more, based on the total structural units of the resin (A) or the like. Also, the content is 80 mol% or less, preferably 70 mol% or less, more preferably 60 mol% or less, even more preferably 50 mol% or less, even more preferably 45 mol% or less, even more preferably 40 mol% or less, and even more preferably 30 mol% or less. Specifically, the content is preferably 1 to 50 mol%, more preferably 3 to 45 mol%, even more preferably 5 to 40 mol%, and even more preferably 5 to 30 mol%.

[0086] An example of the structural unit (a1) having a group (1) is a structural unit represented by formula (a1-6) (hereinafter, sometimes referred to as "structural unit (a1-6)"). TIFF2025071809000066.tif3481 [In formula (a1-6), all symbols have the same meaning as defined above.]

[0087] R in formula (a1-6) a61 Examples of the halogen atom and the alkyl group which may have a halogen atom in the formula (a1-0) to the formula (a1-2) include R a01 , R a4 and R a5 Examples of the above-mentioned examples are the same as those given above. R a61 is preferably a hydrogen atom, a methyl group, or a trifluoromethyl group. R a62 , R a63 , R a64 and R a65 Examples of the alkyl group in include a methyl group, an ethyl group, a propyl group, a butyl group, a pentyl group, a hexyl group, etc. The alkyl group is preferably an alkyl group having 1 to 4 carbon atoms, more preferably an alkyl group having 1 to 3 carbon atoms, and further preferably a methyl group or an ethyl group. R a62 , R a63 and R a64 The cyclic hydrocarbon group in the formula (I) includes an alicyclic hydrocarbon group and an aromatic hydrocarbon group. The alicyclic hydrocarbon group may be either monocyclic or polycyclic. Examples of the monocyclic alicyclic hydrocarbon group include a cyclopentyl group, a cyclohexyl group, a cycloheptyl group, and a cyclooctyl group. Examples of the polycyclic alicyclic hydrocarbon group include a decahydronaphthyl group, an adamantyl group, and a norbornyl group. The number of carbon atoms in the alicyclic hydrocarbon group is preferably 3 to 16, and more preferably 3 to 12. Examples of the aromatic hydrocarbon group include a phenylene group and a naphthylene group. Examples of the substituent that the cyclic hydrocarbon group may have include a halogen atom, a hydroxy group, an alkyl group having 1 to 6 carbon atoms, an alkoxy group having 1 to 6 carbon atoms, an alkoxyalkyl group having 2 to 12 carbon atoms, an alkoxyalkoxy group having 2 to 12 carbon atoms, an alkylcarbonyl group having 2 to 4 carbon atoms, an alkylcarbonyloxy group having 2 to 4 carbon atoms, an acryloyloxy group, or a methacryloyloxy group. R a62 and R a63 Examples of the ring formed by bonding with each other include an adamantane ring, a cyclopentane ring, and a cyclohexane ring. a62 and R a63 When they are bonded to each other to form a ring, -C(R a62 )(R a63 )(R a64 ) includes the following groups. * represents a bonding site with an oxygen atom. The number of carbon atoms in the ring is preferably 3 to 16, and more preferably 3 to 12. TIFF2025071809000067.tif32110

[0088] L a61 and L a62 Examples of the alkanediyl group having 1 to 4 carbon atoms include a methylene group, an ethylene group, a propane-1,3-diyl group, a propane-1,2-diyl group, a butane-1,4-diyl group, a butane-1,3-diyl group, a 2-methylpropane-1,3-diyl group, and a 2-methylpropane-1,2-diyl group. L a61 and L a62 is preferably each independently a methylene group or an ethylene group. X a61 is preferably a single bond or -CO-O-*, and more preferably a single bond. X a62 is preferably a single bond or *-OL a61 -, and more preferably a single bond.

[0089] Examples of the aromatic hydrocarbon group having 6 to 20 carbon atoms for Ar include a phenylene group, a 1-naphthylene group, a 2-naphthylene group, a 1-anthrylene group, a 9-anthrylene group, a biphenylene group, a 1-phenanthrylene group, and a 2-phenanthrylene group. Examples of the substituent that the aromatic hydrocarbon group may have include a halogen atom, a hydroxy group, an alkyl group having 1 to 6 carbon atoms, an alkoxy group having 1 to 6 carbon atoms, an alkoxyalkyl group having 2 to 12 carbon atoms, an alkoxyalkoxy group having 2 to 12 carbon atoms, an alkylcarbonyl group having 2 to 4 carbon atoms, an alkylcarbonyloxy group having 2 to 4 carbon atoms, an acryloyloxy group, or a methacryloyloxy group.

[0090] Examples of the halogen atom include a fluorine atom, an iodine atom, a chlorine atom, and a bromine atom. Examples of the alkyl group include a methyl group, an ethyl group, a propyl group, an isopropyl group, a butyl group, a sec-butyl group, a tert-butyl group, a pentyl group, and a hexyl group. The alkyl group is preferably an alkyl group having 1 to 4 carbon atoms, more preferably a methyl group or an ethyl group, and further preferably a methyl group. Examples of the alkoxy group include a methoxy group, an ethoxy group, a propoxy group, an isopropoxy group, a butoxy group, a sec-butoxy group, a tert-butoxy group, a pentyloxy group, and a hexyloxy group. The alkoxy group is preferably an alkoxy group having 1 to 4 carbon atoms, more preferably a methoxy group or an ethoxy group, and further preferably a methoxy group. Examples of the alkoxyalkyl group include a methoxymethyl group, an ethoxyethyl group, a propoxymethyl group, an isopropoxymethyl group, a butoxymethyl group, a sec-butoxymethyl group, and a tert-butoxymethyl group. The alkoxyalkyl group is preferably an alkoxyalkyl group having 2 to 8 carbon atoms, more preferably a methoxymethyl group or an ethoxyethyl group, and further preferably a methoxymethyl group. Examples of the alkoxyalkoxy group include a methoxymethoxy group, a methoxyethoxy group, an ethoxymethoxy group, an ethoxyethoxy group, a propoxymethoxy group, an isopropoxymethoxy group, a butoxymethoxy group, a sec-butoxymethoxy group, and a tert-butoxymethoxy group. The alkoxyalkoxy group is preferably an alkoxyalkoxy group having 2 to 8 carbon atoms, and more preferably a methoxyethoxy group or an ethoxyethoxy group. Examples of the alkylcarbonyl group include an acetyl group, a propionyl group, a butyryl group, etc. The alkylcarbonyl group is preferably an alkylcarbonyl group having 2 to 3 carbon atoms, and more preferably an acetyl group. Examples of the alkylcarbonyloxy group include an acetyloxy group, a propionyloxy group, and a butyryloxy group. The alkylcarbonyloxy group is preferably an alkylcarbonyloxy group having 2 to 3 carbon atoms, and more preferably an acetyloxy group. The substituent is preferably a halogen atom, a hydroxy group, an alkyl group having 1 to 4 carbon atoms, an alkoxy group having 1 to 4 carbon atoms, or an alkoxyalkoxy group having 2 to 8 carbon atoms, more preferably a fluorine atom, an iodine atom, a hydroxy group, a methyl group, a methoxy group, an ethoxy group, an ethoxyethoxy group, or an ethoxymethoxy group, and even more preferably a fluorine atom, an iodine atom, a hydroxy group, a methyl group, a methoxy group, or an ethoxyethoxy group. Ar is preferably a phenylene group which may have a substituent, and more preferably a phenylene group which may have a hydroxy group.

[0091] Examples of the structural unit (a1-6) include structural units represented by formulae (a1-6-1) to (a1-6-44), preferably structural units represented by formulae (a1-6-1) to (a1-6-9), more preferably structural units represented by formulae (a1-6-1), (a1-6-2), (a1-6-4), (a1-6-5), (a1-6-7) or (a1-6-8), and even more preferably structural units represented by formulae (a1-6-1) or (a1-6-2). a61The structural unit in which the hydrogen atom corresponding to is replaced by a methyl group, etc., and the structural unit in which R a61 The structural unit (a1-6) also includes a structural unit in which the methyl group corresponding to the following formula is replaced with a hydrogen atom or the like. TIFF2025071809000068.tif227165

[0092] When the resin (A) or the like contains the structural unit (a1-6), the content thereof is 3 mol% or more, preferably 5 mol% or more, more preferably 7 mol% or more, even more preferably 10 mol% or more, even more preferably 20 mol% or more, even more preferably 30 mol% or more, and even more preferably 40 mol% or more, based on the total structural units of the resin (A) or the like. Also, the content is 80 mol% or less, preferably 75 mol% or less, more preferably 70 mol% or less, and even more preferably 65 mol% or less. Specifically, the content is preferably 3 to 80 mol%, more preferably 5 to 75 mol%, even more preferably 7 to 70 mol%, even more preferably 7 to 65 mol%, and particularly preferably 10 to 65 mol%.

[0093] Further, examples of the structural unit (a1) include the following structural units. TIFF2025071809000069.tif33167

[0094] When the resin (A) etc. contains the structural units represented by the formulas (a1-7-1) to (a1-7-7), the content thereof is 10 mol% or more, preferably 15 mol% or more, more preferably 20 mol% or more, even more preferably 25 mol% or more, even more preferably 30 mol% or more, even more preferably 40 mol% or more, and even more preferably 50 mol% or more, based on the total structural units of the resin (A) etc. Also, the content is 95 mol% or less, preferably 90 mol% or less, more preferably 85 mol% or less, even more preferably 80 mol% or less, even more preferably 75 mol% or less, even more preferably 70 mol% or less, and even more preferably 60 mol% or less. Specifically, 10 to 95 mol% is preferred, 15 to 90 mol% is more preferred, 20 to 85 mol% is even more preferred, 20 to 70 mol% is even more preferred, and 20 to 60 mol% is particularly preferred.

[0095] Further, examples of the structural unit (a1) include the following structural units. TIFF2025071809000070.tif51120 When the resin (A) etc. contains structural units represented by formulas (a1-8-1) to (a1-8-3), the content thereof is 10 mol% or more, preferably 15 mol% or more, more preferably 20 mol% or more, even more preferably 25 mol% or more, even more preferably 30 mol% or more, even more preferably 40 mol% or more, and even more preferably 50 mol% or more, based on the total structural units of the resin (A) etc. Also, 95 mol% or less is mentioned, preferably 90 mol% or less, more preferably 85 mol% or less, even more preferably 80 mol% or less, even more preferably 75 mol% or less, even more preferably 70 mol% or less, and even more preferably 60 mol% or less. Specifically, it is preferably 10 to 60 mol %, more preferably 15 to 55 mol %, even more preferably 20 to 50 mol %, even more preferably 20 to 45 mol %, and particularly preferably 20 to 40 mol %.

[0096] Structural unit(s) The structural unit (s) is derived from a monomer having no acid labile group (hereinafter, may be referred to as "monomer (s)"). As the monomer from which the structural unit (s) is derived, a monomer having no acid labile group known in the resist field can be used. The structural unit (s) preferably has a hydroxy group, a carboxy group, or a lactone ring. If a resin containing a structural unit having a hydroxy group or a carboxy group and no acid labile group (hereinafter sometimes referred to as "structural unit (a2)") and / or a structural unit having a lactone ring and no acid labile group (hereinafter sometimes referred to as "structural unit (a3)") is used in the resist composition of the present invention, the resolution of the resist pattern and adhesion to the substrate can be improved. In addition to the above-mentioned structural units, the structural unit (s) may also include a structural unit having a halogen atom (hereinafter sometimes referred to as "structural unit (a4)"), a structural unit having a non-leaving hydrocarbon group (hereinafter sometimes referred to as "structural unit (a5)"), a structural unit having a sultone structure (hereinafter sometimes referred to as "structural unit (a6)"), or a structural unit that decomposes upon exposure to generate an acid (hereinafter sometimes referred to as "structural unit (a7)").

[0097] <Structural unit (a2)> The structural unit (a2) is a structural unit represented by formula (a2) and has an alcoholic hydroxy group, a phenolic hydroxy group, or a carboxy group. TIFF2025071809000071.tif4095[In formula (a2), R a2 represents a hydrogen atom, a halogen atom or an alkyl group having 1 to 6 carbon atoms which may have a halogen atom. A a21 represents a single bond or an alkanediyl group having 1 to 12 carbon atoms, and -CH2- contained in the alkanediyl group is -O-, -CO- or -NR a28 - may be replaced. R a28 represents a hydrogen atom or an alkyl group having 1 to 6 carbon atoms. L a21represents a single bond or a hydrocarbon group having 1 to 28 carbon atoms, the hydrocarbon group optionally having a substituent, and -CH2- contained in the hydrocarbon group may be replaced by -O-, -CO-, -S- or -SO2-. L a22 represents a single bond or a chain hydrocarbon group having 1 to 12 carbon atoms which may have a fluorine atom, and -CH2- contained in the chain hydrocarbon group may be replaced by -O- or -CO-. na2 represents an integer of 1 to 5. When na2 is 2 or more, a plurality of L a22 may be the same or different. R a2 Examples of the halogen atom in include a fluorine atom, an iodine atom, a chlorine atom, and a bromine atom. R a2 Examples of the alkyl group having 1 to 6 carbon atoms, which may have a halogen atom, include a trifluoromethyl group, a difluoromethyl group, a methyl group, a perfluoroethyl group, a 2,2,2-trifluoroethyl group, a 1,1,2,2-tetrafluoroethyl group, an ethyl group, a perfluoropropyl group, a 2,2,3,3,3-pentafluoropropyl group, a propyl group, a perfluorobutyl group, a 1,1,2,2,3,3,4,4-octafluorobutyl group, a butyl group, a perfluoropentyl group, a 2,2,3,3,4,4,5,5,5-nonafluoropentyl group, a pentyl group, a hexyl group, a perfluorohexyl group, a chloromethyl group, a bromomethyl group, and an iodomethyl group. The number of carbon atoms in the alkyl group is preferably 1 to 4, more preferably 1 to 3, and even more preferably 1 or 2. R a2 is preferably a hydrogen atom or an alkyl group having 1 to 4 carbon atoms, more preferably a hydrogen atom, a methyl group or an ethyl group, and further preferably a hydrogen atom or a methyl group.

[0098] A a21Examples of the alkanediyl group include straight-chain alkanediyl groups such as methylene, ethylene, propane-1,3-diyl, propane-1,2-diyl, butane-1,4-diyl, pentane-1,5-diyl, hexane-1,6-diyl, heptane-1,7-diyl, octane-1,8-diyl, nonane-1,9-diyl, decane-1,10-diyl, undecane-1,11-diyl, and dodecane-1,12-diyl groups. and branched alkanediyl groups such as butane-1,3-diyl, 2-methylpropane-1,3-diyl, 2-methylpropane-1,2-diyl, pentane-1,4-diyl, 2-methylbutane-1,4-diyl, heptane-1,6-diyl, octane-1,7-diyl, nonane-1,8-diyl, decane-1,9-diyl, and undecane-1,10-diyl. The number of carbon atoms in the alkanediyl group is preferably 1 to 10, more preferably 1 to 8, still more preferably 1 to 6, even more preferably 1 to 4, still more preferably 1 to 3, and even more preferably 1 or 2. R a28 Examples of the alkyl group include a methyl group, an ethyl group, an n-propyl group, an isopropyl group, an n-butyl group, and a tert-butyl group. A a21 The -CH2- in the alkanediyl group is -O-, -CO- or -NR a28 When the alkanediyl group is replaced by, the number of carbon atoms before the replacement is regarded as the number of carbon atoms of the alkanediyl group. A a21 The -CH2- in the alkanediyl group is -O-, -CO- or -NR a28 Examples of the group substituted for - include a hydroxy group, a carboxy group, a carbonyl group, an oxy group, an amino group, an alkoxy group, an alkoxycarbonyl group, an alkylcarbonyl group, an alkylamino group, a peptide group, an alkanediyloxy group, an alkanediyloxycarbonyl group, an alkanediylcarbonyl group, an alkanediylcarbonyloxy group, an alkanediylsulfonyl group, an alkanediylthio group, an alkanediylamino group, etc. These substituted groups include the same groups exemplified in this specification, within the range permitted by the upper limit of the number of carbon atoms. Among them, A a21 The -CH2- in the alkanediyl group is -O-, -CO- or -NR a28 Groups substituted with - include *-O-, *-CO-O-, *-O-CO-, *-CO-OA a22 -CO-O-, *-O-CO-A a22 -O-, *-OA a22 -CO-O-, *-CO-OA a22 -O-CO-, *-O-CO-A a22 -O-CO-, *-CO-NR a28 Among them, *-CO-O- and *-CO-OA a22 -CO-O-, *-OA a22 -CO-O-, *-CO-NR a28 - is preferred, where A a22 represents an alkanediyl group having 1 to 8 carbon atoms, and * represents R a2 A represents the bonding site with the carbon atom to which it is attached. a22 The alkanediyl group of A is as follows, within the upper limit of the carbon number. a21 Examples of the alkanediyl groups include those shown above. A a21 is a single bond, *-CO-O- or *-CO-OA a22 -CO-O- is preferred, a single bond, *-CO-O- or *-CO-O-CH2-CO-O- is more preferred, and a single bond or *-CO-O- is even more preferred.

[0099] L a21 The hydrocarbon group in is a (na2+1)-valent hydrocarbon group, and examples of such cyclic hydrocarbon groups include linear or branched chain hydrocarbon groups, monocyclic or polycyclic (including spiro rings, fused rings or bridged rings) alicyclic hydrocarbon groups, and aromatic hydrocarbon groups, and may be groups formed by combining two or more of these groups (for example, a hydrocarbon group formed from an alicyclic hydrocarbon group or an aromatic hydrocarbon group and a chain hydrocarbon group). L a21Examples of the chain hydrocarbon group include divalent to hexavalent chain hydrocarbon groups such as an alkanediyl group, an alkanetriyl group, an alkanetetrayl group, an alkanepentyl group, and an alkanehexyl group. Examples of the alkanediyl group include A a21 Examples of the alkanediyl groups include those shown above. Examples of the alkanetriyl group include a methanetriyl group, an ethanetriyl group, a propanetriyl group, a butanetriyl group, a pentanetriyl group, a hexanetriyl group, a heptanetriyl group, an octanetriyl group, a nonanetriyl group, a decanetriyl group, an undecanetriyl group, a dodecanetriyl group, a tridecanetriyl group, a tetradecanetriyl group, a pentadecanetriyl group, a hexadecanetriyl group, and a heptadecanetriyl group. Examples of the alkanetetrayl group include a methanetetrayl group, an ethanetetrayl group, a propanetetrayl group, a butanetetrayl group, a pentanetetrayl group, a hexanetetrayl group, a heptanetetrayl group, an octanetetrayl group, a nonanetetrayl group, a decanetetrayl group, an undecanetetrayl group, a dodecanetetrayl group, a tridecanetetrayl group, a tetradecanetetrayl group, a pentadecanetetrayl group, a hexadecanetetrayl group, and a heptadecanetetrayl group. Examples of the alkanol groups include a methane pentaylene group, an ethane pentaylene group, a propane pentaylene group, a butane pentaylene group, a pentane pentaylene group, and a hexane pentaylene group. Further examples include groups in which one or more hydrogen atoms of the above groups are replaced with bonding sites. The number of carbon atoms in the chain hydrocarbon group is preferably 1 to 18, more preferably 1 to 12, even more preferably 1 to 10, still more preferably 1 to 9, even more preferably 1 to 8, even more preferably 1 to 6, even more preferably 1 to 5, and particularly preferably 1 to 4. L a21 Examples of the monocyclic and polycyclic alicyclic hydrocarbon groups in the formula (I) include the following alicyclic hydrocarbon groups: The binding site may be any position. TIFF2025071809000072.tif46168 For example, divalent to hexavalent alicyclic hydrocarbon groups such as a cycloalkanediyl group, a cycloalkanetriyl group, a cycloalkanetetrayl group, a cycloalkanepentyl group, and a cycloalkanehexyl group are exemplified. Specifically, monocyclic alicyclic hydrocarbon groups such as cyclobutane-1,3-diyl group, cyclopentane-1,3-diyl group, cyclohexane-1,4-diyl group, cyclooctane-1,5-diyl group, cyclopropanetriyl group, cyclobutanetriyl group, cyclopentanetriyl group, cyclohexanetriyl group, cycloheptanetriyl group, cyclooctanetriyl group, cyclodecanetriyl group, cyclopropanetetrayl group, cyclobutanetetrayl group, cyclopentanetetrayl group, cyclohexanetetrayl group, cycloheptanetetrayl group, cyclooctanetetrayl group, and cyclodecanetetrayl group; Examples of polycyclic alicyclic hydrocarbon groups include norbornane-1,4-diyl group, norbornane-2,5-diyl group, adamantane-1,5-diyl group, adamantane-2,6-diyl group, decahydronaphthalenediyl group, bicyclo[3.3.0]octanediyl group, norbornanetriyl group, adamantanetriyl group, decahydronaphthalenetriyl group, bicyclo[3.3.0]octanetriyl group, norbornanetetrayl group, adamantanetetrayl group, decahydronaphthalenetetrayl group, and bicyclo[3.3.0]octanetetrayl group. Further examples include groups in which one or more hydrogen atoms of the above groups are replaced with bonding sites. The alicyclic hydrocarbon group has preferably 3 to 20 carbon atoms, more preferably 3 to 18, even more preferably 3 to 16, still more preferably 3 to 12, still more preferably 6 to 12, and particularly preferably 6 to 10. L a21 Examples of the aromatic hydrocarbon group in include divalent to hexavalent aromatic hydrocarbon groups such as an arylene group, an arenetriyl group, an arenettetrayl group, an arenetyl group, and an arenethexyl group. Specific examples thereof include a phenylene group, a naphthylene group, an anthrylene group, a biphenylene group, a phenanthrylene group, a benzenetriyl group, a naphthalenetriyl group, an anthracenetriyl group, a biphenylenetriyl group, a phenanthrenetriyl group, a benzenetetrayl group, a naphthalenetetrayl group, an anthracenetetrayl group, a biphenylenetetrayl group, and a phenanthrenetetrayl group. Further examples include groups in which one or more hydrogen atoms of the above groups are replaced with bonding sites. The aromatic hydrocarbon group preferably has 6-20 carbon atoms, more preferably 6-18 carbon atoms, further preferably 6-14 carbon atoms, even further preferably 6-12 carbon atoms, and even further preferably 6-10 carbon atoms. Examples of groups that combine two or more of these groups include a group that combines an alicyclic hydrocarbon group with a chain hydrocarbon group, a group that combines an aromatic hydrocarbon group with a chain hydrocarbon group, a group that combines an alicyclic hydrocarbon group with an aromatic hydrocarbon group, and a group that combines an alicyclic hydrocarbon group with a chain hydrocarbon group and an aromatic hydrocarbon group. In the combination, two or more of each of the alicyclic hydrocarbon group, aromatic hydrocarbon group, and chain hydrocarbon group may be combined. In addition, when any of the groups is A a21 and L a22 may be bound to Examples of the group in which -CH2- in the hydrocarbon group is replaced with -O-, -S-, -SO2- or -CO- include a hydroxy group, a carboxy group, a thiol group, an alkoxy group, an alkylthio group, an alkoxycarbonyl group, an alkylsulfonyl group, an alkylcarbonyl group, an alkylcarbonyloxy group, an alkoxycarbonyloxy group, an oxy group, a carbonyl group, a thio group, a sulfonyl group, an alkanediyloxy group, an alkanediyloxycarbonyl group, an alkanediylcarbonyl group, an alkanediylcarbonyloxy group, an alkanediylsulfonyl group, an alkanediylthio group, a cycloalkoxy group, a cycloalkylalkoxy group, an aromatic hydrocarbon group-carbonyloxy group, an aromatic hydrocarbon group-carbonyl group, an aromatic hydrocarbon group-oxy group, and a group in which two or more of these groups are combined. Examples of these replaced groups include groups in which one or more hydrogen atoms of these groups are replaced with a bonding site, within the range permitted by the upper limit of the carbon number.

[0100] Furthermore, examples of groups in which -CH2- in an alicyclic hydrocarbon group is replaced by -O-, -S-, -CO- or -SO2- include the same groups as exemplified in this specification, within the upper limit of the number of carbon atoms permitted. Examples of the combined groups in which --CH2-- is replaced by --O--, --S--, --CO-- or --SO2-- include the following groups: The bonding site may be any position. TIFF2025071809000073.tif27164L a21 The hydrocarbon group in may have one or more substituents, such as a halogen atom, a haloalkyl group having 1 to 12 carbon atoms, an alkyl group having 1 to 16 carbon atoms (wherein -CH2- contained in the alkyl group may be replaced by -O- or -CO-), an acryloyloxy group, or a methacryloyloxy group. Examples of the halogen atom include a fluorine atom, a chlorine atom, a bromine atom, and an iodine atom. L a21The hydrocarbon group in the formula (I) can have a halogen atom as a substituent, and thus can have a substituent such as a haloalkyl group. Examples of the haloalkyl group include a fluorinated alkyl group, a chlorinated alkyl group, a brominated alkyl group, and an iodinated alkyl group, and examples thereof include a chloromethyl group, a bromomethyl group, an iodomethyl group, a fluoromethyl group, a difluoromethyl group, a trifluoromethyl group, a perfluoroethyl group, a perfluoropropyl group, and a perfluorobutyl group. The number of carbon atoms in the haloalkyl group is preferably 1 to 8, more preferably 1 to 6, even more preferably 1 to 4, and even more preferably 1 to 3. L a21 The hydrocarbon group of L a21 can substantially have a substituent such as an alkyl group. Examples of the alkyl group include a methyl group, an ethyl group, an n-propyl group, an isopropyl group, an n-butyl group, a sec-butyl group, a tert-butyl group, a pentyl group, a hexyl group, a heptyl group, a 2-ethylhexyl group, an octyl group, a nonyl group, a decyl group, an undecyl group, and a dodecyl group. The number of carbon atoms in the alkyl group is preferably 1 to 12, more preferably 1 to 10, still more preferably 1 to 8, still more preferably 1 to 6, still more preferably 1 to 4, and still more preferably 1 to 3. L a21 L is a group in which -CH2- in the hydrocarbon group is replaced with -O- or -CO-, etc. a21can substantially have a substituent such as a hydroxy group, a carboxy group, an alkoxy group, a thiol group, a sulfonyl group, an alkoxycarbonyl group, an alkylcarbonyl group, an alkylcarbonyloxy group, an alkoxyalkyl group, an alkoxyalkoxy group, an acryloyloxy group, or a methacryloyloxy group. The number of carbon atoms in the alkoxy group is preferably 1 to 12, more preferably 1 to 6, even more preferably 1 to 4, and even more preferably 1 to 3. The number of carbon atoms in the alkoxycarbonyl group, the alkylcarbonyl group, or the alkylcarbonyloxy group is preferably 2 to 12, more preferably 2 to 6, even more preferably 2 to 4, and even more preferably 2 to 3. The number of carbon atoms in the alkoxyalkyl group or the alkoxyalkoxy group is preferably 2 to 12, more preferably 2 to 8, even more preferably 2 to 6, and even more preferably 2 to 4. The above groups also include the same groups as those exemplified in this specification. L a21 The substituents which the hydrocarbon group in the formula (I) may have are preferably a halogen atom, a haloalkyl group having 1 to 8 carbon atoms, or an alkyl group having 1 to 12 carbon atoms (-CH2- contained in the alkyl group may be replaced with -O- or -CO-), more preferably a halogen atom, a haloalkyl group having 1 to 6 carbon atoms, or an alkyl group having 1 to 10 carbon atoms (-CH2- contained in the alkyl group may be replaced with -O- or -CO-), still more preferably a halogen atom, a haloalkyl group having 1 to 4 carbon atoms, an alkyl group having 1 to 4 carbon atoms, a hydroxy group, an alkoxy group having 1 to 4 carbon atoms, or an alkoxyalkoxy group having 2 to 8 carbon atoms, still more preferably a fluorine atom, an iodine atom, a trifluoromethyl group, a methyl group, a hydroxy group, a methoxy group, an ethoxy group, an ethoxyethoxy group, or an ethoxymethoxy group, and still more preferably a fluorine atom, an iodine atom, a trifluoromethyl group, a methyl group, a hydroxy group, a methoxy group, or an ethoxyethoxy group. Also, L a21 In the case where the alkanediyl group is replaced by -O- or -CO-, for example, *-L a23 -X a21 -(La23 represents an alkanediyl group having 1 to 8 carbon atoms; X a21 represents -O-, -O-CO-, -CO-O-, or -O-CO-O-, and * represents A a21 It is also preferred that the bond is L a21 is preferably a single bond, a chain hydrocarbon group having 1 to 12 carbon atoms which may have a substituent (however, -CH2- contained in the chain hydrocarbon group may be replaced with -O- or -CO-), a cyclic hydrocarbon group having 3 to 20 carbon atoms which may have a substituent (however, -CH2- contained in the cyclic hydrocarbon group may be replaced with -O-, -S-, -CO- or -SO2-), or a group formed by combining a chain hydrocarbon group having 1 to 8 carbon atoms which may have a substituent and a cyclic hydrocarbon group having 3 to 20 carbon atoms which may have a substituent (however, -CH2- contained in the chain hydrocarbon group may be replaced with -O- or -CO- and -CH2- contained in the cyclic hydrocarbon group may be replaced with -O-, -S-, -SO2- or -CO-). and more preferably an optionally substituted chain hydrocarbon group having 1 to 10 carbon atoms (provided that -CH2- contained in the chain hydrocarbon group may be replaced with -O- or -CO-), an optionally substituted cyclic hydrocarbon group having 3 to 18 carbon atoms (provided that -CH2- contained in the cyclic hydrocarbon group may be replaced with -O-, -S-, -CO- or -SO2-), or a group formed by combining an optionally substituted chain hydrocarbon group having 1 to 6 carbon atoms and an optionally substituted cyclic hydrocarbon group having 3 to 18 carbon atoms (provided that -CH2- contained in the chain hydrocarbon group may be replaced with -O- or -CO- and -CH2- contained in the cyclic hydrocarbon group may be replaced with -O-, -S-, -SO2- or -CO-).

[0101] L a22Examples of the chain hydrocarbon group having 1 to 12 carbon atoms include linear alkanediyl groups such as methylene group, ethylene group, propane-1,3-diyl group, propane-1,2-diyl group, butane-1,4-diyl group, pentane-1,5-diyl group, hexane-1,6-diyl group, heptane-1,7-diyl group, octane-1,8-diyl group, nonane-1,9-diyl group, decane-1,10-diyl group, undecane-1,11-diyl group, and dodecane-1,12-diyl group. Examples of branched alkanediyl groups include ethane-1,1-diyl, propane-1,1-diyl, propane-1,2-diyl, propane-2,2-diyl, 1-methylpropane-1,3-diyl, 2-methylpropane-1,3-diyl, 2-methylpropane-1,2-diyl, 1-dimethylpropane-1,3-diyl, pentane-2,4-diyl, pentane-1,4-diyl, and 2-methylbutane-1,4-diyl groups. The number of carbon atoms in the chain hydrocarbon group is preferably 1 to 10, more preferably 1 to 8, even more preferably 1 to 6, and even more preferably 1 to 4. L a22 may have one fluorine atom or two or more fluorine atoms. L a22 The -CH2- in the chain hydrocarbon group may be replaced by -O- or -CO-, and these replaced groups may be, within the range permitted by the upper limit of the carbon number, a21 Examples of the above-mentioned examples are the same as those given above. na2 is preferably an integer of 1 to 4, and more preferably an integer of 1 to 3. L a21 In the case where R is a single bond or a chain hydrocarbon group, examples of the structural unit (a2) include the following structural units. a2 A structural unit in which a methyl group corresponding to the following formula is replaced with a hydrogen atom or the like is also a suitable structural unit of the structural unit (a2), similar to the structural unit shown below. TIFF2025071809000074.tif67168

[0102] When a resist pattern is produced from the resist composition of the present invention, in the case where a high energy ray such as a KrF excimer laser (248 nm), an electron beam, or EUV (extreme ultraviolet light) is used as an exposure light source, the structural unit (a2) having a phenolic hydroxyl group is preferred, and the structural unit (a2-A) described below is more preferred. In addition, in the case where an ArF excimer laser (193 nm) or the like is used, the structural unit (a2) having an alcoholic hydroxyl group is preferred, and the structural unit (a2-C) described below is more preferred. The structural unit (a2) may contain one type alone or two or more types.

[0103] In the structural unit (a2), L a21 is a cyclic hydrocarbon group, and an example of a structural unit having a phenolic hydroxy group or a carboxy group is a structural unit represented by formula (a2-A) (hereinafter sometimes referred to as "structural unit (a2-A)"). TIFF2025071809000075.tif30128 [In formula (a2-A), all symbols have the same meaning as above.]

[0104] R a2 and A a21 The groups include the same groups as those exemplified in formula (a2). R a27 Examples of the halogen atom include a fluorine atom, a chlorine atom, an iodine atom, and a bromine atom. R a27Examples of the alkyl group having 1 to 6 carbon atoms, which may have a halogen atom, include a trifluoromethyl group, a difluoromethyl group, a methyl group, a perfluoroethyl group, a 2,2,2-trifluoroethyl group, a 1,1,2,2-tetrafluoroethyl group, an ethyl group, a perfluoropropyl group, a 2,2,3,3,3-pentafluoropropyl group, a propyl group, a perfluorobutyl group, a 1,1,2,2,3,3,4,4-octafluorobutyl group, a butyl group, a perfluoropentyl group, a 2,2,3,3,4,4,5,5,5-nonafluoropentyl group, a pentyl group, a hexyl group, a perfluorohexyl group, a chloromethyl group, a bromomethyl group, and an iodomethyl group. The alkyl group is preferably an alkyl group having 1 to 4 carbon atoms, more preferably an alkyl group having 1 to 3 carbon atoms, further preferably a methyl group or an ethyl group, and even more preferably a methyl group. R a27 Examples of the alkoxy group include a methoxy group, an ethoxy group, a propoxy group, an isopropoxy group, a butoxy group, a sec-butoxy group, and a tert-butoxy group. The alkoxy group is preferably an alkoxy group having 1 to 4 carbon atoms, more preferably an alkoxy group having 1 to 3 carbon atoms, further preferably a methoxy group or an ethoxy group, and even more preferably a methoxy group. R a27 Examples of the alkoxyalkyl group include a methoxymethyl group, an ethoxyethyl group, a propoxymethyl group, an isopropoxymethyl group, a butoxymethyl group, a sec-butoxymethyl group, and a tert-butoxymethyl group. The alkoxyalkyl group is preferably an alkoxyalkyl group having 2 to 8 carbon atoms, more preferably a methoxymethyl group or an ethoxyethyl group, and further preferably a methoxymethyl group. R a27 Examples of the alkoxyalkoxy group include a methoxymethoxy group, a methoxyethoxy group, an ethoxymethoxy group, an ethoxyethoxy group, a propoxymethoxy group, an isopropoxymethoxy group, a butoxymethoxy group, a sec-butoxymethoxy group, and a tert-butoxymethoxy group. The alkoxyalkoxy group is preferably an alkoxyalkoxy group having 2 to 8 carbon atoms, and more preferably a methoxyethoxy group or an ethoxyethoxy group. R a27 Examples of the alkylcarbonyl group include an acetyl group, a propionyl group, a butyryl group, etc. The alkylcarbonyl group is preferably an alkylcarbonyl group having 2 to 3 carbon atoms, and more preferably an acetyl group. R a27 The alkylcarbonyloxy group includes an acetyloxy group, a propionyloxy group, and a butyryloxy group. The alkylcarbonyloxy group is preferably an alkylcarbonyloxy group having 2 to 3 carbon atoms, and more preferably an acetyloxy group. R a27 is preferably a halogen atom, a hydroxy group, a carboxy group, an alkyl group having 1 to 4 carbon atoms which may have a halogen atom, an alkoxy group having 1 to 4 carbon atoms, or an alkoxyalkoxy group having 2 to 8 carbon atoms, more preferably a fluorine atom, an iodine atom, a hydroxy group, a methyl group, a methoxy group, an ethoxy group, an ethoxyethoxy group, or an ethoxymethoxy group, and even more preferably a fluorine atom, an iodine atom, a hydroxy group, a methyl group, a methoxy group, or an ethoxyethoxy group. nA2 is preferably 1, 2, 3 or 4, more preferably 1, 2 or 3, and even more preferably 1 or 2. na21 is preferably 0, 1, 2 or 3, more preferably 0, 1 or 2, and further preferably 0 or 1. mc is preferably 0 or 1. -X a2 -OH is a benzene ring, A a21 It is preferable that at least one of them is bonded to the m-position or p-position, and more preferable that it is bonded to the m-position. In the case of a naphthalene ring, A a21 When the bonding position of A is the 1st position, it may be bonded to any of the 2nd to 8th positions. a21 When the bonding position of A is the 2-position, it may be bonded to any of the 1-position and the 3-8-positions. a21 When the bonding position of A is the 1st position, at least one of them is preferably bonded to the 3rd to 6th positions, and more preferably bonded to the 3rd or 4th position. a21When the bonding position is the 2-position, it is preferably bonded to the 4- to 7-positions, and more preferably bonded to the 5- or 6-position.

[0105] Examples of the structural unit (a2-A) include structural units derived from monomers described in JP-A-2010-204634 and JP-A-2012-12577. The structural unit (a2-A) includes structural units represented by formulae (a2-2-1) to (a2-2-32), (a2-3-1) to (a2-3-24), and structural units represented by formulae (a2-2-1) to (a2-2-32), (a2-3-1) to (a2-3-24), and R in the structural unit (a2-A) a2 and the like, in which the methyl group corresponding to the following formula (I) is replaced with a hydrogen atom, a halogen atom, a haloalkyl group or another alkyl group. TIFF2025071809000076.tif107170

[0106] TIFF2025071809000077.tif83166 When the structural unit (a2-A) is contained in the resin (A) or the like, the content of the structural unit (a2-A) is preferably 5 mol% or more, more preferably 10 mol% or more, even more preferably 15 mol% or more, and even more preferably 20 mol% or more, based on the total structural units. Also, it is preferably 80 mol% or less, more preferably 70 mol% or less, even more preferably 65 mol% or less, even more preferably 60 mol% or less, even more preferably 50 mol% or less, even more preferably 45 mol% or less, and even more preferably 40 mol% or less. Specifically, it is preferably 5 to 80 mol%, more preferably 10 to 70 mol%, even more preferably 15 to 65 mol%, and even more preferably 20 to 65 mol%. The structural unit (a2-A) is derived from a compound represented by formula (a2-A') (hereinafter, may be referred to as "compound (a2-A')"). TIFF2025071809000078.tif31121 [In formula (a2-A'), all symbols have the same meaning as above.] The compound (a2-A') may be a commercially available product or may be produced by a known method. The structural unit (a2-A) can be incorporated into the resin (A) by polymerizing the compound (a2-A'). For example, the structural unit (a1-4) can be polymerized, followed by treatment with an acid such as p-toluenesulfonic acid, to incorporate the structural unit (a2-A) into the resin (A). For example, acetoxystyrene can be polymerized, followed by treatment with an alkali such as tetramethylammonium hydroxide to incorporate the structural unit (a2-A) into the resin (A).

[0107] In the structural unit (a2), L a21 is a cyclic hydrocarbon group, examples of the structural unit having an alcoholic hydroxy group or a carboxy group include a structural unit represented by formula (a2-B) (hereinafter may be referred to as "structural unit (a2-B)"), a structural unit represented by formula (a2-C) (hereinafter may be referred to as "structural unit (a2-C)"), and a structural unit represented by formula (a2-D) (hereinafter may be referred to as "structural unit (a2-D)"). TIFF2025071809000079.tif46100[In formula (a2-B) and formula (a2-C), R a2 has the same meaning as formula (a2). R a27 has the same meaning as in formula (a2-A). a25 is -O- or *-O-(CH2) k2 represents --CO--O--, and k2 represents an integer of 1 to 7. * represents a bonding site with --CO--. X a2 represents a single bond or -CO-. R a25 and R a26 each independently represents a hydrogen atom, a methyl group, or a hydroxy group. nB2 represents an integer of 1 to 5. When nB2 is 2 or more, a plurality of X a2 may be the same or different from each other. nB22 represents an integer of 0 to 8. When nB22 is 2 or more, a plurality of Ra27 may be the same or different from each other. nC22 represents an integer of 0 to 10. When nC22 is 2 or more, multiple R a27 may be the same or different. L a25 is preferably -O-, -O-(CH2) f1 It is -CO-O- (wherein f1 represents an integer of 1 to 4), and more preferably -O-. R a2 is preferably a methyl group. X a2 is preferably a single bond. R a25 is preferably a hydrogen atom. R a26 is preferably a hydrogen atom or a hydroxy group. R a27 is preferably a halogen atom, a hydroxy group, a carboxy group, an alkyl group having 1 to 4 carbon atoms which may have a halogen atom, an alkoxy group having 1 to 4 carbon atoms, or an alkoxyalkoxy group having 2 to 8 carbon atoms, more preferably a fluorine atom, an iodine atom, a hydroxy group, a methyl group, a methoxy group, an ethoxy group, an ethoxyethoxy group, or an ethoxymethoxy group, and even more preferably a fluorine atom, an iodine atom, a hydroxy group, a methyl group, a methoxy group, or an ethoxyethoxy group. nB2 is preferably 1, 2, 3 or 4, more preferably 1, 2 or 3, and even more preferably 1 or 2. nB22 is preferably an integer of 0 to 3, more preferably 0, 1 or 2, and further preferably 0 or 1. nC22 is preferably an integer of 0 to 6, more preferably an integer of 0 to 3, and further preferably 0 or 1.

[0108] Examples of the structural unit (a2-B) and the structural unit (a2-C) include structural units derived from monomers described in JP-A-2010-204646, the following structural units, and R a2In particular, structural units represented by any one of formulae (a2-B-1) to (a2-B-5) and formulae (a2-C-1) to (a2-C-9) are preferred. TIFF2025071809000080.tif80164 When the resin (A) or the like contains the structural unit (a2-B) or the structural unit (a2-C), the content thereof is 1 mol% or more, preferably 2 mol% or more, based on the total structural units of the resin (A) or the like. Also, 45 mol% or less is mentioned, preferably 40 mol% or less, more preferably 35 mol% or less, even more preferably 20 mol% or less, and even more preferably 10 mol% or less. Specifically, 1 to 45 mol% is mentioned, preferably 1 to 40 mol%, more preferably 1 to 35 mol%, even more preferably 1 to 20 mol%, and even more preferably 1 to 10 mol%.

[0109] TIFF2025071809000081.tif51106[In formula (a2-D), R a2 and A a21 have the same meaning as in formula (a2). R a27 has the same meaning as formula (a2-A). R a21 and R a22 each independently represents a fluorinated alkyl group having 1 to 4 carbon atoms. L a24 represents a single bond or an alkanediyl group having 1 to 3 carbon atoms, and the alkanediyl group may be substituted with a fluorine atom. nD2 represents an integer of 1 to 5. When nD2 is 2 or more, the groups in the multiple parentheses may be the same or different. nD22 represents an integer of 0 to 4. When nD22 is 2 or more, a plurality of R a27 may be the same or different from each other. However, 1≦nD2+nD22≦5. R a21 and Ra22 Examples of the fluorinated alkyl groups are each independently a trifluoromethyl group, a 2,2,2-trifluoroethyl group, a 3,3,3-trifluoropropyl group, a 4,4,4-trifluorobutyl group, and the like. R a21 and R a22 As the alkyl group, a trifluoromethyl group is preferable. L a24 Examples of the alkanediyl group include a methylene group, an ethane-1,1-diyl group, a propane-1,1-diyl group, and a propane-2,2-diyl group. L a24 is preferably a single bond or a methylene group. R a27 is preferably a halogen atom, a hydroxy group, a carboxy group, an alkyl group having 1 to 4 carbon atoms which may have a halogen atom, an alkoxy group having 1 to 4 carbon atoms, or an alkoxyalkoxy group having 2 to 8 carbon atoms, more preferably a fluorine atom, an iodine atom, a hydroxy group, a methyl group, a methoxy group, an ethoxy group, an ethoxyethoxy group, or an ethoxymethoxy group, and even more preferably a fluorine atom, an iodine atom, a hydroxy group, a methyl group, a methoxy group, or an ethoxyethoxy group. nD2 is preferably 1, 2, 3 or 4, more preferably 1, 2 or 3, even more preferably 1 or 2, and even more preferably 1. Also preferably, nD2 is 1 and the group in parentheses is bonded to the para position. nD22 is preferably an integer of 0 to 3, more preferably an integer of 0 to 2, further preferably 0 or 1, and even more preferably 0.

[0110] The structural unit (a2-D) is more preferably a structural unit represented by the following formula (a2-D1) (hereinafter, sometimes referred to as "structural unit (a2-D1)"). TIFF2025071809000082.tif51107[In formula (a2-D1), R a2 , A a21 , R a27, nD2 and nD22 have the same meaning as in formula (a2-D). In formula (a2-D1), R a2 is preferably a hydrogen atom or a methyl group. A a21 is preferably a single bond.

[0111] Examples of the structural unit (a2-D) include the structural units shown below. TIFF2025071809000083.tif62167

[0112] In the structural units represented by formulae (a2-D-1) to (a2-D-8), R a2 In the structural units represented by formulae (a2-D-9) to (a2-D-16), the hydrogen atom corresponding to R a2 Specific examples of the structural unit (a2-D) include structural units in which the methyl group corresponding to the following formula is replaced with a hydrogen atom, etc. Among these, the structural units represented by formulae (a2-D-1) to (a2-D-8) are preferred, the structural units represented by formulae (a2-D-1) to (a2-D-4) are more preferred, and the structural unit represented by formula (a2-D-1) is even more preferred.

[0113] When the resin (A) etc. contains the structural unit (a2-D), the content thereof is preferably 3 mol% or more, more preferably 5 mol% or more, and even more preferably 10 mol% or more, based on the total structural units of the resin (A) etc. Also, it is preferably 80 mol% or less, more preferably 75 mol% or less, even more preferably 70 mol% or less, and even more preferably 65 mol% or less. Specifically, it is preferably 3 to 80 mol%, more preferably 5 to 75 mol%, even more preferably 10 to 70 mol%, and even more preferably 10 to 65 mol%.

[0114] <Structural unit (a3)> The lactone ring of the structural unit (a3) ​​may be a monocyclic ring such as a β-propiolactone ring, a γ-butyrolactone ring, or a δ-valerolactone ring, or may be a condensed ring of a monocyclic lactone ring and another ring. Preferred examples include a γ-butyrolactone ring, an adamantane lactone ring, or a bridged ring containing a γ-butyrolactone ring structure (for example, a structural unit represented by the following formula (a3-2)).

[0115] The structural unit (a3) ​​is preferably a structural unit represented by formula (a3-1), formula (a3-2), formula (a3-3) or formula (a3-4). One of these may be contained alone, or two or more of them may be contained. TIFF2025071809000084.tif48155[In formula (a3-1), formula (a3-2), formula (a3-3) and formula (a3-4), L a4 , L a5 and L a6 are each independently -O- or *-O-(CH2) k3 It represents a group represented by -CO-O- (k3 represents an integer of any of 1 to 7). L a7 , -O-, *-OL a8 -O-, *-OL a8 -CO-O-, *-OL a8 -CO-OL a9 -CO-O- or *-OL a8 -O-CO-L a9 Represents -O-. L a8 and L a9 each independently represents an alkanediyl group having 1 to 6 carbon atoms. * indicates the bonding site with the carbonyl group. R a18 , R a19 , R a20 and R a24 each independently represents a hydrogen atom, a halogen atom or an alkyl group having 1 to 6 carbon atoms which may have a halogen atom. X a3 represents -CH2- or an oxygen atom. R a21 represents an aliphatic hydrocarbon group having 1 to 4 carbon atoms. R a22 , R a23 and R a25 each independently represents a carboxy group, a cyano group, or an aliphatic hydrocarbon group having 1 to 4 carbon atoms. p1 represents an integer of 0 to 5. q1 represents an integer of 0 to 3. r1 represents an integer of 0 to 3. w1 represents an integer of 0 to 8. When p1, q1, r1 and / or w1 are 2 or more, multiple R a21 , R a22 , R a23 and / or R a25 may be the same or different.]

[0116] R a21 , R a22 , R a23 and R a25 Examples of the aliphatic hydrocarbon group in include alkyl groups such as a methyl group, an ethyl group, a propyl group, an isopropyl group, a butyl group, a sec-butyl group, and a tert-butyl group. R a18 , R a19 , R a20 and R a24 Examples of the halogen atom and the alkyl group which may have a halogen atom in the formula (a1-0) to the formula (a1-2) include R a01 , R a4 and R a5 Examples of the above-mentioned examples are the same as those given above. L a8 and L a9 Examples of the alkanediyl group in the formula (I) include a methylene group, an ethylene group, a propane-1,3-diyl group, a propane-1,2-diyl group, a butane-1,4-diyl group, a pentane-1,5-diyl group, a hexane-1,6-diyl group, a butane-1,3-diyl group, a 2-methylpropane-1,3-diyl group, a 2-methylpropane-1,2-diyl group, a pentane-1,4-diyl group, and a 2-methylbutane-1,4-diyl group. L a4 ~L a6are each independently preferably -O- or *-O-(CH2) k3 In the -CO-O- group, k3 is a group in which k3 is any integer of 1 to 4, more preferably -O- and *-O-CH2-CO-O-, and further preferably an oxygen atom. L a7 is preferably -O- or *-OL a8 It is —CO—O—, and more preferably —O—, —O—CH2—CO—O— or —O—C2H4—CO—O—. R a18 , R a19 , R a20 and R a24 is preferably a hydrogen atom or an alkyl group having 1 to 4 carbon atoms, more preferably a hydrogen atom, a methyl group, or an ethyl group, and even more preferably a hydrogen atom or a methyl group. R a21 is preferably a methyl group. R a22 , R a23 and R a25 are each independently preferably a carboxy group, a cyano group, or a methyl group. p1, q1 and r1 each independently represent an integer of preferably 0 to 2, and more preferably 0 or 1. w1 is preferably an integer of 0 to 2, and more preferably 0 or 1. In particular, the formula (a3-4) is preferably the formula (a3-4)'. TIFF2025071809000085.tif3848 (in the formula, R a24 , L a7 has the same meaning as above.)

[0117] Examples of the structural unit (a3) ​​include structural units derived from monomers described in JP 2010-204646 A, JP 2000-122294 A, and JP 2012-41274 A. Examples of the structural unit (a3) ​​include structural units represented by any one of formulas (a3-1-1), (a3-1-2), (a3-2-1), (a3-2-2), (a3-3-1), (a3-3-2), and (a3-4-1) to (a3-4-12), and in the structural unit, R in formulas (a3-1) to (a3-4) a18 , R a19 , R a20 and R a24 A structural unit in which a methyl group corresponding to the following formula is replaced with a hydrogen atom is preferred. TIFF2025071809000086.tif108164

[0118] When the resin (A) or the like contains the structural unit (a3), the total content thereof is 1 mol% or more, preferably 3 mol% or more, more preferably 5 mol% or more, and even more preferably 10 mol% or more, based on the total structural units of the resin (A) or the like. Also, 70 mol% or less is mentioned, preferably 65 mol% or less, more preferably 60 mol% or less, even more preferably 50 mol% or less, even more preferably 40 mol% or less, even more preferably 30 mol% or less, even more preferably 25 mol% or less, and even more preferably 20 mol% or less. Specifically, 1 to 70 mol% is mentioned, preferably 3 to 70 mol%, more preferably 3 to 65 mol%, even more preferably 5 to 65 mol%, even more preferably 5 to 60 mol%, and even more preferably 10 to 60 mol%. The content of the structural unit (a3-1), the structural unit (a3-2), the structural unit (a3-3) or the structural unit (a3-4) is preferably 1 mol% or more, more preferably 3 mol% or more, even more preferably 5 mol% or more, and even more preferably 10 mol% or more, based on the total structural units of the resin (A). It is also preferably 60 mol% or less, more preferably 55 mol% or less, even more preferably 50 mol% or less, even more preferably 40 mol% or less, even more preferably 30 mol% or less, even more preferably 25 mol% or less, and even more preferably 20 mol% or less. Specifically, it is preferably 1 to 60 mol%, more preferably 3 to 60 mol%, even more preferably 3 to 55 mol%, even more preferably 5 to 55 mol%, even more preferably 5 to 50 mol%, and even more preferably 10 to 50 mol%.

[0119] <Structural unit (a4)> The structural unit represented by formula (a4) is shown below. TIFF2025071809000087.tif3255[In formula (a4), R 41 represents a hydrogen atom or a methyl group. R 42 represents a saturated hydrocarbon group having 1 to 24 carbon atoms and containing a halogen atom, and -CH2- contained in the saturated hydrocarbon group may be replaced by -O- or -CO-.]

[0120] R 42 Examples of the saturated hydrocarbon group represented by the formula (I) include linear or branched chain saturated hydrocarbon groups, monocyclic or polycyclic alicyclic saturated hydrocarbon groups, and groups formed by combining these groups. Examples of the chain saturated hydrocarbon group include linear alkyl groups such as a methyl group, an ethyl group, a propyl group, a butyl group, a pentyl group, a hexyl group, a heptyl group, an octyl group, a decyl group, a dodecyl group, a pentadecyl group, a hexadecyl group, a heptadecyl group, and an octadecyl group, and branched alkyl groups such as an isopropyl group and an isobutyl group. Examples of the monocyclic or polycyclic alicyclic saturated hydrocarbon group include monocyclic alicyclic saturated hydrocarbon groups which are monocyclic cycloalkyl groups, such as a cyclopentyl group, a cyclohexyl group, a cycloheptyl group, and a cyclooctyl group; and polycyclic alicyclic saturated hydrocarbon groups which are polycyclic cycloalkyl groups, such as a decahydronaphthyl group, an adamantyl group, a norbornyl group, and the following groups (* represents a bonding site): TIFF2025071809000088.tif10146 Examples of groups formed by combinations include groups formed by combining one or more alkyl groups or one or more alkanediyl groups with one or more alicyclic saturated hydrocarbon groups, such as -alkanediyl group-alicyclic saturated hydrocarbon group, -alicyclic saturated hydrocarbon group-alkyl group, and -alkanediyl group-alicyclic saturated hydrocarbon group-alkyl group. Examples of the alkanediyl group include linear alkanediyl groups such as methylene, ethylene, propane-1,3-diyl, butane-1,4-diyl, pentane-1,5-diyl, and hexane-1,6-diyl groups, and branched alkanediyl groups such as propane-1,2-diyl, butane-1,3-diyl, 2-methylpropane-1,2-diyl, 1-methylbutane-1,4-diyl, and 2-methylbutane-1,4-diyl groups. The terminal of the branched alkanediyl group may be a methyl group. R 42 Examples of the halogen atom contained in the saturated hydrocarbon group include a fluorine atom, a chlorine atom, a bromine atom, and an iodine atom. R 42 Examples of the saturated hydrocarbon group in which -CH- is replaced with -O- or -CO- include a hydroxy group, a carboxy group, a carbonyl group, an oxy group, an alkoxy group, an alkoxycarbonyl group, an alkylcarbonyl group, an alkylcarbonyloxy group, an alkanediyloxy group, an alkanediyloxycarbonyl group, an alkanediylcarbonyl group, an alkanediylcarbonyloxy group, a cycloalkoxy group, a cycloalkylalkoxy group, and a group combining two or more of these groups. Examples of these replaced groups include the same groups as exemplified in this specification, within the range permitted by the upper limit of the number of carbon atoms.

[0121] The structural unit (a4) is R 42 is preferably a saturated hydrocarbon group having a fluorine atom. 42 Examples of the structural unit (a4) which is a saturated hydrocarbon group having a fluorine atom include a structural unit represented by formula (a4-1) (hereinafter may be referred to as "structural unit (a4-1)"), a structural unit represented by formula (a4-2) (hereinafter may be referred to as "structural unit (a4-2)"), a structural unit represented by formula (a4-3) (hereinafter may be referred to as "structural unit (a4-3)"), and a structural unit represented by formula (a4-A) (hereinafter may be referred to as "structural unit (a4-A)"). The structural unit represented by formula (a4-1) is a structural unit represented by the following formula: TIFF2025071809000089.tif4864[In formula (a4-1), R 41 represents a hydrogen atom or a methyl group. L 41 represents a single bond or an alkanediyl group having 1 to 4 carbon atoms. L 42f represents a fluorine atom-containing alkanediyl group having 1 to 8 carbon atoms or a fluorine atom-containing cycloalkanediyl group having 3 to 12 carbon atoms. R 42f represents a hydrogen atom or a fluorine atom.

[0122] L 41 Examples of the alkanediyl group in the formula (I) include linear alkanediyl groups such as methylene, ethylene, propane-1,3-diyl, and butane-1,4-diyl, and branched alkanediyl groups such as ethane-1,1-diyl, propane-1,2-diyl, butane-1,3-diyl, 2-methylpropane-1,3-diyl, and 2-methylpropane-1,2-diyl. The terminal of the branched alkanediyl group may be a methyl group. L 42fExamples of the alkanediyl group having a fluorine atom in the formula (I) include linear alkanediyl groups having a fluorine atom, such as a methylene group having a fluorine atom, an ethylene group having a fluorine atom, a propane-1,3-diyl group having a fluorine atom, a butane-1,4-diyl group having a fluorine atom, a pentane-1,5-diyl group having a fluorine atom, a hexane-1,6-diyl group having a fluorine atom, a heptane-1,7-diyl group having a fluorine atom, and an octane-1,8-diyl group having a fluorine atom; Examples of branched alkanediyl groups having fluorine atoms include ethane-1,1-diyl groups having fluorine atoms, propane-1,1-diyl groups having fluorine atoms, propane-1,2-diyl groups having fluorine atoms, propane-2,2-diyl groups having fluorine atoms, pentane-2,4-diyl groups having fluorine atoms, 2-methylpropane-1,3-diyl groups having fluorine atoms, 2-methylpropane-1,2-diyl groups having fluorine atoms, pentane-1,4-diyl groups having fluorine atoms, and 2-methylbutane-1,4-diyl groups having fluorine atoms. The terminal of the branched alkanediyl group may be a methyl group which may have a fluorine atom. L 42f Examples of the cycloalkanediyl group having a fluorine atom in the formula (I) include monocyclic cycloalkanediyl groups having a fluorine atom, such as a cyclobutane-1,3-diyl group having a fluorine atom, a cyclopentane-1,3-diyl group having a fluorine atom, a cyclohexane-1,4-diyl group having a fluorine atom, a cyclohexene-3,6-diyl group having a fluorine atom, a cycloheptane-1,4-diyl group having a fluorine atom, and a cyclooctane-1,5-diyl group having a fluorine atom; Examples of polycyclic cycloalkanediyl groups having a fluorine atom include a norbornane-1,4-diyl group having a fluorine atom, a norbornane-2,5-diyl group having a fluorine atom, a 5-norbornene-2,3-diyl group having a fluorine atom, an adamantane-1,5-diyl group having a fluorine atom, and an adamantane-2,6-diyl group having a fluorine atom. L 42fThe number of fluorine atoms contained in the alkanediyl group and cycloalkanediyl group having a fluorine atom in the above formula may be 1 or more, and is preferably 2 or more. L 42f The alkanediyl group and cycloalkanediyl group having a fluorine atom in the above formula (I) are preferably a perfluoroalkanediyl group and a perfluorocycloalkanediyl group, respectively.

[0123] L 42f Examples of the perfluoroalkanediyl group in the formula (I) include a difluoromethylene group, a perfluoroethylene group, a perfluoroethylfluoromethylene group, a perfluoropropane-1,3-diyl group, a perfluoropropane-1,2-diyl group, a perfluoropropane-2,2-diyl group, a perfluorobutane-1,4-diyl group, a perfluorobutane-2,2-diyl group, a perfluorobutane-1,2-diyl group, a perfluoropentane-1,5-diyl group, a perfluoropentane-2,2-diyl group, a perfluoropentane-3 ,3-diyl group, perfluorohexane-1,6-diyl group, perfluorohexane-2,2-diyl group, perfluorohexane-3,3-diyl group, perfluoroheptane-1,7-diyl group, perfluoroheptane-2,2-diyl group, perfluoroheptane-3,4-diyl group, perfluoroheptane-4,4-diyl group, perfluorooctane-1,8-diyl group, perfluorooctane-2,2-diyl group, perfluorooctane-3,3-diyl group, and perfluorooctane-4,4-diyl group. L 42f Examples of the perfluorocycloalkanediyl group in the formula (I) include a perfluorocyclohexanediyl group, a perfluorocyclopentanediyl group, a perfluorocycloheptanediyl group, and a perfluoroadamantanediyl group.

[0124] L 41 is preferably a single bond or an alkanediyl group having 1 to 3 carbon atoms, more preferably a single bond, a methylene group, or an ethylene group, and even more preferably a single bond or a methylene group. L 42fis preferably a perfluoroalkanediyl group having 1 to 8 carbon atoms or a perfluorocycloalkanediyl group having 3 to 12 carbon atoms, more preferably a perfluoroalkanediyl group having 1 to 6 carbon atoms, and even more preferably a perfluoroalkanediyl group having 1 to 3 carbon atoms.

[0125] The structural unit (a4-1) may be any of the structural units shown below and R in the structural unit (a4-1) in the structural unit shown below. 41 In the structural unit, a methyl group corresponding to the above formula is replaced with a hydrogen atom. TIFF2025071809000090.tif98159The structural unit represented by formula (a4-2) is the structural unit shown below. TIFF2025071809000091.tif5574[In formula (a4-2), R 41 represents a hydrogen atom or a methyl group. L 43f represents a saturated hydrocarbon group having 1 to 20 carbon atoms which may contain a fluorine atom, and -CH2- contained in the saturated hydrocarbon group may be replaced by -O- or -CO-. R 43f represents a saturated hydrocarbon group having 1 to 20 carbon atoms which may contain a fluorine atom, and -CH2- contained in the saturated hydrocarbon group may be replaced by -O- or -CO-. However, L 43f and R 43f At least one of L has a fluorine atom. 43f and R 43f The maximum total carbon number is 21.

[0126] L 43f and R 43f Examples of the saturated hydrocarbon group in include linear or branched chain saturated hydrocarbon groups, monocyclic or polycyclic alicyclic saturated hydrocarbon groups, and groups formed by combining these groups. 43f and R 43f Examples of saturated hydrocarbon groups in the formula are L 43f and R 43f As long as the upper limit of the total number of carbon atoms in42 Examples of the saturated hydrocarbon group include the same groups as the saturated hydrocarbon groups exemplified above.

[0127] L 43f The saturated hydrocarbon group is preferably an alkanediyl group having 1 to 6 carbon atoms or a group represented by the formula (L43f-1). TIFF2025071809000092.tif14120[In formula (L43f-1), s represents 0 or 1. L 45f and L 46f each independently represents a divalent saturated hydrocarbon group having 1 to 5 carbon atoms which may contain a fluorine atom. L 47f represents a single bond or a divalent saturated hydrocarbon group having 1 to 5 carbon atoms which may contain a fluorine atom. X 46f and X 47f each independently represents -O-, -CO-, -CO-O- or -O-CO-. However, L 45f , L 46f , L 47f , X 46f and X 47f The total number of carbon atoms is 7 or less. * and ** are binding sites, ** is -O-CO-R 43f This is the binding site for

[0128] L in the group represented by formula (L43f-1) 45f , L 46f and L 47f Examples of the divalent saturated hydrocarbon group represented by include a linear or branched alkanediyl group, a monocyclic or polycyclic divalent alicyclic saturated hydrocarbon group, and a divalent saturated hydrocarbon group formed by combining an alkanediyl group and a divalent alicyclic saturated hydrocarbon group, etc. Specific examples include a methylene group, an ethylene group, a propane-1,3-diyl group, a propane-1,2-diyl group, a butane-1,4-diyl group, a 1-methylpropane-1,3-diyl group, a 2-methylpropane-1,3-diyl group, a 2-methylpropane-1,2-diyl group, etc. It is preferred that s is 0.

[0129] Examples of the group represented by formula (L43f-1) include the following groups. In the following examples, * and ** each represent a bonding site, and ** represents -O-CO-R 43f This is the binding site for TIFF2025071809000093.tif47140

[0130] R 43f is preferably a saturated hydrocarbon group having a fluorine atom. In this case, examples of the structural unit represented by formula (a4-2) include structural units represented by formula (a4-2A) or (a4-2B). TIFF2025071809000094.tif69102 [In formula (a4-2A) and formula (a4-2B), R 41 and L 43f represents the same as in formula (a4-2). R 43fA represents a saturated hydrocarbon group having 1 to 20 carbon atoms and containing a fluorine atom. A 43f represents a divalent saturated hydrocarbon group having 1 to 17 carbon atoms which may have a fluorine atom, and -CH2- contained in the saturated hydrocarbon group may be replaced by -O- or -CO-. X 43 represents **-O-CO- or **-CO-O-, and ** represents A 43f represents the binding site with R 43fB represents a saturated hydrocarbon group having 1 to 17 carbon atoms which may contain a fluorine atom. However, in formula (a4-2A), L 43f and R 43fA The total number of carbon atoms in formula (a4-2B) is 21 or less, and in formula (a4-2B), L 43f , A 43f , X 43 and R 43fB The total number of carbon atoms in A is 21 or less. 43f and R 43fB At least one of them has at least one fluorine atom. R 43fA The saturated hydrocarbon group of R is as long as the upper limit of the carbon number permits. 42 Examples of the saturated hydrocarbon groups include the saturated hydrocarbon groups exemplified by the above. R 43fA is preferably an alkyl group having 1 to 13 carbon atoms and containing a fluorine atom, a cycloalkyl group having 3 to 12 carbon atoms and containing a fluorine atom, or a group combining these, *-(CF2) n43f -R 42’ (* represents the bonding site with the carbonyl group. n43f represents an integer of 1 to 6. R 42’ represents a hydrogen atom or a fluorine atom.) or a perfluorocycloalkyl group having 3 to 12 carbon atoms is more preferable. A 43f and R 43fB The saturated hydrocarbon group represented by R in formula (a4) is as large as possible within the upper limit of the number of carbon atoms. 42 Examples of the saturated hydrocarbon groups include the saturated hydrocarbon groups exemplified by the above. A 43f is preferably a divalent chain saturated hydrocarbon group which may have a fluorine atom, a divalent alicyclic saturated hydrocarbon group, or a combination thereof, more preferably a divalent chain saturated hydrocarbon group which has a fluorine atom, and further preferably a fluorinated alkanediyl group having 1 to 6 carbon atoms. R 43fBThe saturated hydrocarbon group which may have a fluorine atom is preferably a chain saturated hydrocarbon group which may have a fluorine atom, an alicyclic saturated hydrocarbon group or a group combining these, more preferably an alkyl group having 1 to 12 carbon atoms which may have a fluorine atom, a cycloalkyl group having 3 to 12 carbon atoms or a group combining these, and more preferably a trifluoromethyl group, a difluoromethyl group, a methyl group, a perfluoroethyl group, a 2,2,2-trifluoroethyl group, a 1,1,2,2-tetrafluoroethyl group, an ethyl group, a perfluoropropyl group, a 2,2,3,3,3-pentafluoropropyl group, a propyl group, a perfluorobutyl group, a 1,1,2,2,3,3,4,4- More preferred are fluorinated alkyl groups such as an octafluorobutyl group, a butyl group, a perfluoropentyl group, a 2,2,3,3,4,4,5,5,5-nonafluoropentyl group, a pentyl group, a hexyl group, a perfluorohexyl group, a heptyl group, a perfluoroheptyl group, an octyl group, and a perfluorooctyl group; a cyclopropylmethyl group, a cyclopropyl group, a cyclobutylmethyl group, a cyclopentyl group, a cyclohexyl group, a perfluorocyclohexyl group, an adamantyl group, an adamantylmethyl group, an adamantyldimethyl group, a norbornyl group, a norbornylmethyl group, a perfluoroadamantyl group, and a perfluoroadamantylmethyl group. In formula (a4-2B), *-A f43 -X 43 -R f43B An example of a structure that the group represented by the formula (I) can take is the following structure (* indicates the bonding site with the carbonyl group). TIFF2025071809000095.tif14170 The structural unit represented by formula (a4-2A) includes the structural units shown below and R in the structural unit represented by formula (a4-2A) in the structural units shown below. 41 In the structural unit, a methyl group corresponding to the above formula is replaced with a hydrogen atom. TIFF2025071809000096.tif99167

[0131] The structural unit represented by formula (a4-2B) includes the structural units shown below and R in the structural unit represented by formula (a4-2B) in the structural units shown below. 41In the structural unit, a methyl group corresponding to the above formula is replaced with a hydrogen atom. TIFF2025071809000097.tif111164

[0132] The structural unit (a4) also includes a structural unit represented by formula (a4-3). TIFF2025071809000098.tif5576[In formula (a4-3), R 41 represents a hydrogen atom or a methyl group. L 44f represents a saturated hydrocarbon group having 1 to 20 carbon atoms which may contain a fluorine atom, and -CH2- contained in the saturated hydrocarbon group may be replaced by -O- or -CO-. R 44f represents a saturated hydrocarbon group having 1 to 20 carbon atoms which may contain a fluorine atom, and -CH2- contained in the saturated hydrocarbon group may be replaced by -O- or -CO-. However, L 44f and R 44f At least one of L has a fluorine atom. 44f and R 44f The maximum total carbon number is 21.

[0133] L 44f and R 44f Examples of the saturated hydrocarbon group in include linear or branched chain saturated hydrocarbon groups, monocyclic or polycyclic alicyclic saturated hydrocarbon groups, and groups formed by combining these groups. 44f and R 44f Examples of saturated hydrocarbon groups in the formula are L 43f and R 43f As long as the upper limit of the total number of carbon atoms in 42 Examples of the saturated hydrocarbon group include the same groups as the exemplified saturated hydrocarbon groups. L 44f is preferably an alkanediyl group having 1 to 14 carbon atoms (-CH2- contained in the alkanediyl group may be replaced by -O- or -CO-), and -(CH2) j1 -, -(CH2)j2 -O-(CH2) j3 -or-(CH2) j4 -CO-O-(CH2) j5 It is more preferably a group represented by the formula - (j1 to j5 each independently represent an integer of 1 to 6). It is also preferably an alkanediyl group having 1 to 4 carbon atoms (one -CH2- contained in the alkanediyl group may be replaced by -O-, and one -CH2-CH2- contained in the alkanediyl group may be replaced by -CO-O- or -O-CO-). R 44f is preferably a saturated hydrocarbon group having 1 to 10 carbon atoms and having a fluorine atom, more preferably an alkyl group having 1 to 10 carbon atoms and having a fluorine atom, an alicyclic saturated hydrocarbon group having 3 to 10 carbon atoms and having a fluorine atom, or a group combining these, further preferably an alkyl group having 1 to 10 carbon atoms and having a fluorine atom, and even more preferably an alkyl group having 1 to 6 carbon atoms and having a fluorine atom.

[0134] Examples of the structural unit represented by formula (a4-3) include the following structural units and structural units represented by the following formulas: 41 In the structural unit, a methyl group corresponding to the above formula is replaced with a hydrogen atom. TIFF2025071809000099.tif85170

[0135] TIFF2025071809000100.tif3686[In formula (a4-A), R 1 represents a hydrogen atom, a halogen atom or an alkyl group having 1 to 6 carbon atoms which may have a halogen atom. X 11 represents a single bond or *-CO-O-. * represents R 1 represents the bonding site with the carbon atom to which it is bonded. L 1 represents an aliphatic hydrocarbon group having 1 to 28 carbon atoms which may have a substituent, and -CH2- contained in the aliphatic hydrocarbon group may be replaced by -O-, -S-, -SO2- or -CO-. R2 represents a fluorinated alkyl group having 1 to 8 carbon atoms. R 3 represents a hydrogen atom or a fluorinated alkyl group having 1 to 6 carbon atoms, and the fluorinated alkyl group is L 1 may be bonded to form an alicyclic hydrocarbon group having 3 to 12 carbon atoms, and -CH2- contained in the alicyclic hydrocarbon group may be replaced with -O-. mi represents an integer of 1 to 4. When mi is 2 or more, the groups in the multiple parentheses may be the same or different.]

[0136] R 1 Examples of the halogen atom and the alkyl group which may have a halogen atom in the formula (a1-0) to the formula (a1-2) include R a01 , R a4 and R a5 Examples of the above-mentioned examples are the same as those given above. R 1 is preferably a hydrogen atom or an alkyl group having 1 to 4 carbon atoms, more preferably a hydrogen atom or an alkyl group having 1 to 3 carbon atoms, still more preferably a hydrogen atom, a methyl group or an ethyl group, and even more preferably a hydrogen atom or a methyl group. L 1 Examples of the aliphatic hydrocarbon group in include chain hydrocarbon groups and monocyclic or polycyclic (including spiro rings, fused rings, bridged rings, etc.) alicyclic hydrocarbon groups, and may be groups combining two or more of these groups (for example, a hydrocarbon group formed from an alicyclic hydrocarbon group and a chain hydrocarbon group). Examples of the chain hydrocarbon group include divalent to pentavalent chain hydrocarbon groups such as an alkanediyl group, an alkanetriyl group, an alkanetetrayl group, and an alkanpentyl group. Examples of the alkanediyl group include linear alkanediyl groups such as a methylene group, an ethylene group, a propane-1,3-diyl group, a butane-1,4-diyl group, a pentane-1,5-diyl group, a hexane-1,6-diyl group, a heptane-1,7-diyl group, an octane-1,8-diyl group, a nonane-1,9-diyl group, a decane-1,10-diyl group, an undecane-1,11-diyl group, a dodecane-1,12-diyl group, a tridecane-1,13-diyl group, a tetradecane-1,14-diyl group, a pentadecane-1,15-diyl group, a hexadecane-1,16-diyl group, and a heptadecane-1,17-diyl group; Examples of branched alkanediyl groups include ethane-1,1-diyl group, propane-1,1-diyl group, propane-1,2-diyl group, propane-2,2-diyl group, pentane-2,4-diyl group, 2-methylpropane-1,3-diyl group, 2-methylpropane-1,2-diyl group, pentane-1,4-diyl group, and 2-methylbutane-1,4-diyl group. Further examples include groups in which one or more hydrogen atoms of the above groups are replaced with bonding sites. The number of carbon atoms in the chain hydrocarbon group is preferably 1 to 18, more preferably 1 to 12, even more preferably 1 to 10, still more preferably 1 to 9, even more preferably 1 to 8, even more preferably 1 to 6, even more preferably 1 to 5, and particularly preferably 1 to 4.

[0137] Examples of the monocyclic or polycyclic alicyclic hydrocarbon group include the following alicyclic hydrocarbon groups: The binding site may be any position. TIFF2025071809000101.tif46164 For example, divalent to pentavalent alicyclic hydrocarbon groups such as a cycloalkanediyl group, a cycloalkanetriyl group, a cycloalkanetetrayl group, and a cycloalkanepentyl group can be mentioned. Specifically, monocyclic alicyclic hydrocarbon groups such as cyclobutane-1,3-diyl group, cyclopentane-1,3-diyl group, cyclohexane-1,4-diyl group, cyclooctane-1,5-diyl group, etc. Examples of such groups include cycloalkanediyl groups such as norbornane-1,4-diyl group, norbornane-2,5-diyl group, adamantane-1,5-diyl group, adamantane-2,6-diyl group, decahydronaphthalenediyl group, bicyclo[3.3.0]octanediyl group, spirocyclohexane-1,2'-cyclopentane-diyl group, and spiroadamantane-2,3'-cyclopentane-diyl group, and polycyclic alicyclic hydrocarbon groups such as spiro rings having a cycloalkanediyl group bonded to a norbornanediyl group or an adamantanediyl group via a spiro bond. Further examples include groups in which one or more hydrogen atoms of the above groups are replaced with bonding sites. The alicyclic hydrocarbon group preferably has 3 to 20 carbon atoms, more preferably 3 to 18 carbon atoms, further preferably 3 to 16 carbon atoms, and further preferably 3 to 12 carbon atoms.

[0138] Examples of groups that combine two or more types include a group that combines an alicyclic hydrocarbon group and a chain hydrocarbon group. In the combination, two or more types of alicyclic hydrocarbon groups and chain hydrocarbon groups may be combined. In addition, when any group is X 11 may be bound to Examples of groups combining an alicyclic hydrocarbon group and a chain hydrocarbon group include a group in which an alicyclic hydrocarbon group is bonded to a chain hydrocarbon group (e.g., *-chain hydrocarbon group-alicyclic hydrocarbon group-, etc.), a group in which a chain hydrocarbon group is bonded to an alicyclic hydrocarbon group (e.g., *-alicyclic hydrocarbon group-chain hydrocarbon group-, etc.), a group in which an alicyclic hydrocarbon group and a chain hydrocarbon group are bonded to a chain hydrocarbon group (e.g., *-chain hydrocarbon group-alicyclic hydrocarbon group-chain hydrocarbon group-, etc.), a group in which an alicyclic hydrocarbon group and a chain hydrocarbon group are bonded to an alicyclic hydrocarbon group (e.g., *-chain hydrocarbon group-alicyclic hydrocarbon group-chain hydrocarbon group-, etc.), Examples of such an alkyl group include a group in which a hydroxyl group is bonded to an alicyclic hydrocarbon group (for example, *-alicyclic hydrocarbon group-chain hydrocarbon group-alicyclic hydrocarbon group- etc.), a group in which an alicyclic hydrocarbon group, a chain hydrocarbon group and an alicyclic hydrocarbon group are bonded to an chain hydrocarbon group (for example, *-chain hydrocarbon group-alicyclic hydrocarbon group-chain hydrocarbon group-alicyclic hydrocarbon group- etc.), and a group in which a chain hydrocarbon group, an alicyclic hydrocarbon group and a chain hydrocarbon group are bonded to an alicyclic hydrocarbon group (for example, *-alicyclic hydrocarbon group-chain hydrocarbon group-alicyclic hydrocarbon group-chain hydrocarbon group- etc.). * is X 11 It represents the binding site with Further examples include groups in which one or more hydrogen atoms of the above groups are replaced with bonding sites.

[0139] L 1 -CH2- contained in the aliphatic hydrocarbon group having 1 to 28 carbon atoms may be replaced by -O-, -S-, -SO2- or -CO-. L 1 When --CH2-- contained in the aliphatic hydrocarbon group having 1 to 28 carbon atoms is replaced with --O--, --S--, --SO2-- or --CO--, the number of carbon atoms before replacement is regarded as the number of carbon atoms of the aliphatic hydrocarbon group. Examples of groups in which -CH2- in an aliphatic hydrocarbon group is replaced with -O-, -S-, -SO2- or -CO- include a hydroxy group, a carboxy group, a thiol group, an alkoxy group, an alkylthio group, an alkoxycarbonyl group, an alkylsulfonyl group, an alkylcarbonyl group, an alkylcarbonyloxy group, an alkoxycarbonyloxy group, an oxy group, a carbonyl group, a thio group, a sulfonyl group, an alkanediyloxy group, an alkanediyloxycarbonyl group, an alkanediylcarbonyl group, an alkanediylcarbonyloxy group, an alkanediylsulfonyl group, an alkanediylthio group, a cycloalkoxy group, a cycloalkylalkoxy group, and groups in which two or more of these groups are combined, etc. Examples of these replaced groups include the same groups as those exemplified in this specification, within the range permitted by the upper limit of the number of carbon atoms. Also included are groups in which one or more hydrogen atoms of the above groups are replaced with a bonding site. Furthermore, examples of groups in which -CH2- in an alicyclic hydrocarbon group is replaced by -O-, -S-, -CO- or -SO2- include the same groups as exemplified in this specification, within the upper limit of the number of carbon atoms permitted.

[0140] L 1 The aliphatic hydrocarbon group in may have one or more substituents. Examples of the substituent include a halogen atom, a haloalkyl group having 1 to 4 carbon atoms, an alkyl group having 1 to 12 carbon atoms, an alicyclic hydrocarbon group having 3 to 18 carbon atoms, or an aromatic hydrocarbon group having 6 to 18 carbon atoms (-CH2- contained in the alkyl group or the alicyclic hydrocarbon group may be replaced by -O- or -CO-). Examples of the halogen atom include a fluorine atom, a chlorine atom, a bromine atom, and an iodine atom. Examples of the haloalkyl group having 1 to 4 carbon atoms include a fluorinated alkyl group having 1 to 4 carbon atoms, a chlorinated alkyl group having 1 to 4 carbon atoms, a brominated alkyl group having 1 to 4 carbon atoms, and an iodinated alkyl group having 1 to 4 carbon atoms. Examples of the haloalkyl group include a perfluoroalkyl group having 1 to 4 carbon atoms (such as a trifluoromethyl group, a pentafluoroethyl group, a heptafluoropropyl group, and a nonafluorobutyl group), a 2,2,2-trifluoroethyl group, a 3,3,3-trifluoropropyl group, a 4,4,4-trifluorobutyl group, and a 3,3,4,4,4-pentafluorobutyl group, a chloromethyl group, a bromomethyl group, and an iodomethyl group. The number of carbon atoms in the haloalkyl group is preferably 1 to 3, and more preferably 1 or 2. Examples of the alkyl group having 1 to 12 carbon atoms include a methyl group, an ethyl group, a propyl group, a butyl group, a pentyl group, a hexyl group, a heptyl group, an octyl group, a nonyl group, a decyl group, an undecyl group, a dodecyl group, etc. The number of carbon atoms in the alkyl group is preferably 1 to 9, more preferably 1 to 6, further preferably 1 to 4, and further more preferably 1 to 3. Examples of the alicyclic hydrocarbon group having 3 to 18 carbon atoms include monocyclic cycloalkyl groups such as a cyclopropyl group, a cyclobutyl group, a cyclopentyl group, a cyclohexyl group, a cycloheptyl group, a cyclooctyl group, and a cyclodecyl group, and polycyclic cycloalkyl groups such as a decahydronaphthyl group, an adamantyl group, and a norbornyl group. The number of carbon atoms in the alicyclic hydrocarbon group is preferably 3 to 16, more preferably 3 to 12, and further preferably 3 to 10. Examples of the aromatic hydrocarbon group having 6 to 18 carbon atoms include a phenyl group, a naphthyl group, a biphenyl group, an anthryl group, a phenanthryl group, a binaphthyl group, etc. The number of carbon atoms in the aromatic hydrocarbon group is preferably 6 to 14, more preferably 6 to 12, and further preferably 6 to 10. When -CH2- in the alkyl group is replaced with -O- or -CO-, the number of carbon atoms before the replacement is regarded as the total number of carbon atoms in the alkyl group. Examples of the replaced group include a hydroxy group, a carboxy group, an alkoxy group, an alkoxycarbonyl group, an alkylcarbonyl group, and an alkylcarbonyloxy group. These replaced groups include the same groups as those exemplified in this specification, within the range permitted by the upper limit of the number of carbon atoms. The alkoxy group preferably has 1 to 9 carbon atoms, more preferably 1 to 6 carbon atoms, further preferably 1 to 4 carbon atoms, and further preferably 1 to 3 carbon atoms. The number of carbon atoms in the alkoxycarbonyl group is preferably 2 to 9, more preferably 2 to 6, still more preferably 2 to 4, and even more preferably 2 or 3. The number of carbon atoms in the alkylcarbonyl group is preferably 2 to 10, more preferably 2 to 6, still more preferably 2 to 4, and even more preferably 2 or 3. The number of carbon atoms in the alkylcarbonyloxy group is preferably 2 to 9, more preferably 2 to 6, still more preferably 2 to 4, and even more preferably 2 or 3. Furthermore, examples of groups in which -CH2- in an alicyclic hydrocarbon group is replaced by -O- or -CO- include the same groups as those exemplified in this specification, within the range permitted by the upper limit of the number of carbon atoms. L 1 The substituents which the aliphatic hydrocarbon group in the formula (I) may have are preferably a halogen atom, a haloalkyl group having 1 to 3 carbon atoms, an alkyl group having 1 to 6 carbon atoms, an alicyclic hydrocarbon group having 3 to 10 carbon atoms, or an aromatic hydrocarbon group having 6 to 10 carbon atoms (-CH2- contained in the alkyl group or the alicyclic hydrocarbon group may be replaced with -O- or -CO-), more preferably a fluorine atom, an iodine atom, a perfluoroalkyl group having 1 to 3 carbon atoms, or an alkyl group having 1 to 4 carbon atoms (-CH2- contained in the alkyl group may be replaced with -O- or -CO-), and further preferably a fluorine atom, an iodine atom, a trifluoromethyl group, a methyl group, a hydroxy group, or a methoxy group. L 1 is R 3When the fluorinated alkyl group does not form an alicyclic hydrocarbon group with the fluorinated alkyl group, it is preferably a chain hydrocarbon group having 1 to 12 carbon atoms which may have a substituent (-CH2- contained in the chain hydrocarbon group may be replaced with -O- or -CO-), a alicyclic hydrocarbon group having 3 to 18 carbon atoms which may have a substituent (-CH2- contained in the alicyclic hydrocarbon group may be replaced with -O- or -CO-), or a chain hydrocarbon group having 1 to 6 carbon atoms which may have a substituent and a alicyclic hydrocarbon group having 3 to 18 carbon atoms which may have a substituent. and a cycloaliphatic hydrocarbon group (-CH2- contained in the chain hydrocarbon group may be replaced with -O- or -CO-, and -CH2- contained in the alicyclic hydrocarbon group may be replaced with -O- or -CO-). It is preferably a chain hydrocarbon group having 1 to 8 carbon atoms which may have a substituent (-CH2- contained in the chain hydrocarbon group may be replaced with -O- or -CO-), an alicyclic hydrocarbon group having 3 to 12 carbon atoms which may have a substituent, or a group formed by combining a cycloaliphatic hydrocarbon group and a cycloaliphatic hydrocarbon group (-CH2- contained in the chain hydrocarbon group may be replaced with -O- or -CO-). A group formed by combining a chain hydrocarbon group having 1 to 6 carbon atoms with an alicyclic hydrocarbon group having 3 to 18 carbon atoms which may have a substituent (-CH2- contained in the chain hydrocarbon group may be replaced with -O- or -CO-), is more preferred, and examples thereof include a chain hydrocarbon group having 1 to 8 carbon atoms which may have a substituent (-CH2- contained in the chain hydrocarbon group may be replaced with -O- or -CO-), an alicyclic hydrocarbon group having 5 to 12 carbon atoms which may have a substituent, a chain hydrocarbon group having 1 to 6 carbon atoms and It is more preferable that the group is a group formed by combining an alicyclic hydrocarbon group having 5 to 12 carbon atoms which may have a substituent (-CH2- contained in the chain hydrocarbon group may be replaced with -O- or -CO-) or a group formed by combining an alicyclic hydrocarbon group having 5 to 12 carbon atoms which may have a substituent, a chain hydrocarbon group having 1 to 6 carbon atoms, and an alicyclic hydrocarbon group having 5 to 12 carbon atoms which may have a substituent (-CH2- contained in the chain hydrocarbon group may be replaced with -O- or -CO-).

[0141] R 2Examples of the fluorinated alkyl group having 1 to 8 carbon atoms in the formula (I) include a difluoromethyl group, a trifluoromethyl group, a 1,1-difluoroethyl group, a 2,2-difluoroethyl group, a 2,2,2-trifluoroethyl group, a perfluoroethyl group, a 1,1,2,2-tetrafluoropropyl group, a 1,1,2,2,3,3-hexafluoropropyl group, a perfluoroethylmethyl group, a 1-(trifluoromethyl)-1,2,2,2-tetrafluoroethyl group, a perfluoropropyl group, a 1,1,2,2-tetrafluorobutyl group, a 1,1,2,2,3,3-hexafluorobutyl group, a 1,1,2,2,3,3,4,4-octafluorobutyl group, a perfluorobutyl group, a 1,1-bis(trifluoro)methyl group, Examples of the fluorinated alkyl group include -2,2,2-trifluoroethyl group, 2-(perfluoropropyl)ethyl group, 1,1,2,2,3,3,4,4-octafluoropentyl group, perfluoropentyl group, 1,1,2,2,3,3,4,4,5,5-decafluoropentyl group, 1,1-bis(trifluoromethyl)-2,2,3,3,3-pentafluoropropyl group, perfluoropentyl group, 2-(perfluorobutyl)ethyl group, 1,1,2,2,3,3,4,4,5,5-decafluorohexyl group, 1,1,2,2,3,3,4,4,5,5,6,6-dodecafluorohexyl group, perfluoropentylmethyl group, perfluorohexyl group, perfluoroheptyl group, and perfluorooctyl group. The number of carbon atoms of the fluorinated alkyl group is preferably 1 to 6, more preferably 1 to 5, even more preferably 1 to 4, and even more preferably 1 to 3. R 3 The fluorinated alkyl group having 1 to 6 carbon atoms in R is as long as the upper limit of the carbon number allows. 2 The same examples of the fluorinated alkyl groups having 1 to 6 carbon atoms as those given as examples of the fluorinated alkyl groups above are also included. R 2 is R 3 When is a fluorinated alkyl group having 1 to 6 carbon atoms, it is preferably a fluorinated alkyl group having 1 to 6 carbon atoms, more preferably a fluorinated alkyl group having 1 to 3 carbon atoms, still more preferably a trifluoromethyl group, a perfluoroethyl group or a perfluoropropyl group, and even more preferably a trifluoromethyl group. R2 is R 3 When is a hydrogen atom, it is preferably a fluorinated alkyl group having 1 to 6 carbon atoms, more preferably a fluorinated alkyl group having 1 to 5 carbon atoms, and even more preferably a fluorinated alkyl group having 3 to 5 carbon atoms. R 3 L 1 When R is bonded to form an alicyclic hydrocarbon group having 3 to 12 carbon atoms, 3 L 1 Examples of the group formed by bonding with include groups represented by the following formulas: In the following formulas, * and ** represent bonding sites, and one of the two ** represents a bonding site with a hydroxy group and the other represents a bonding site with R 2 represents the binding site with L 1A , L 1 R is a part of a hydrocarbon group and represents a single bond or an alkanediyl group having 1 to 4 carbon atoms. 3 L 1 The alicyclic hydrocarbon group formed by bonding with the above preferably has 3 to 10 carbon atoms, more preferably 3 to 8 carbon atoms, and further preferably 3 to 6 carbon atoms. TIFF2025071809000102.tif25130R 3 is preferably a hydrogen atom or a fluorinated alkyl group having 1 to 3 carbon atoms. mi is preferably an integer of 1 to 3, more preferably 1 or 2, and even more preferably 1.

[0142] Examples of the structural unit (a4-A) include the following structural units. In the following structural units, R 1 and R 1 Specific examples of the structural unit (a4-A) include structural units in which a hydrogen atom corresponding to the following is replaced with a halogen atom, a haloalkyl group or an alkyl group. TIFF2025071809000103.tif227160

[0143] When the resin (A) or the like contains the structural unit (a4), the content thereof is preferably 1 to 20 mol %, more preferably 2 to 15 mol %, and even more preferably 3 to 10 mol %, based on all structural units in the resin (A) or the like.

[0144] <Structural unit (a5)> The non-leaving hydrocarbon group contained in the structural unit (a5) may be a group containing a linear, branched or cyclic hydrocarbon group. Among these, the structural unit (a5) is preferably a group containing an alicyclic hydrocarbon group. An example of the structural unit (a5) is a structural unit represented by the formula (a5-1). TIFF2025071809000104.tif3351[In formula (a5-1), R 51 represents a hydrogen atom or a methyl group. R 52 represents an alicyclic hydrocarbon group having 3 to 18 carbon atoms, and a hydrogen atom contained in the alicyclic hydrocarbon group may be substituted with an aliphatic hydrocarbon group having 1 to 8 carbon atoms. L 55 represents a single bond or a divalent saturated hydrocarbon group having 1 to 18 carbon atoms, and -CH2- contained in the saturated hydrocarbon group may be replaced with -O- or -CO-.]

[0145] R 52 The alicyclic hydrocarbon group in may be either monocyclic or polycyclic. Examples of the monocyclic alicyclic hydrocarbon group include a cyclopropyl group, a cyclobutyl group, a cyclopentyl group, and a cyclohexyl group. Examples of the polycyclic alicyclic hydrocarbon group include an adamantyl group, a norbornyl group, and the like. Examples of the aliphatic hydrocarbon group having 1 to 8 carbon atoms include alkyl groups such as a methyl group, an ethyl group, a propyl group, an isopropyl group, a butyl group, a sec-butyl group, a tert-butyl group, a pentyl group, a hexyl group, an octyl group, and a 2-ethylhexyl group. An example of the alicyclic hydrocarbon group having a substituent is a 3-methyladamantyl group. R 52is preferably an unsubstituted alicyclic hydrocarbon group having 3 to 18 carbon atoms, and more preferably an adamantyl group, a norbornyl group, or a cyclohexyl group. L 55 Examples of the divalent saturated hydrocarbon group in include a divalent chain saturated hydrocarbon group and a divalent alicyclic saturated hydrocarbon group, and a divalent chain saturated hydrocarbon group is preferred. Examples of the divalent chain saturated hydrocarbon group include alkanediyl groups such as a methylene group, an ethylene group, a propanediyl group, a butanediyl group, and a pentanediyl group. The divalent alicyclic saturated hydrocarbon group may be either monocyclic or polycyclic. Examples of the monocyclic alicyclic saturated hydrocarbon group include cycloalkanediyl groups such as cyclopentanediyl and cyclohexanediyl. Examples of the polycyclic divalent alicyclic saturated hydrocarbon group include adamantanediyl and norbornanediyl. L 55 Examples of the divalent saturated hydrocarbon group represented by formula (L1-1) to formula (L1-4) include groups represented by formula (L1-2) to (L1-4). In the following formulae, * and ** each represent a bonding site, and * represents a bonding site with an oxygen atom. TIFF2025071809000105.tif18164[In formula (L1-1), X x1 represents *-O-CO- or *-CO-O- (* represents L x1 ) which represents the binding site with L x1 represents a divalent aliphatic saturated hydrocarbon group having 1 to 16 carbon atoms. L x2 represents a single bond or a divalent aliphatic saturated hydrocarbon group having 1 to 15 carbon atoms. However, L x1 and L x2 The total number of carbon atoms is 16 or less. In formula (L1-2), L x3 represents a divalent aliphatic saturated hydrocarbon group having 1 to 17 carbon atoms. L x4 represents a single bond or a divalent aliphatic saturated hydrocarbon group having 1 to 16 carbon atoms. However, L x3 and L x4 The total number of carbon atoms is 17 or less. In formula (L1-3), L x5 represents a divalent aliphatic saturated hydrocarbon group having 1 to 15 carbon atoms. L x6 and L x7 each independently represents a single bond or a divalent aliphatic saturated hydrocarbon group having 1 to 14 carbon atoms. However, L x5 , L x6 and L x7 The total number of carbon atoms is 15 or less. In formula (L1-4), L x8 and L x9 represents a single bond or a divalent aliphatic saturated hydrocarbon group having 1 to 12 carbon atoms. W x1 represents a divalent alicyclic saturated hydrocarbon group having 3 to 15 carbon atoms. However, L x8 , L x9 and W x1 The total number of carbon atoms is 15 or less. L x1 is preferably a divalent aliphatic saturated hydrocarbon group having 1 to 8 carbon atoms, more preferably a methylene group or an ethylene group. L x2 is preferably a single bond or a divalent aliphatic saturated hydrocarbon group having 1 to 8 carbon atoms, and more preferably a single bond. L x3 is preferably a divalent aliphatic saturated hydrocarbon group having 1 to 8 carbon atoms. L x4 is preferably a single bond or a divalent aliphatic saturated hydrocarbon group having 1 to 8 carbon atoms. L x5 is preferably a divalent aliphatic saturated hydrocarbon group having 1 to 8 carbon atoms, more preferably a methylene group or an ethylene group. L x6 is preferably a single bond or a divalent aliphatic saturated hydrocarbon group having 1 to 8 carbon atoms, and more preferably a methylene group or an ethylene group. L x7is preferably a single bond or a divalent aliphatic saturated hydrocarbon group having 1 to 8 carbon atoms. L x8 is preferably a single bond or a divalent aliphatic saturated hydrocarbon group having 1 to 8 carbon atoms, and more preferably a single bond or a methylene group. L x9 is preferably a single bond or a divalent aliphatic saturated hydrocarbon group having 1 to 8 carbon atoms, and more preferably a single bond or a methylene group. W x1 is preferably a divalent alicyclic saturated hydrocarbon group having 3 to 10 carbon atoms, and more preferably a cyclohexanediyl group or an adamantanediyl group. Examples of the group represented by formula (L1-1) include the divalent groups shown below. TIFF2025071809000106.tif37147 Examples of the group represented by formula (L1-2) include the divalent groups shown below. TIFF2025071809000107.tif23130 Examples of the group represented by formula (L1-3) include the divalent groups shown below. TIFF2025071809000108.tif16147 Examples of the group represented by formula (L1-4) include the divalent groups shown below. TIFF2025071809000109.tif13168L 55 is preferably a single bond or a group represented by formula (L1-1).

[0146] The structural unit (a5-1) may be any of the structural units shown below and R in the structural unit (a5-1) in the structural unit shown below. 51 In the structural unit, a methyl group corresponding to the above formula is replaced with a hydrogen atom. TIFF2025071809000110.tif111150 When the resin (A) or the like contains the structural unit (a5), the content thereof is preferably from 1 to 30 mol %, more preferably from 2 to 20 mol %, and even more preferably from 3 to 15 mol %, based on all structural units in the resin (A) or the like.

[0147] <Structural unit (a6)> The structural unit (a6) is a structural unit having a -SO2- group, and preferably has the -SO2- group in a side chain. The structural unit having a -SO2- group may have a linear structure having a -SO2- group, may have a branched structure having a -SO2- group, or may have a cyclic structure (monocyclic and polycyclic structure) having a -SO2- group. A structural unit having a cyclic structure having a -SO2- group is preferred, and a structural unit having a cyclic structure (sultone ring) containing -SO2-O- is more preferred.

[0148] The sultone ring may be represented by the following formula (T 1 -1), formula (T 1 -2), formula (T 1 -3) and the formula (T 1 The bonding site can be any position. The sultone ring may be monocyclic, but is preferably polycyclic. A polycyclic sultone ring refers to a bridged ring containing -SO2-O- as an atomic group constituting the ring, and is represented by the formula (T 1 -1) and the formula (T 1 The sultone ring is represented by the formula (T 1 As in the ring represented by formula (2), the atomic group constituting the ring may further contain a heteroatom in addition to -SO2-O-. Examples of the heteroatom include an oxygen atom, a sulfur atom, or a nitrogen atom, and an oxygen atom is preferred. TIFF2025071809000111.tif2977

[0149] The sultone ring may have a substituent. Examples of the substituent include an alkyl group having 1 to 12 carbon atoms which may have a halogen atom or a hydroxy group, a halogen atom, a hydroxy group, a cyano group, an alkoxy group having 1 to 12 carbon atoms, an aryl group having 6 to 12 carbon atoms, an aralkyl group having 7 to 12 carbon atoms, a glycidyloxy group, an alkoxycarbonyl group having 2 to 12 carbon atoms, and an alkylcarbonyl group having 2 to 4 carbon atoms.

[0150] Examples of halogen atoms include fluorine, chlorine, bromine and iodine atoms. Examples of the alkyl group include a methyl group, an ethyl group, a propyl group, a butyl group, a pentyl group, a hexyl group, an octyl group, and a decyl group, and preferably an alkyl group having 1 to 6 carbon atoms, and more preferably a methyl group. Examples of the alkyl group having a halogen atom include a trifluoromethyl group, a perfluoroethyl group, a perfluoropropyl group, a perfluoroisopropyl group, a perfluorobutyl group, a perfluorosec-butyl group, a perfluorotert-butyl group, a perfluoropentyl group, a perfluorohexyl group, a trichloromethyl group, a tribromomethyl group, and a triiodomethyl group, and preferably a trifluoromethyl group. Examples of the alkyl group having a hydroxy group include a hydroxymethyl group and a 2-hydroxyethyl group. Examples of the alkoxy group include a methoxy group, an ethoxy group, a propoxy group, a butoxy group, a pentyloxy group, a hexyloxy group, a heptyloxy group, an octyloxy group, a decyloxy group, and a dodecyloxy group. Examples of the aryl group include a phenyl group, a naphthyl group, an anthryl group, a p-methylphenyl group, a p-tert-butylphenyl group, a p-adamantylphenyl group, a tolyl group, a xylyl group, a cumyl group, a mesityl group, a biphenyl group, a phenanthryl group, a 2,6-diethylphenyl group, and a 2-methyl-6-ethylphenyl group. Aralkyl groups include benzyl, phenethyl, phenylpropyl, naphthylmethyl and naphthylethyl groups. Examples of the alkoxycarbonyl group include groups in which an alkoxy group, such as a methoxycarbonyl group or an ethoxycarbonyl group, is bonded to a carbonyl group, and preferably, an alkoxycarbonyl group having 6 or less carbon atoms is used, and more preferably, a methoxycarbonyl group is used. Alkylcarbonyl groups include acetyl, propionyl and butyryl groups.

[0151] From the viewpoint of ease of production of the monomer from which the structural unit (a6) is derived, a sultone ring having no substituent is preferred. The sultone ring is preferably a ring represented by the following formula (T1'). TIFF2025071809000112.tif2665[In formula (T1'), X 11 represents an oxygen atom, a sulfur atom, or a methylene group. R 41 represents an alkyl group having 1 to 12 carbon atoms which may have a halogen atom or a hydroxy group, a halogen atom, a hydroxy group, a cyano group, an alkoxy group having 1 to 12 carbon atoms, an aryl group having 6 to 12 carbon atoms, an aralkyl group having 7 to 12 carbon atoms, a glycidyloxy group, an alkoxycarbonyl group having 2 to 12 carbon atoms, or an alkylcarbonyl group having 2 to 4 carbon atoms. ma represents an integer of 0 to 9. When ma is 2 or more, multiple R 41 may be the same or different. The binding site is at any position.] X 11 is preferably an oxygen atom or a methylene group, and more preferably a methylene group. R 41 Examples of the substituent include the same ones as the substituents on the sultone ring, and an alkyl group having 1 to 12 carbon atoms which may have a halogen atom or a hydroxyl group is preferred. ma is preferably 0 or 1, and more preferably 0.

[0152] Examples of the ring represented by formula (T1') include the following rings. The binding site may be any position. Among them, the binding site is preferably the 1st or 3rd position. TIFF2025071809000113.tif44148

[0153] The structural unit having a -SO2- group preferably further has a group derived from a polymerizable group, such as a vinyl group, an acryloyl group, a methacryloyl group, an acryloyloxy group, a methacryloyloxy group, an acryloylamino group, a methacryloylamino group, an acryloylthio group, or a methacryloylthio group. Among these, the monomer from which the structural unit (a6) is derived is preferably a monomer having an ethylenically unsaturated bond, and more preferably a (meth)acrylic monomer.

[0154] The structural unit (a6) is preferably a structural unit represented by the formula (a6-0). TIFF2025071809000114.tif4077[In formula (a6-0), R x represents an alkyl group having 1 to 6 carbon atoms which may have a halogen atom, a hydrogen atom, or a halogen atom. A xx is an oxygen atom, -N(R c )- or a sulfur atom. A x represents a single bond or a divalent saturated hydrocarbon group having 1 to 18 carbon atoms, and -CH- contained in the saturated hydrocarbon group is -O-, -CO- or -N(R d )- may also be replaced. X 11 represents an oxygen atom, a sulfur atom, or a methylene group. R 41 has the same meaning as above. ma represents an integer of 0 to 9. When ma is 2 or more, multiple R 41 may be the same or different. R c and R d each independently represents a hydrogen atom or an alkyl group having 1 to 6 carbon atoms.] R x Examples of the halogen atom include a fluorine atom, a chlorine atom, a bromine atom and an iodine atom. R x Examples of the alkyl group include a methyl group, an ethyl group, an n-propyl group, an isopropyl group, an n-butyl group, a sec-butyl group, a tert-butyl group, an n-pentyl group, and an n-hexyl group. An alkyl group having 1 to 4 carbon atoms is preferred, and a methyl group or an ethyl group is more preferred. R xExamples of the alkyl group having a halogen atom include a trifluoromethyl group, a perfluoroethyl group, a perfluoropropyl group, a perfluoroisopropyl group, a perfluorobutyl group, a perfluorosec-butyl group, a perfluorotert-butyl group, a perfluoropentyl group, a perfluorohexyl group, a trichloromethyl group, a tribromomethyl group, and a triiodomethyl group. R x is preferably a hydrogen atom or an alkyl group having 1 to 4 carbon atoms, more preferably a hydrogen atom, a methyl group, or an ethyl group, and even more preferably a hydrogen atom or a methyl group. A x Examples of the divalent saturated hydrocarbon group include a linear alkanediyl group, a branched alkanediyl group, and a monocyclic or polycyclic divalent alicyclic saturated hydrocarbon group, and may be a combination of two or more of these groups. Specifically, methylene group, ethylene group, propane-1,3-diyl group, propane-1,2-diyl group, butane-1,4-diyl group, pentane-1,5-diyl group, hexane-1,6-diyl group, heptane-1,7-diyl group, octane-1,8-diyl group, nonane-1,9-diyl group, decane-1,10-diyl group, undecane-1,11-diyl group, linear alkanediyl groups such as a dodecane-1,12-diyl group, a tridecane-1,13-diyl group, a tetradecane-1,14-diyl group, a pentadecane-1,15-diyl group, a hexadecane-1,16-diyl group, a heptadecane-1,17-diyl group, an ethane-1,1-diyl group, a propane-1,1-diyl group, and a propane-2,2-diyl group; branched alkanediyl groups such as butane-1,3-diyl, 2-methylpropane-1,3-diyl, 2-methylpropane-1,2-diyl, pentane-1,4-diyl, and 2-methylbutane-1,4-diyl; monocyclic divalent alicyclic saturated hydrocarbon groups such as cycloalkanediyl groups, such as cyclobutane-1,3-diyl, cyclopentane-1,3-diyl, cyclohexane-1,4-diyl, and cyclooctane-1,5-diyl; Examples of the polycyclic divalent alicyclic saturated hydrocarbon groups include norbornane-1,4-diyl group, norbornane-2,5-diyl group, adamantane-1,5-diyl group, and adamantane-2,6-diyl group. A x The bonding position of to the sultone ring may be any position, but is preferably the 1-position.

[0155] Examples of the structural unit (a6-0) include the following structural units. TIFF2025071809000115.tif93150

[0156] Of these, structural units represented by formulae (a6-1), (a6-2), (a6-6), (a6-7), (a6-8) and (a6-12) are preferred, and structural units represented by formulae (a6-1), (a6-2), (a6-7) and (a6-8) are more preferred. When the resin (A) or the like contains the structural unit (a6), the content thereof is preferably 1 to 50 mol %, more preferably 2 to 40 mol %, and even more preferably 3 to 30 mol %, based on all structural units in the resin (A) or the like.

[0157] <Structural unit (a7)> The resin (A) etc. may further contain a structural unit (hereinafter, sometimes referred to as "structural unit (a7)") that decomposes upon exposure to generate an acid other than the structural unit (I). Specific examples of the structural unit (a7) include structural units described in JP 2016-79235 A, and it is preferable that the structural unit (a7) is a structural unit having a sulfonate group or a carboxylate group and an organic cation in a side chain, or a structural unit having a sulfonio group and an organic anion in a side chain.

[0158] The structural unit having a sulfonate group or carboxylate group and an organic cation in the side chain is preferably a structural unit represented by formula (a7-A). TIFF2025071809000116.tif26123[In formula (a7-A), R a7represents a hydrogen atom, a halogen atom or an alkyl group having 1 to 6 carbon atoms which may have a halogen atom. X a71 is a single bond, *-O-**, *-CO-O-**, *-O-CO-O-**, *-CO-NR a71 -**, *-NR a71 -CO-O-**, *-O-CO-NR a71 -** or *-Ax-Ph-Ay-**. R a71 represents a hydrogen atom or an alkyl group having 1 to 6 carbon atoms. Ph represents a phenylene group which may have a substituent. Ax and Ay each independently represent one type of bond selected from the group consisting of a single bond, an ether bond, a thioether bond, an ester bond, an amide bond, and a carbonate bond. * and ** represent binding sites, * represents R a7 represents the bonding site with the carbon atom to which it is bonded. L a71 and L a72 each independently represents a hydrocarbon group having 1 to 24 carbon atoms which may have a substituent, and -CH2- contained in the hydrocarbon group may be replaced by -O-, -S-, -CO- or -SO2-. X a72 represents ***-CO-O-, ***-O-CO-, ***-O-CO-O-, ***-O-, and *** represents L a71 represents the binding site with na7 represents an integer of 0 to 2. When na7 is 2, the groups in the parentheses may be the same or different. RA - represents a sulfonate anion or a carboxyl anion. Z.A. + represents an organic cation.

[0159] R a7 Examples of the halogen atom and the alkyl group which may have a halogen atom in the formula (a1-0) to the formula (a1-2) include R a01 , R a4 and R a5Examples of the groups include the same groups as those exemplified in the above. R a7 is preferably a hydrogen atom or an alkyl group having 1 to 4 carbon atoms, more preferably a hydrogen atom or an alkyl group having 1 to 3 carbon atoms, still more preferably a hydrogen atom, a methyl group or an ethyl group, and even more preferably a hydrogen atom or a methyl group. R a71 Examples of the alkyl group having 1 to 6 carbon atoms in the formula include a methyl group, an ethyl group, an n-propyl group, an isopropyl group, an n-butyl group, a sec-butyl group, a tert-butyl group, a pentyl group, and a hexyl group.

[0160] X a71 is a group represented by *-Ax-Ph-Ay-**, it is preferably a linking group represented by the following formula (X10). TIFF2025071809000117.tif3251[In formula (X10), Ax is R a7 represents a bond type bonding to the carbon atom to which is bonded, and represents one or more bond types selected from the group consisting of a single bond, an ether bond, a thioether bond, an ester bond, a carbonate bond, and an amide bond. Ay is L a71 and represents one or more bond types selected from the group consisting of a single bond, an ether bond, a thioether bond, an ester bond, a carbonate bond, and an amide bond. Rx represents a halogen atom, a hydroxy group, a fluorinated alkyl group having 1 to 6 carbon atoms, an alkyl group having 1 to 18 carbon atoms, or an alkoxy group having 1 to 6 carbon atoms. mx represents an integer of 0 to 4, and when mx is an integer of 2 or more, multiple Rx's may be the same or different. When either Ax or Ay is a single bond, the other is preferably one or more bonds selected from the group consisting of an ether bond, a thioether bond, an ester bond, a carbonate ester bond, and an amide bond. When either Ax or Ay is an amide bond, -CO-NR a71 A bond represented by - is preferred. The bonding position of Ay in the phenylene group is preferably the m-position or p-position relative to the bonding position of Ax, and more preferably the p-position. Among these, Rx is preferably a fluorine atom, an iodine atom, a trifluoromethyl group, a methyl group or an ethyl group. mx is preferably 0, 1 or 2. X a71 Examples of the substituent include a single bond and a substituent represented by the following formula (X 10 -1)~Formula(X 10 -10) is a group represented by * -R a7 represents the bonding site with the carbon atom to which L is bonded. a71 It represents the binding site with X 20 is -O- or -NR a71 - represents. TIFF2025071809000118.tif43160 expression (X 10 -1)~Formula(X 10 Specific examples of the group represented by -10) include the following groups. TIFF2025071809000119.tif87161Among them, X a71 is a single bond and the formula (X 10 -1'), expression (X 10 -3')~expression(X 10 -9'), which is preferably a single bond or a group represented by the formula (X 10 -1'), expression (X 10 -4'), expression (X 10 -5'), expression (X 10 -6') and formula (X 10 -9'), a single bond, a group represented by the formula (X 10 -1'), a group represented by the formula (X 10 -5'), a group represented by the formula (X 10 -6') or formula (X 10 -9') is more preferable.

[0161] L a71 The hydrocarbon group is a group formed by removing one hydrogen atom from a chain hydrocarbon group, an alicyclic hydrocarbon group, an aromatic hydrocarbon group, or a group combining two or more of these groups, to form X.a71 and X a72 Also, L a72 The hydrocarbon group is a group formed by removing one hydrogen atom from a chain hydrocarbon group, an alicyclic hydrocarbon group, an aromatic hydrocarbon group, or a group combining two or more of these groups, to form X. a72 and R.A. - Examples of such groups include groups that bond to the L a71 and L a72 Examples of the chain hydrocarbon group include a group in which one hydrogen atom has been removed from an alkyl group or an alkenyl group. The alkyl group may be linear or branched, and specific examples thereof include a methyl group, an ethyl group, an n-propyl group, an isopropyl group, an n-butyl group, a sec-butyl group, an isobutyl group, a tert-butyl group, a pentyl group, a hexyl group, a heptyl group, an octyl group, a nonyl group, a decyl group, an undecyl group, a dodecyl group, a tridecyl group, a tetradecyl group, a pentanedecyl group, and a heptadecyl group. Examples of the alkenyl group include an ethenyl group, a propenyl group, an isopropenyl group, a butenyl group, an isobutenyl group, a tert-butenyl group, a pentenyl group, a hexenyl group, a heptenyl group, an octenyl group, an isooctenyl group, and a nonenyl group. The chain hydrocarbon group preferably has 1 to 20 carbon atoms, more preferably 1 to 18 carbon atoms, and even more preferably 1 to 10 carbon atoms. L a71 and L a72 Examples of the alicyclic hydrocarbon group include a group in which one hydrogen atom has been removed from a monocyclic or polycyclic cycloalkyl group. Examples of the monocyclic cycloalkyl group include a cyclobutyl group, a cycloheptyl group, a cyclohexyl group, a cyclopentyl group, and a cyclooctyl group. L a71 and L a72Examples of the polycyclic cycloalkyl group include a cycloalkyl group having a bridged structure, a cycloalkyl group in which two or more rings are condensed, or a cycloalkyl group in which two rings are bonded by a spiro bond. Examples of the cycloalkyl group having a bridged structure include a norbornyl group and an adamantyl group. Examples of the cycloalkyl group in which two or more rings are condensed include a bicyclo[4,4,0]decane group and a steroid group (steroid skeleton). Examples of the cycloalkyl group in which two rings are bonded by a spiro bond include a spirocyclic cycloalkyl group in which one cycloalkyl group selected from the group consisting of a cyclopentyl group, a cyclohexyl group, a norbornyl group, and an adamantyl group is bonded by a spiro bond to a cycloalkyl group having 5 to 8 carbon atoms. A double bond may be formed between two carbon atoms contained in the alicyclic hydrocarbon group. More specifically, examples of the alicyclic hydrocarbon group include the following formula: TIFF2025071809000120.tif28158When the alicyclic hydrocarbon group is a monocyclic cycloalkyl group, the alicyclic hydrocarbon group preferably has 3 to 18 carbon atoms, more preferably 3 to 12, and even more preferably 3 to 8. When the alicyclic hydrocarbon group is a polycyclic cycloalkyl group, the alicyclic hydrocarbon group preferably has 6 to 18 carbon atoms, and more preferably 7 to 12. L a71 and L a72 The aromatic hydrocarbon group may be a group in which one hydrogen atom has been removed from an aryl group. Examples of the aryl group include a phenyl group, a naphthyl group, an anthryl group, a biphenyl group, and a fluorenyl group. The number of carbon atoms in the aromatic hydrocarbon group is preferably 5 to 14, more preferably 6 to 14, and further preferably 6 to 10. L a71 and L a72 When --CH2-- in the hydrocarbon group is replaced with --O--, --CO--, --S-- or --SO2--, the number of carbon atoms before the replacement is regarded as the number of carbon atoms in the hydrocarbon group. L a71 and L a72Among these hydrocarbon groups, examples of groups in which -CH2- in a chain hydrocarbon group is replaced with -O-, -CO-, -S- or -SO2- include a hydroxy group, a carboxy group, a thiol group, a carbonyl group, an oxy group, a thio group, a sulfonyl group, an alkoxy group, an alkoxycarbonyl group, an alkylcarbonyl group, an alkylcarbonyloxy group, an alkoxycarbonyloxy group, an alkanediyloxy group, an alkanediyloxycarbonyl group, an alkanediylcarbonyl group, an alkanediylcarbonyloxy group, etc. Examples of these replaced groups include the same groups as those exemplified in this specification, within the range permitted by the upper limit of the number of carbon atoms. L a71 and L a72 Among the above hydrocarbon groups, examples of groups in which -CH2- in an alicyclic hydrocarbon group is replaced with -O-, -CO-, -S- or -SO2- include groups containing a cyclic ether, cyclic ketone, cyclic ester (lactone), cyclic thioether, cyclic acetal, and cyclic sulfonate ester (sultone) structure. Specific examples include alicyclic hydrocarbon groups represented by the following formula. The bonding position of the alicyclic hydrocarbon groups listed in the following formula may be any position. TIFF2025071809000121.tif46146L a71 and L a72 Among these hydrocarbon groups, -CH2- contained in the aromatic hydrocarbon group may be replaced by -O- or -S-, and examples of the group in which -CH2- is replaced by -O- or -S- include groups derived from a furan ring or a thiophene ring, respectively. L a71 and L a72 Examples of the group in which two or more of the chain hydrocarbon group, alicyclic hydrocarbon group, and aromatic hydrocarbon group are combined include a group in which the chain hydrocarbon group and the alicyclic hydrocarbon group are combined, a group in which the chain hydrocarbon group and the aromatic hydrocarbon group are combined, a group in which the alicyclic hydrocarbon group and the aromatic hydrocarbon group are combined, and a group in which the chain hydrocarbon group, the alicyclic hydrocarbon group and the aromatic hydrocarbon group are combined. The group in which the alicyclic hydrocarbon group and the aromatic hydrocarbon group are combined may be a condensed ring. La71 and L a72 The substituents which the hydrocarbon group may have include a halogen atom, a cyano group, and a nitro group. Examples of the halogen atom include a fluorine atom, a chlorine atom, a bromine atom, and an iodine atom. L a71 and L a72 When L is a group in which an alicyclic hydrocarbon group or an aromatic hydrocarbon group is combined with a chain hydrocarbon group, the chain hydrocarbon group may be regarded as a substituent that the alicyclic hydrocarbon group or the aromatic hydrocarbon group has. a71 and L a72 The -CH2- of the chain hydrocarbon group contained in the hydrocarbon group is replaced with -O-, -CO-, -S- or -SO2-, thereby forming L a71 and L a72 The hydrocarbon group may substantially have a substituent such as a hydroxy group, a carboxy group, an alkoxy group, an alkylcarbonyl group, an alkoxycarbonyl group, an alkylcarbonyloxy group, a thiol group, or a sulfonyl group. na7 is preferably 0 or 1. ZA in formula (a7-A) + Examples of the cation include the same as the cation in the salt represented by formula (B1) etc.

[0162] In formula (a7-A), L a71 and L a72 When the hydrocarbon group is a saturated hydrocarbon group, in the formula (a7-B) described later, b7 The divalent linking group may include the same groups as those exemplified above. Examples of the structural unit represented by formula (a7-A) include a structural unit represented by formula (a7-A1). TIFF2025071809000122.tif30138[In formula (a7-A1), R a7 , X a71 , L a71 , X a72 , na7, R.A. - and Z.A. + has the same meaning as above. z7 represents an integer of 0 to 6. Qa7 , Q b7 , R z71 and R z72 each independently represents a hydrogen atom, a fluorine atom, a perfluoroalkyl group having 1 to 6 carbon atoms, or an alkyl group having 1 to 6 carbon atoms; when z7 is 2 or more, z71 and R z72 may be the same or different.] Q a7 , Q b7 , R z71 and R z72 As the perfluoroalkyl group having 1 to 6 carbon atoms or the alkyl group having 1 to 6 carbon atoms in R a7 Examples of the groups include the same groups as those exemplified in the above.

[0163] Examples of the structural unit represented by formula (a7-A) include the following structural units, R a7 Examples of the structural units include those in which the group corresponding to the methyl group in the above formula (I) is replaced with a hydrogen atom, a halogen atom (e.g., a fluorine atom) or an alkyl group having 1 to 6 carbon atoms which may have a halogen atom (e.g., a trifluoromethyl group, etc.), and the structural units described in WO 2012 / 050015. + represents an organic cation. TIFF2025071809000123.tif179162

[0164] TIFF2025071809000124.tif191158

[0165] The structural unit having a sulfonio group and an organic anion on the side chain is preferably a structural unit represented by formula (a7-B). TIFF2025071809000125.tif28104[In formula (a7-B), R a7 represents a hydrogen atom, a halogen atom or an alkyl group having 1 to 6 carbon atoms which may have a halogen atom. A b7 represents a single bond or a divalent linking group. R b71 represents a divalent aromatic hydrocarbon group having 6 to 18 carbon atoms which may have a substituent. R b72 and R b73 each independently represents a hydrocarbon group having 1 to 18 carbon atoms which may have a substituent; R b72 and R b73 may be bonded to each other to form a ring together with the sulfur atom to which they are attached. A - represents an organic anion. R a7 Examples of the halogen atom and the alkyl group which may have a halogen atom in the formula (a7-A) include the same halogen atom and the alkyl group which may have a halogen atom as in the formula (a7-A). R b71 Examples of the divalent aromatic hydrocarbon group having 6 to 18 carbon atoms represented by the formula (I) include a phenylene group and a naphthylene group. R b72 and R b73 Examples of the hydrocarbon group represented by the formula (I) include an alkyl group, an alicyclic hydrocarbon group, an aromatic hydrocarbon group, and a group formed by combining these groups. Examples of the alkyl group, alicyclic hydrocarbon group, aromatic hydrocarbon group, and groups formed by combining these groups include the same as those described above. A b7 Examples of the divalent linking group represented by the formula (I) include divalent saturated hydrocarbon groups having 1 to 18 carbon atoms, and -CH2- contained in the divalent saturated hydrocarbon group may be replaced by -O-, -S- or -CO-. Examples of the divalent saturated hydrocarbon group include divalent chain saturated hydrocarbon groups such as linear or branched alkanediyl groups, and monocyclic or polycyclic divalent alicyclic saturated hydrocarbon groups, and combinations of these are also possible. Specifically, straight-chain alkanediyl groups such as methylene group, ethylene group, propane-1,3-diyl group, propane-1,2-diyl group, butane-1,4-diyl group, pentane-1,5-diyl group, hexane-1,6-diyl group, heptane-1,7-diyl group, octane-1,8-diyl group, nonane-1,9-diyl group, decane-1,10-diyl group, undecane-1,11-diyl group, and dodecane-1,12-diyl group; divalent monocyclic alicyclic saturated hydrocarbon groups such as monocyclic cycloalkanediyl groups, such as cyclobutane-1,3-diyl group, cyclopentane-1,3-diyl group, cyclohexane-1,4-diyl group, and cyclooctane-1,5-diyl group; and divalent polycyclic alicyclic saturated hydrocarbon groups, such as polycyclic cycloalkanediyl groups, such as norbornane-1,4-diyl group, norbornane-2,5-diyl group, adamantane-1,5-diyl group, and adamantane-2,6-diyl group. Examples of saturated hydrocarbon groups in which -CH2- has been replaced with -O-, -S-, or -CO- include the following divalent groups. However, the number of carbon atoms before the -CH2- in the saturated hydrocarbon group is replaced with -O-, -S-, or -CO- is 17 or less. In the following formulas, * and ** represent binding sites, * represents R b71 It represents the binding site with TIFF2025071809000126.tif123161[where, X 3 represents a divalent saturated hydrocarbon group having 1 to 16 carbon atoms. X 4 represents a divalent saturated hydrocarbon group having 1 to 15 carbon atoms. X 5 represents a divalent saturated hydrocarbon group having 1 to 13 carbon atoms. X 6 represents a divalent saturated hydrocarbon group having 1 to 14 carbon atoms. X 7 represents a trivalent saturated hydrocarbon group having 1 to 14 carbon atoms. X 8represents a divalent saturated hydrocarbon group having 1 to 13 carbon atoms.

[0166] The structural unit containing a cation in formula (a7-B) includes the structural units represented by the following formula: a7 Examples of such structural units include those in which a group corresponding to the methyl group in the above formula (I) is replaced with a hydrogen atom, a halogen atom (e.g., a fluorine atom), or an alkyl group having 1 to 6 carbon atoms which may have a halogen atom (e.g., a trifluoromethyl group, etc.). JPEG2025071809000127.jpg72164

[0167] A - Examples of the organic anion represented by the formula (I) include a sulfonate anion, a sulfonylimide anion, a sulfonylmethide anion, and a carboxylate anion. - The organic anion represented by the formula (I) is preferably a sulfonate anion, and the sulfonate anion is more preferably the same as the anion exemplified for the acid generator (B). Examples of the sulfonylimide anion, sulfonylmethide anion, and carboxylate anion include the same anions exemplified for the acid generator (B).

[0168] Examples of the structural unit represented by formula (a7-B) include structural units represented below. TIFF2025071809000128.tif95157 When the resin (A) or the like contains the structural unit (a7), the structural unit (a7) may be contained alone or in combination of two or more kinds. The total content of the structural unit (a7) is preferably 1 to 30 mol%, more preferably 1 to 25 mol%, even more preferably 2 to 20 mol%, still more preferably 3 to 15 mol%, and even more preferably 3 to 10 mol%, based on the total structural units of the resin (A) or the like.

[0169] The resin (A) etc. is preferably a resin containing the structural unit (a1). In particular, the resin (Ap) is more preferably a resin consisting of the structural unit (IP), the structural unit (a1) and the structural unit (s), that is, a copolymer of the salt (I), the monomer (a1) and the monomer (s). The resin (A) not containing the structural unit (IP) is preferably a resin consisting of the structural unit (a1) and the structural unit (s), that is, a copolymer of the monomer (a1) and the monomer (s). The structural unit (a1) is preferably at least one selected from the group consisting of the structural unit (a1-0), the structural unit (a1-1), the structural unit (a1-2) (preferably the structural unit having a cyclohexyl group or a cyclopentyl group), the structural unit represented by formula (a1-4), the structural unit represented by formula (a1-5), and the structural unit represented by formula (a1-6), more preferably at least two, and even more preferably at least two selected from the group consisting of the structural unit (a1-1) and the structural unit (a1-2). The structural unit (s) is preferably at least one selected from the group consisting of the structural unit (a2) and the structural unit (a3). The structural unit (a2) is preferably the structural unit (a2-C) or the structural unit (a2-A). The structural unit (a3) ​​is preferably at least one selected from the group consisting of the structural unit represented by the formula (a3-1), the structural unit represented by the formula (a3-2), and the structural unit represented by the formula (a3-4).

[0170] Each structural unit constituting the resin (A) may be used alone or in combination of two or more, and can be produced by a known polymerization method (for example, radical polymerization method) using a monomer that leads to these structural units. The content of each structural unit contained in the resin (A) can be adjusted by the amount of monomer used for polymerization. The weight average molecular weight of the resin (Ap) and the resin (A) is preferably 2,000 or more (more preferably 2,500 or more, even more preferably 3,000 or more) and 50,000 or less (more preferably 30,000 or less, even more preferably 15,000 or less), but may contain an oligomer having a weight average molecular weight smaller than this. In this specification, the weight average molecular weight is a value determined by gel permeation chromatography under the conditions described in the Examples. The structural unit (IP) may constitute a dimer, a trimer, or a compound or oligomer having a weight average molecular weight of less than 2,000.

[0171] [Sulfonic acid generator] The sulfonic acid generator of the present invention is an acid generator containing a sulfonate (I) and / or a structural unit (IP). The structural unit (IP) can be contained as a compound or resin (Ap) in which a plurality of units are polymerized. In the acid generator, one type of sulfonate (I) may be used alone, or two or more types may be used in combination. One type of compound or resin containing the structural unit (IP) may be used alone, or two or more types may be used in combination. The acid generator of the present invention may contain both the sulfonate (I) and the structural unit (IP). The sulfonic acid generator of the present invention may contain an acid generator known in the resist field (hereinafter, may be referred to as "acid generator (B)", "compound (B)" or "second acid generator") in addition to the sulfonate (I) and / or the structural unit (IP). The acid generator (B) may be used alone or in combination of two or more kinds.

[0172] [Resist Composition] The resist composition of the present invention contains the sulfonic acid generator of the present invention. The resist composition of the present invention may contain an acid generator (B) that does not contain the sulfonic acid generator of the present invention. The resist composition of the present invention may contain a resin (Ap) and a sulfonate (I) as an acid generator. The resist composition of the present invention may further contain a resin. In this case, the resist composition of the present invention may contain a resin (Ap) containing a structural unit represented by formula (IP) and a sulfonic acid generator. The resist composition of the present invention may also contain a resin (A) containing a structural unit (a1) having an acid labile group, and the resin (A) containing a structural unit (a1) having an acid labile group may be a resin (Ap) containing both a structural unit represented by formula (IP) and a structural unit (a1) having an acid labile group. The resist composition of the present invention may also contain a resin containing a structural unit represented by formula (a2-A), and the resin containing a structural unit represented by formula (a2-A) may be a resin (A) or a resin (Ap), or may be a resin other than the resin (A) and the like that is composed of a structural unit that does not contain an acid labile group (hereinafter, sometimes referred to as "resin (AX)"). The resist composition of the present invention preferably further contains a resin. The resin preferably contains a resin (A) that contains a structural unit (a1) having an acid labile group. That is, (a) a resin (A) containing a sulfonate (I) and a structural unit (a1) having an acid labile group, (b) a resin (Ap) containing a structural unit (IP) and a structural unit (a1) having an acid labile group; (c) It is more preferable to include a resin (Ap) containing the structural unit (IP) and a resin (A) containing a structural unit (a1) having an acid labile group. Among them, a resist composition containing the above (b) is preferable. The resist composition of the present invention may contain two or more kinds of resins (A) and / or resins (Ap). The above (b) and (c) may further contain a sulfonate (I). The resist composition of the present invention preferably further contains a quencher (hereinafter sometimes referred to as "quencher (C)") and / or a solvent (hereinafter sometimes referred to as "solvent (E)"). The resist composition of the present invention may further contain a resin other than the above-mentioned resin (A) and the like.

[0173] <Sulfonic acid generator> In the resist composition of the present invention, the content of the sulfonate (I) is preferably from 0.1 to 35 mass%, more preferably from 0.5 to 30 mass%, and even more preferably from 1 to 25 mass%, based on the solids content of the resist composition. The content of the resin (Ap) of the present invention is preferably from 50% by mass to 99% by mass, more preferably from 60% by mass to 99% by mass, even more preferably from 70% by mass to 99% by mass, still more preferably from 75% by mass to 99% by mass, and even more preferably from 80% by mass to 99% by mass, relative to the solid content of the resist composition.

[0174] <Resins other than Resin (A)> The resist composition of the present invention may contain a resin other than the resin (Ap) and the resin (A). Examples of the resin other than the resin (Ap) and the resin (A) include a resin (AX) having the same structural units as the resin (A) except that it does not contain the structural unit (a1) in the above-mentioned resin (A), and a resin containing the structural unit (a4) and / or the structural unit (a5) (however, it does not contain the structural unit (IP) and the structural unit (a1). Hereinafter, this may be referred to as "resin (X)"). Resin (AX) may be a resin containing structural unit (a2), and preferably a resin containing structural unit (a2-A). In resin (AX), the content of structural unit (a2-A) is preferably 5 mol% or more, more preferably 10 mol% or more, and even more preferably 15 mol% or more, based on the total of all structural units of resin (AX). Also, it is preferably 80 mol% or less, and more preferably 70 mol% or less. Examples of structural units that may be further contained in the resin (X) include the structural unit (a2), the structural unit (a3), and structural units derived from other known monomers. Among these, the resin (X) is preferably a resin consisting only of the structural unit (a4) and / or the structural unit (a5), and more preferably a resin consisting only of the structural unit (a4). When the resin (X) contains the structural unit (a4), the content of the structural unit (a4) in the resin (X) is 20 mol% or more, preferably 30 mol% or more, more preferably 40 mol% or more, and even more preferably 45 mol% or more, based on the total of all structural units in the resin (X). Also, it is 100 mol% or less, preferably 80 mol% or less, more preferably 70 mol% or less, even more preferably 60 mol% or less, and even more preferably 55 mol% or less. Specifically, it is 20 to 100 mol%, preferably 20 to 80 mol%, more preferably 30 to 70 mol%, even more preferably 40 to 60 mol%, and even more preferably 45 to 55 mol%. When the resin (X) contains the structural unit (a5), the content of the structural unit (a5) in the total of all structural units in the resin (X) is 20 mol% or more, preferably 30 mol% or more, more preferably 40 mol% or more, and even more preferably 45 mol% or more. Also, it may be 100 mol% or less, preferably 80 mol% or less, more preferably 70 mol% or less, even more preferably 60 mol% or less, and even more preferably 55 mol% or less. Specifically, it may be 20 to 100 mol%, preferably 20 to 80 mol%, more preferably 30 to 70 mol%, even more preferably 40 to 60 mol%, and even more preferably 45 to 55 mol%. Also, when the resin (X) contains the structural unit (a4) and the structural unit (a5), the total content of the structural unit (a4) and the structural unit (a5) may be 40 mol% or more, preferably 60 mol% or more, more preferably 70 mol% or more, and even more preferably 80 mol% or more, based on the total of all the structural units of the resin (X). Furthermore, it may be 100 mol% or less. Specifically, it may be 40 to 100 mol%, preferably 60 to 100 mol%, more preferably 70 to 100 mol%, and even more preferably 80 to 100 mol%.

[0175] Each structural unit constituting the resin (AX) and the resin (X) may be used alone or in combination of two or more, and can be produced by a known polymerization method (for example, radical polymerization method) using a monomer that derives these structural units. The content of each structural unit contained in the resin (AX) and the resin (X) can be adjusted by the amount of the monomer used for polymerization. The weight average molecular weight of resin (AX) and resin (X) is preferably 6,000 or more (more preferably 7,000 or more) and 80,000 or less (more preferably 60,000 or less), but may contain oligomers having a lower weight average molecular weight than this. The method for measuring the weight average molecular weight of resin (AX) and resin (X) is the same as that for resin (A) and the like.

[0176] When the resist composition of the present invention contains resin (X), the content thereof is preferably 1 to 60 parts by mass, more preferably 1 to 50 parts by mass, even more preferably 1 to 40 parts by mass, still more preferably 1 to 30 parts by mass, and particularly preferably 1 to 8 parts by mass, relative to 100 parts by mass of resin (A) etc.

[0177] The total content of the resin (A) and the resin (Ap) in the resist composition is preferably 60% by mass or more and 99% by mass or less, more preferably 70% by mass or more and 99% by mass or less, even more preferably 80% by mass or more and 99% by mass or less, and even more preferably 90% by mass or more and 99% by mass or less, based on the solid content of the resist composition. The total content of the resin (A) and the resin (Ap) in the resist composition is preferably 60% by mass or more and 99% by mass or less, more preferably 70% by mass or more and 99% by mass or less, even more preferably 80% by mass or more and 99% by mass or less, and even more preferably 90% by mass or more and 99% by mass or less. When a resin other than the resin (A) is contained, the total content of the resin (A) and the resin other than the resin (A) is preferably 60% by mass or more and 99% by mass or less, more preferably 70% by mass or more and 99% by mass or less, even more preferably 80% by mass or more and 99% by mass or less, and even more preferably 90% by mass or more and 99% by mass or less, based on the solid content of the resist composition. The solid content of the resist composition and the resin content therewith can be measured by known analytical means such as liquid chromatography or gas chromatography.

[0178] <Acid generator> The acid generator contained in the resist composition of the present invention may be either an acid generator containing only the sulfonate (I) and / or the structural unit (IP), or an acid generator containing the sulfonate (I) and / or the structural unit (IP) and an acid generator (B) known in the resist field. The acid generators used in the resist composition of the present invention may each be used alone or in combination of two or more kinds.

[0179] The acid generator (B) may be either a nonionic compound or an ionic compound. Examples of nonionic compounds include sulfonate esters (e.g., 2-nitrobenzyl ester, aromatic sulfonate, oxime sulfonate, N-sulfonyloxyimide, sulfonyloxyketone, diazonaphthoquinone 4-sulfonate), sulfones (e.g., disulfone, ketosulfone, sulfonyldiazomethane), and the like. Examples of ionic compounds include onium salts containing onium cations (e.g., diazonium salts, phosphonium salts, sulfonium salts, iodonium salts). Examples of anions of onium salts include sulfonate anion, benzenesulfonyl anion, sulfonylimide anion, sulfonylmethide anion, and carboxylate anion. The acid generator (B) may be a structural unit having an acid generating function, for example, a resin having the above-mentioned structural unit (a7).

[0180] As the acid generator (B), compounds that generate acid by radiation, such as those described in JP-A-63-26653, JP-A-55-164824, JP-A-62-69263, JP-A-63-146038, JP-A-63-163452, JP-A-62-153853, JP-A-63-146029, U.S. Pat. No. 3,779,778, U.S. Pat. No. 3,849,137, German Patent No. 3914407, and European Patent No. 126,712, can be used. Compounds produced by known methods can also be used. The acid generator (B) can be used alone or in combination of two or more. The acid generator (B) may also be an acid generator having an acid labile group. For example, the compound or resin serving as the acid generator may contain a partial structure that becomes an acid labile group, and the acid labile group preferably contains the above-mentioned group (1) or group (2). When the resist composition of the present invention contains a compound having an acid labile group, it does not need to contain a resin that contains a structural unit having an acid labile group.

[0181] A preferred embodiment of the acid generator (B) is a salt represented by formula (B1) (hereinafter, sometimes referred to as "acid generator (B1)"). TIFF2025071809000129.tif1391 [In formula (B1), L b1 represents a single bond or an (nb1+1)-valent hydrocarbon group which may have a substituent, and -CH2- contained in the hydrocarbon group may be replaced by -O-, -S-, -CO- or -SO2-. L b2 represents a single bond or a divalent hydrocarbon group having 1 to 24 carbon atoms which may have a substituent, and -CH2- contained in the hydrocarbon group may be replaced by -O-, -S-, -CO- or -SO2-. Y b1 represents a methyl group which may have a substituent or a cyclic hydrocarbon group having 3 to 24 carbon atoms which may have a substituent, and -CH2- contained in the cyclic hydrocarbon group may be replaced by -O-, -S-, -SO2- or -CO-. nb1 represents an integer of 1 to 6. When nb1 is 2 or more, the groups in the multiple parentheses may be the same or different. Z1 + represents an organic cation. L b1 The (nb1+1)-valent hydrocarbon group is a monovalent chain hydrocarbon group, a monovalent alicyclic hydrocarbon group, a monovalent aromatic hydrocarbon group, or a monovalent group that is a combination of two or more of these groups, from which nb1 hydrogen atoms have been removed to form one or more L b2The hydrocarbon group preferably has 1 to 48 carbon atoms, more preferably 1 to 42 carbon atoms, even more preferably 1 to 36 carbon atoms, even more preferably 1 to 30 carbon atoms, and even more preferably 1 to 24 carbon atoms. Examples of the chain hydrocarbon group include a group in which nb1 hydrogen atoms have been removed from an alkyl group or an alkenyl group. The alkyl group may be linear or branched, and specific examples thereof include a methyl group, an ethyl group, an n-propyl group, an isopropyl group, an n-butyl group, a sec-butyl group, an isobutyl group, a tert-butyl group, a heptyl group, a hexyl group, a heptyl group, an octyl group, a nonyl group, a decyl group, an undecyl group, a dodecyl group, a tridecyl group, a tetradecyl group, a pentanedecyl group, and a heptadecyl group. Examples of the alkenyl group include an ethenyl group, a propenyl group, an isopropenyl group, a butenyl group, an isobutenyl group, a tert-butenyl group, a pentenyl group, a hexenyl group, a heptenyl group, an octenyl group, an isooctenyl group, and a nonenyl group. The number of carbon atoms in the chain hydrocarbon group is preferably 1 to 36, more preferably 1 to 24, even more preferably 1 to 20, still more preferably 1 to 18, even more preferably 1 to 12, and even more preferably 1 to 10. Examples of the alicyclic hydrocarbon group include a group in which nb1 hydrogen atoms have been removed from a monocyclic or polycyclic cycloalkyl group. Examples of the monocyclic cycloalkyl group include a cyclobutyl group, a cyclopentyl group, a cyclohexyl group, a cycloheptyl group, and a cyclooctyl group. Examples of polycyclic cycloalkyl groups include cycloalkyl groups having a bridged structure, cycloalkyl groups in which two or more rings are condensed, or cycloalkyl groups in which two rings are bonded by a spiro bond. Examples of cycloalkyl groups having a bridged structure include a norbornyl group and an adamantyl group. Examples of cycloalkyl groups in which two or more rings are condensed include a bicyclo[4,4,0]decane group and a steroid group (steroid skeleton). Examples of cycloalkyl groups in which two rings are bonded by a spiro bond include spirocyclic cycloalkyl groups in which one cycloalkyl group selected from the group consisting of a cyclopentyl group, a cyclohexyl group, a norbornyl group, and an adamantyl group is bonded by a spiro bond to a cycloalkyl group having 5 to 8 carbon atoms. A double bond may be formed between two carbon atoms contained in the alicyclic hydrocarbon group. More specifically, alicyclic hydrocarbon groups represented by the following formulas are included. TIFF2025071809000130.tif26168When the alicyclic hydrocarbon group is a monocyclic cycloalkyl group, the number of carbon atoms in the alicyclic hydrocarbon group is preferably 3 to 24, more preferably 3 to 20, even more preferably 3 to 18, even more preferably 3 to 12, even more preferably 3 to 10, and even more preferably 3 to 8.When the alicyclic hydrocarbon group is a polycyclic cycloalkyl group, the number of carbon atoms in the alicyclic hydrocarbon group is preferably 6 to 24, more preferably 6 to 20, even more preferably 6 to 18, even more preferably 6 to 12, and even more preferably 7 to 12. Examples of the aromatic hydrocarbon group include groups in which nb1 hydrogen atoms have been removed from an aryl group. Examples of the aryl group include a phenyl group, a naphthyl group, an anthryl group, a biphenyl group, and a fluorenyl group. More specifically, examples of the aromatic hydrocarbon group include the aromatic hydrocarbon groups represented by the following formula: TIFF2025071809000131.tif1384 The number of carbon atoms in the aromatic hydrocarbon group is preferably 4 to 24, more preferably 4 to 20, even more preferably 4 to 18, even more preferably 5 to 14, even more preferably 5 to 10, and even more preferably 6 to 10. L b1 When --CH2-- in the hydrocarbon group is replaced with --O--, --CO--, --S-- or --SO2--, the number of carbon atoms before the replacement is regarded as the number of carbon atoms in the hydrocarbon group. L b1 Among the hydrocarbon groups in which -CH2- in a chain hydrocarbon group is replaced by -O-, -CO-, -S- or -SO2-, there may be mentioned a hydroxy group (a group in which -CH2- in a methyl group is replaced by -O-), a carboxy group (a group in which -CH2-CH2- in an ethyl group is replaced by -O-CO-), a carbonyl group (a group in which -CH2- in a methylene group is replaced by -CO-), an oxy group (a group in which -CH2- in a methylene group is replaced by -O-), an alkoxy group (a group in which -CH2- at any position in an alkyl group is replaced by -O-), an alkoxycarbonyl group (a group in which -CH2-CH2- at any position in an alkyl group is replaced by -O-CO-), an alkylcarbonyl group (an alkyl group in which -CH2- Examples of the substituted groups include -CH- at any position in the alkyl group, which is replaced with -CO-), alkylcarbonyloxy groups (wherein -CH-CH- at any position in the alkyl group is replaced with -CO-O-), alkanediyloxy groups (wherein -CH- at any position in the alkanediyl group is replaced with -O-), alkanediyloxycarbonyl groups (wherein -CH-CH- at any position in the alkanediyl group is replaced with -O-CO-), alkanediylcarbonyl groups (wherein -CH- at any position in the alkanediyl group is replaced with -CO-), and alkanediylcarbonyloxy groups (wherein -CH-CH- at any position in the alkanediyl group is replaced with -CO-). Examples of the substituted groups include the same groups as those exemplified in this specification, within the range permitted by the upper limit of the number of carbon atoms. L b1 Among the above hydrocarbon groups, examples of groups in which -CH2- in an alicyclic hydrocarbon group is replaced with -O-, -CO-, -S- or -SO2- include groups containing structures such as cyclic ether, cyclic ketone, cyclic ester (lactone), cyclic thioether, cyclic acetal, and cyclic sulfonate ester (sultone). Specific examples include alicyclic hydrocarbon groups represented by the following formulas. The bonding position of the alicyclic hydrocarbon groups listed in the following formulas can be any position. TIFF2025071809000132.tif48165L b1 Among these hydrocarbon groups, -CH2- contained in the aromatic hydrocarbon group may be replaced by -O- or -S-, and examples of the group in which -CH2- is replaced by -O- or -S- include groups derived from a furan ring or a thiophene ring, respectively. Specific examples include aromatic hydrocarbon groups represented by the following formulas: TIFF2025071809000133.tif1326 Examples of the group that combines two or more groups selected from the chain hydrocarbon group, the alicyclic hydrocarbon group, and the aromatic hydrocarbon group include a group that combines the above chain hydrocarbon group with the above alicyclic hydrocarbon group, a group that combines the above chain hydrocarbon group with the above aromatic hydrocarbon group, a group that combines the above alicyclic hydrocarbon group with the above aromatic hydrocarbon group, and a group that combines the above chain hydrocarbon group with the above alicyclic hydrocarbon group with the above aromatic hydrocarbon group. The group that combines the alicyclic hydrocarbon group with the aromatic hydrocarbon group may be a condensed ring. L b2 The divalent hydrocarbon group includes a divalent chain hydrocarbon group, a divalent alicyclic hydrocarbon group, a divalent aromatic hydrocarbon group, and a group formed by combining two or more of these groups. A monovalent hydrocarbon group is formed by removing one hydrogen atom to give Y b1 Examples of such groups include groups that bond to the L b2 The divalent chain hydrocarbon group, the divalent alicyclic hydrocarbon group, the divalent aromatic hydrocarbon group, and the divalent group consisting of two or more of these groups are each, within the range permitted by the upper limit of the number of carbon atoms, L b1Examples of the monovalent hydrocarbon group include a monovalent chain hydrocarbon group, a monovalent alicyclic hydrocarbon group, a monovalent aromatic hydrocarbon group, and a monovalent group obtained by combining two or more of these groups from which one hydrogen atom has been removed. L b1 and L b2 Examples of the substituent that the hydrocarbon group may have include a halogen atom, a cyano group, a nitro group, and the like. Examples of the halogen atom include a fluorine atom, a chlorine atom, a bromine atom, and an iodine atom. L b1 and L b2 In the case where L is a group in which an alicyclic hydrocarbon group or an aromatic hydrocarbon group is combined with a chain hydrocarbon group, the chain hydrocarbon group may be regarded as a substituent that the alicyclic hydrocarbon group or the aromatic hydrocarbon group has. b1 and L b2 The -CH2- of the chain hydrocarbon group contained in the hydrocarbon group is replaced with -O-, -CO-, -S- or -SO2-, thereby forming L b1 and L b2 The hydrocarbon group may substantially have a substituent such as a hydroxy group, a carboxy group, an alkoxy group, an alkylcarbonyl group, an alkoxycarbonyl group, an alkylcarbonyloxy group, a thiol group, an alkylthio group, or an alkylsulfonyl group. Y b1 Examples of the cyclic hydrocarbon group include an alicyclic hydrocarbon group, an aromatic hydrocarbon group, and a group in which an alicyclic hydrocarbon group and an aromatic hydrocarbon group are combined. Y b1 The alicyclic hydrocarbon group and the aromatic hydrocarbon group are represented by L b1 Examples of the alicyclic hydrocarbon groups and aromatic hydrocarbon groups are the same as those exemplified in 1. When the alicyclic hydrocarbon groups and aromatic hydrocarbon groups do not have a substituent, they may be monovalent alicyclic hydrocarbon groups and aromatic hydrocarbon groups. Y b1 Examples of the substituent that the methyl group may have include a halogen atom, a cyano group, a hydroxy group, and a nitro group. Y b1Examples of the substituent that the cyclic hydrocarbon group may have include a halogen atom, a cyano group, a nitro group, or a hydrocarbon group having 1 to 18 carbon atoms that may have a halogen atom, a cyano group, or a nitro group. -CH2- contained in the hydrocarbon group may be replaced by -O-, -S-, -CO-, or -SO2-. Y b1 The number of carbon atoms in the hydrocarbon group that may be contained in the cyclic hydrocarbon group is b1 The carbon number of the cyclic hydrocarbon group is not included in the carbon number of the cyclic hydrocarbon group. Y b1 Examples of the hydrocarbon group having 1 to 18 carbon atoms that may be substituted on the cyclic hydrocarbon group include chain hydrocarbon groups, alicyclic hydrocarbon groups, aromatic hydrocarbon groups, and groups combining these groups. Examples of the chain hydrocarbon group, alicyclic hydrocarbon group, aromatic hydrocarbon group, and groups combining two or more of these groups include, within the range permitted by the upper limit of the carbon number, b1 Examples of the chain hydrocarbon group, the alicyclic hydrocarbon group, the aromatic hydrocarbon group, and the group formed by combining two or more of these groups are given above. Y b1 Examples of the -CH2- contained in the hydrocarbon group having 1 to 18 carbon atoms that may be substituted by -O-, -S-, -CO- or -SO2- include, within the upper limit of the carbon number, L b1 Examples of the hydrocarbon group include the same groups as those exemplified above in which -CH2- in the hydrocarbon group is replaced with -O-, -S-, -CO- or -SO2-. b1 The hydrocarbon group having 1 to 18 carbon atoms which the cyclic hydrocarbon group may have as a substituent may constitute a protecting group or leaving group commonly used in the art (an acid labile group or base labile group such as group (1) or group (2)).

[0182] The anion of the salt represented by formula (B1) is preferably an anion represented by the following formula (B1-A1) (hereinafter, may be referred to as "anion (B1-A1)") or an anion represented by formula (B1-A2) (hereinafter, may be referred to as "anion (B1-A2)"). TIFF2025071809000134.tif31125[In formula (B1-A1), L b2 and Y b1 has the same meaning as in formula (B1). Q b1 , Q b2 , Q b3 and Q b4 each independently represents a hydrogen atom, a fluorine atom, a perfluoroalkyl group having 1 to 6 carbon atoms, or an alkyl group having 1 to 6 carbon atoms. z1 represents an integer of 0 to 6. When z1 is 2 or more, the groups in the multiple parentheses may be the same or different. X 1 represents -O-CO-, -CO-O-, -O-CO-O- or -O-. L b3 represents a single bond or a (nb2+1)-valent hydrocarbon group having 1 to 24 carbon atoms which may have a substituent, and -CH2- contained in the hydrocarbon group may be replaced by -O-, -S-, -CO- or -SO2-. nb2 represents an integer of 1 to 3. When nb2 is 2 or more, the groups in the parentheses may be the same or different.] Q b1 , Q b2 , Q b3 and Q b4 Examples of the alkyl group include a methyl group, an ethyl group, a propyl group, an isopropyl group, a butyl group, a sec-butyl group, a tert-butyl group, a pentyl group, and a hexyl group. Q b1 , Q b2 , Q b3 and Q b4 Examples of the perfluoroalkyl group include a trifluoromethyl group, a perfluoroethyl group, a perfluoropropyl group, a perfluoroisopropyl group, a perfluorobutyl group, a perfluorosec-butyl group, a perfluorotert-butyl group, a perfluoropentyl group, and a perfluorohexyl group. Q b1 and Q b2 Q b1 and Q b2At least one of the groups preferably contains a fluorine atom or a perfluoroalkyl group, more preferably a fluorine atom or a perfluoroalkyl group, even more preferably a fluorine atom or a trifluoromethyl group, and even more preferably both are fluorine atoms. Q b3 and Q b4 are each preferably independently a hydrogen atom, a fluorine atom, or a perfluoroalkyl group having 1 to 3 carbon atoms, and Q b3 is preferably a hydrogen atom, a fluorine atom, or a perfluoroalkyl group having 1 to 3 carbon atoms, an...

Claims

1. A sulfonic acid generator comprising a sulfonate salt represented by formula (I) or a structural unit represented by formula (IP). [In formula (I) and formula (IP), Q 1 and Q. 2 each independently represents a hydrogen atom, a fluorine atom, an alkyl group having 1 to 6 carbon atoms, or a perfluoroalkyl group having 1 to 6 carbon atoms. R 11 and R 12 each independently represents a hydrogen atom, a fluorine atom, an alkyl group having 1 to 6 carbon atoms, or a perfluoroalkyl group having 1 to 6 carbon atoms. z represents an integer of 0 to 6, and when z is 2 or more, a plurality of R 11 and R 12 may be the same or different from each other. X 1 represents *-CO-O-, *-O-CO-, *-O-CO-O-, or *-O-, and * represents C(R 11 ) (R 12 ) or C(Q 1 ) (Q 2 ) binding site. mm1 represents 0 or 1. L 1 represents a single bond or a hydrocarbon group having 1 to 40 carbon atoms which may have a substituent, and —CH 2 - is -O-, -S-, -SO 2 It may be replaced by --or --CO--. R 2 represents a halogen atom, a haloalkyl group having 1 to 12 carbon atoms, or an alkyl group having 1 to 12 carbon atoms, and —CH 2 - may be replaced by -O- or -CO-. m2 represents an integer of 0 to 7, and when m2 is 2 or more, a plurality of R 2 may be the same or different from each other. X represents an iodine atom or a sulfur atom. R 22 represents a hydrocarbon group having 1 to 36 carbon atoms which may have a substituent, and the —CH 2 - is -O-, -S-, -CO- or -SO 2 It may be replaced with -. m22 represents 1 or 2. When m22 is 1, X is an iodine atom. When m22 is 2, X is a sulfur atom. 22 may be joined together to form a ring containing a sulfur atom, and —CH 2 - is -O-, -S-, -CO-, -SO- or -SO 2 It may be replaced with -. R 33 represents a halogen atom, a haloalkyl group having 1 to 12 carbon atoms, or a hydrocarbon group having 1 to 18 carbon atoms, the hydrocarbon group optionally having a substituent, and the haloalkyl group and the —CH 2 - is -O-, -S-, -CO- or -SO 2 It may be replaced by -. m33 represents an integer of 0 to 4, and when m33 is 2 or more, a plurality of R 33 may be the same or different from each other. L 11 and L 20 each independently represents a single bond or a hydrocarbon group having 1 to 36 carbon atoms which may have a substituent, and -CH 2 - is -O-, -S-, -CO- or -SO 2 It may be replaced with -. R 20 represents a hydrogen atom, a halogen atom or an alkyl group having 1 to 6 carbon atoms which may have a halogen atom. X 20 represents a single bond, *-O-**, *-CO-O-**, *-O-CO-O-**, *-CO-NR 21 -**, *-NR 21 -CO-O-**, *-O-CO-NR 21 -** or *-Ax-Ph-Ay-**. R 21 represents a hydrogen atom or an alkyl group having 1 to 6 carbon atoms. Ax and Ay each independently represent one or more bond types selected from the group consisting of a single bond, an ether bond, a thioether bond, an ester bond, an amide bond, and a carbonate bond. Ph represents a phenylene group which may have a substituent. * is R 20 represents the bonding site with the carbon atom to which it is bonded, and ** represents L 20 or represents a bonding site with a benzene ring.

2. m2 is an integer of 1 or more, R 2 is an iodine atom, a fluorine atom, a hydroxy group, a carboxy group, an alkoxy group having 1 to 5 carbon atoms, an alkoxyalkoxy group having 2 to 4 carbon atoms, or a haloalkyl group having 1 to 6 carbon atoms (including —CH 2 2. The sulfonic acid generator according to claim 1, wherein - may be replaced by -O- or -CO-.

3. L 1 is a single bond, *-L 2 - or *-L 2 -X 3 -L 3 - (L 2 represents an optionally substituted chain hydrocarbon group having 1 to 10 carbon atoms, an optionally substituted cyclic hydrocarbon group having 3 to 24 carbon atoms, or a group combining an optionally substituted cyclic hydrocarbon group having 3 to 24 carbon atoms and an optionally substituted chain hydrocarbon group having 1 to 8 carbon atoms, and -CH contained in the cyclic hydrocarbon group 2 - is -O-, -S-, -CO- or -SO 2 may be replaced by -, and -CH contained in the chain hydrocarbon group 2 - may be replaced by -O- or -CO-. * represents X 1 represents the binding site with 3 represents **-CO-O-, **-O-CO-, **-O-CO-O- or **-O-, and ** represents L 2 It represents the binding site with L 3 represents a single bond or a chain hydrocarbon group having 1 to 8 carbon atoms which may have a substituent, and —CH 2 - may be replaced by -O- or -CO-. 2 , X 3 and L 3 The sulfonic acid generator according to claim 1, wherein the total number of carbon atoms contained in does not exceed 40.

4. X 20 is a single bond or a group represented by the formula (X 20 -1) ~Formula (X 20 2. The sulfonic acid generator according to claim 1, wherein the sulfonic acid generator is a group represented by any one of the following formulas: [Formula (X 20 -1) ~ Type (X 20 -10) *, ** are binding sites, ** is L 20 or the bonding site with a benzene ring. Rx represents a halogen atom, a hydroxy group, a fluorinated alkyl group having 1 to 6 carbon atoms, an alkyl group having 1 to 18 carbon atoms, or an alkoxy group having 1 to 6 carbon atoms. mx represents an integer of 0 to 4. X 21 is -O- or -NR 21 Represents -. R 21 represents a hydrogen atom or an alkyl group having 1 to 6 carbon atoms.

5. L 20 is a single bond, an alkanediyl group having 1 to 6 carbon atoms, a cyclic hydrocarbon group having 3 to 18 carbon atoms, or a group formed by combining an alkanediyl group having 1 to 6 carbon atoms and a cyclic hydrocarbon group having 3 to 18 carbon atoms, The alkanediyl group and the cyclic hydrocarbon group each contain —CH 2 - is -O-, -S-, -SO 2 2. The sulfonic acid generator according to claim 1, wherein the cyclic hydrocarbon group may have a substituent, and may be replaced by -- or --CO--.

6. A resist composition comprising the sulfonic acid generator according to any one of claims 1 to 5.

7. A sulfonic acid salt represented by formula (I) The resist composition according to claim 6, which further comprises a resin containing a structural unit having an acid labile group.

8. Contains a resin containing a structural unit represented by formula (IP), 7. The resist composition according to claim 6, wherein the resin containing the structural unit represented by formula (IP) further contains a structural unit having an acid labile group.

9. 9. The resist composition according to claim 8, further comprising a sulfonate salt represented by formula (I).

10. The resist composition according to claim 7, wherein the structural unit having an acid labile group includes at least one selected from the group consisting of a structural unit represented by formula (a1-0), a structural unit represented by formula (a1-1), a structural unit represented by formula (a1-2), a structural unit represented by formula (a1-4), a structural unit represented by formula (a1-5), and a structural unit represented by formula (a1-6). [In formula (a1-0), formula (a1-1) and formula (a1-2), L a01 , L a1 and L a2 are each independently -O- or *-O-(CH 2 ) k1 represents --CO--O--, k1 represents an integer of 1 to 7, and * represents the bonding site with --CO--. R a01 , R a4 and R a5 each independently represents a hydrogen atom, a halogen atom, or an alkyl group having 1 to 6 carbon atoms which may have a halogen atom. R a02 , R a03 and R a04 each independently represents an alkyl group having 1 to 8 carbon atoms, an alicyclic hydrocarbon group having 3 to 18 carbon atoms, an aromatic hydrocarbon group having 6 to 18 carbon atoms, or a combination thereof, and the alkyl group, alicyclic hydrocarbon group and aromatic hydrocarbon group may contain a halogen atom. R a6 and R a7 each independently represents an alkyl group having 1 to 8 carbon atoms, an alkenyl group having 2 to 8 carbon atoms, an alicyclic hydrocarbon group having 3 to 18 carbon atoms, an aromatic hydrocarbon group having 6 to 18 carbon atoms, or a group formed by combining these, and the alkyl group, alkenyl group, alicyclic hydrocarbon group and aromatic hydrocarbon group may have a halogen atom. m1 represents an integer of 0 to 14. n1 represents an integer of 0 to 10. n1' represents an integer of 0 to 3. [In formula (a1-4), R a1 represents a hydrogen atom, a halogen atom or an alkyl group having 1 to 6 carbon atoms which may have a halogen atom. R a17 represents a halogen atom, a hydroxy group, a carboxy group, an alkyl group having 1 to 6 carbon atoms which may have a halogen atom, an alkoxy group having 1 to 6 carbon atoms, an alkoxyalkyl group having 2 to 12 carbon atoms, an alkoxyalkoxy group having 2 to 12 carbon atoms, an alkylcarbonyl group having 2 to 4 carbon atoms, an alkylcarbonyloxy group having 2 to 4 carbon atoms, an acryloyloxy group, or a methacryloyloxy group. A a11 represents a single bond or an alkanediyl group having 1 to 12 carbon atoms, and the —CH 2 - is -O-, -CO- or -NR a18 May be replaced with -. R a18 represents a hydrogen atom or an alkyl group having 1 to 6 carbon atoms. X a1 represents a single bond or a carbonyl group. R a34 and R a35 each independently represents a hydrogen atom or a hydrocarbon group having 1 to 12 carbon atoms; R a36 represents a hydrocarbon group having 1 to 20 carbon atoms, or R a35 and R a36 are bonded to each other to form a divalent hydrocarbon group having 2 to 20 carbon atoms together with the -C-O- to which they are bonded, and the hydrocarbon group and the -CH 2 - may be replaced by -O- or -S-. na1 represents an integer of 1 to 5, and when na1 is 2 or more, the groups in the parentheses may be the same or different. na11 represents an integer of 0 to 4, and when na11 is 2 or more, a plurality of R a17 may be the same or different from each other. mc represents an integer of 0 to 2. [In formula (a1-5), R a8 represents an alkyl group having 1 to 6 carbon atoms which may have a halogen atom, a hydrogen atom or a halogen atom. Z a1 is a single bond or *-(CH 2 ) h3 -CO-L 54 -, h3 represents an integer of 1 to 4, * represents L 51 represents the binding site with L 51 , L 52 , L 53 and L 54 each independently represents --O-- or --S--. s1 represents an integer of 1 to 3. s1′ represents an integer of 0 to 3.] [In formula (a1-6), R a61 represents a hydrogen atom, a halogen atom or an alkyl group having 1 to 6 carbon atoms which may have a halogen atom. R a62 , R a63 and R a64 each independently represents an alkyl group having 1 to 6 carbon atoms or a cyclic hydrocarbon group having 3 to 18 carbon atoms which may have a substituent, or R a62 and R a63 are bonded to each other to form, together with the carbon atoms to which they are attached, a ring having 3 to 20 carbon atoms. X a61 is a single bond, -CO-O-* or -CO-NR a65 - represents *, * represents a bonding site with Ar, R a65 represents a hydrogen atom or an alkyl group having 1 to 6 carbon atoms. X a62 is a single bond, *-O-L a61 - or *-CO-OL a62 -, * represents a bonding site with Ar, L a61 and L a62 each independently represents an alkanediyl group having 1 to 4 carbon atoms. Ar represents an aromatic hydrocarbon group having 6 to 20 carbon atoms which may have a substituent.]

11. 7. The resist composition according to claim 6, which contains a resin that includes a structural unit represented by formula (a2-A). [In formula (a2-A), R a2 represents a hydrogen atom, a halogen atom or an alkyl group having 1 to 6 carbon atoms which may have a halogen atom. R a27 represents a halogen atom, a hydroxy group, a carboxy group, an alkyl group having 1 to 6 carbon atoms which may have a halogen atom, an alkoxy group having 1 to 6 carbon atoms, an alkoxyalkyl group having 2 to 12 carbon atoms, an alkoxyalkoxy group having 2 to 12 carbon atoms, an alkylcarbonyl group having 2 to 4 carbon atoms, an alkylcarbonyloxy group having 2 to 4 carbon atoms, an acryloyloxy group, or a methacryloyloxy group. A a21 represents a single bond or an alkanediyl group having 1 to 12 carbon atoms, and the —CH 2 - is -O-, -CO- or -NR a28 May be replaced with -. R a28 represents a hydrogen atom or an alkyl group having 1 to 6 carbon atoms. X a2 represents a single bond or a carbonyl group. nA2 represents an integer of 1 to 5, and when nA2 is 2 or more, the groups in the parentheses may be the same or different. na21 represents an integer of 0 to 4, and when na21 is 2 or more, a plurality of R a27 may be the same or different from each other. mc represents an integer of 0 to 2.

12. (1) A step of applying the resist composition according to claim 6 onto a substrate; (2) A step of drying the applied resist composition to form a composition layer; (3) exposing the composition layer to light; (4) heating the composition layer after exposure; and (5) developing the composition layer after heating; A method for producing a resist pattern comprising the steps of:

13. A sulfonate salt represented by formula (I): [In formula (I), Q 1 and Q. 2 each independently represents a hydrogen atom, a fluorine atom, an alkyl group having 1 to 6 carbon atoms, or a perfluoroalkyl group having 1 to 6 carbon atoms. R 11 and R 12 each independently represents a hydrogen atom, a fluorine atom, an alkyl group having 1 to 6 carbon atoms, or a perfluoroalkyl group having 1 to 6 carbon atoms. z represents an integer of 0 to 6, and when z is 2 or more, a plurality of R 11 and R 12 may be the same or different from each other. X 1 represents *-CO-O-, *-O-CO-, *-O-CO-O-, or *-O-, and * represents C(R 11 ) (R 12 ) or C(Q 1 ) (Q 2 ) binding site. mm1 represents 0 or 1. L 1 represents a single bond or a hydrocarbon group having 1 to 40 carbon atoms which may have a substituent, and —CH 2 - is -O-, -S-, -SO 2 It may be replaced by --or --CO--. R 2 represents a halogen atom, a haloalkyl group having 1 to 12 carbon atoms, or an alkyl group having 1 to 12 carbon atoms, and —CH 2 - may be replaced by -O- or -CO-. m2 represents an integer of 0 to 7, and when m2 is 2 or more, a plurality of R 2 may be the same or different from each other. X represents an iodine atom or a sulfur atom. R 22 represents a hydrocarbon group having 1 to 36 carbon atoms which may have a substituent, and the —CH 2 - is -O-, -S-, -CO- or -SO 2 It may be replaced with -. m22 represents 1 or 2. When m22 is 1, X is an iodine atom. When m22 is 2, X is a sulfur atom. 22 may be joined together to form a ring containing a sulfur atom, and —CH 2 - is -O-, -S-, -CO-, -SO- or -SO 2 It may be replaced with -. R 33 represents a halogen atom, a haloalkyl group having 1 to 12 carbon atoms, or a hydrocarbon group having 1 to 18 carbon atoms, the hydrocarbon group optionally having a substituent, and the haloalkyl group and the —CH 2 - is -O-, -S-, -CO- or -SO 2 It may be replaced by -. m33 represents an integer of 0 to 4, and when m33 is 2 or more, a plurality of R 33 may be the same or different from each other. L 11 and L 20 each independently represents a single bond or a hydrocarbon group having 1 to 36 carbon atoms which may have a substituent, and -CH 2 - is -O-, -S-, -CO- or -SO 2 It may be replaced with -. R 20 represents a hydrogen atom, a halogen atom or an alkyl group having 1 to 6 carbon atoms which may have a halogen atom. X 20 represents a single bond, *-O-**, *-CO-O-**, *-O-CO-O-**, *-CO-NR 21 -**, *-NR 21 -CO-O-**, *-O-CO-NR 21 -** or *-Ax-Ph-Ay-**. R 21 represents a hydrogen atom or an alkyl group having 1 to 6 carbon atoms. Ax and Ay each independently represent one or more bond types selected from the group consisting of a single bond, an ether bond, a thioether bond, an ester bond, an amide bond, and a carbonate bond. Ph represents a phenylene group which may have a substituent. * is R 20 represents the bonding site with the carbon atom to which it is bonded, and ** represents L 20 or represents a bonding site with a benzene ring.

14. m2 is an integer of 1 or more, R 2 is an iodine atom, a fluorine atom, a hydroxy group, a carboxy group, an alkoxy group having 1 to 5 carbon atoms, an alkoxyalkoxy group having 2 to 4 carbon atoms, or a haloalkyl group having 1 to 6 carbon atoms (including —CH 2 The sulfonate according to claim 13, wherein - may be replaced by -O- or -CO-.

15. L 1 is a single bond, *-L 2 - or *-L 2 -X 3 -L 3 - (L 2 represents an optionally substituted chain hydrocarbon group having 1 to 10 carbon atoms, an optionally substituted cyclic hydrocarbon group having 3 to 24 carbon atoms, or a group combining an optionally substituted cyclic hydrocarbon group having 3 to 24 carbon atoms and an optionally substituted chain hydrocarbon group having 1 to 8 carbon atoms, and -CH contained in the cyclic hydrocarbon group 2 - is -O-, -S-, -CO- or -SO 2 may be replaced by -, and -CH contained in the chain hydrocarbon group 2 - may be replaced by -O- or -CO-. * represents X 1 represents the binding site with 3 represents **-CO-O-, **-O-CO-, **-O-CO-O- or **-O-, and ** represents L 2 It represents the binding site with L 3 represents a single bond or a chain hydrocarbon group having 1 to 8 carbon atoms which may have a substituent, and —CH 2 - may be replaced by -O- or -CO-. 2 , X 3 and L 3 The sulfonate salt according to claim 13 or 14, wherein the total number of carbon atoms contained in does not exceed 40.

16. X 20 is a single bond or a group represented by the formula (X 20 -1) ~Formula (X 20 The sulfonate according to claim 13 or 14, wherein the sulfonate is a group represented by any one of the following formulas: [Formula (X 20 -1) ~ Type (X 20 -10) *, ** are binding sites, ** is L 20 or the bonding site with a benzene ring. Rx represents a halogen atom, a hydroxy group, a fluorinated alkyl group having 1 to 6 carbon atoms, an alkyl group having 1 to 18 carbon atoms, or an alkoxy group having 1 to 6 carbon atoms. mx represents an integer of 0 to 4. X 21 is -O- or -NR 21 Represents -. R 21 represents a hydrogen atom or an alkyl group having 1 to 6 carbon atoms.

17. L 20 is a single bond, an alkanediyl group having 1 to 6 carbon atoms, a cyclic hydrocarbon group having 3 to 18 carbon atoms, or a group formed by combining an alkanediyl group having 1 to 6 carbon atoms and a cyclic hydrocarbon group having 3 to 18 carbon atoms, The alkanediyl group and the cyclic hydrocarbon group each contain —CH 2 - is -O-, -S-, -SO 2 The sulfonate according to claim 13 or 14, wherein the cyclic hydrocarbon group may have a substituent, and may be replaced by - or -CO-.

18. A resin comprising a structural unit represented by formula (IP): [In the formula (IP), Q 1 and Q. 2 each independently represents a hydrogen atom, a fluorine atom, an alkyl group having 1 to 6 carbon atoms, or a perfluoroalkyl group having 1 to 6 carbon atoms. R 11 and R 12 each independently represents a hydrogen atom, a fluorine atom, an alkyl group having 1 to 6 carbon atoms, or a perfluoroalkyl group having 1 to 6 carbon atoms. z represents an integer of 0 to 6, and when z is 2 or more, a plurality of R 11 and R 12 may be the same or different from each other. X 1 represents *-CO-O-, *-O-CO-, *-O-CO-O-, or *-O-, and * represents C(R 11 ) (R 12 ) or C(Q 1 ) (Q 2 ) binding site. mm1 represents 0 or 1. L 1 represents a single bond or a hydrocarbon group having 1 to 40 carbon atoms which may have a substituent, and —CH 2 - is -O-, -S-, -SO 2 It may be replaced by --or --CO--. R 2 represents a halogen atom, a haloalkyl group having 1 to 12 carbon atoms, or an alkyl group having 1 to 12 carbon atoms, and —CH 2 - may be replaced by -O- or -CO-. m2 represents an integer of 0 to 7, and when m2 is 2 or more, a plurality of R 2 may be the same or different from each other. X represents an iodine atom or a sulfur atom. R 22 represents a hydrocarbon group having 1 to 36 carbon atoms which may have a substituent, and the —CH 2 - is -O-, -S-, -CO- or -SO 2 It may be replaced with -. m22 represents 1 or 2. When m22 is 1, X is an iodine atom. When m22 is 2, X is a sulfur atom. 22 may be joined together to form a ring containing a sulfur atom, and —CH 2 - is -O-, -S-, -CO-, -SO- or -SO 2 It may be replaced with -. R 33 represents a halogen atom, a haloalkyl group having 1 to 12 carbon atoms, or a hydrocarbon group having 1 to 18 carbon atoms, the hydrocarbon group optionally having a substituent, and the haloalkyl group and the —CH 2 - is -O-, -S-, -CO- or -SO 2 It may be replaced by -. m33 represents an integer of 0 to 4, and when m33 is 2 or more, a plurality of R 33 may be the same or different from each other. L 11 and L 20 each independently represents a single bond or a hydrocarbon group having 1 to 36 carbon atoms which may have a substituent, and -CH 2 - is -O-, -S-, -CO- or -SO 2 It may be replaced with -. R 20 represents a hydrogen atom, a halogen atom or an alkyl group having 1 to 6 carbon atoms which may have a halogen atom. X 20 represents a single bond, *-O-**, *-CO-O-**, *-O-CO-O-**, *-CO-NR 21 -**, *-NR 21 -CO-O-**, *-O-CO-NR 21 -** or *-Ax-Ph-Ay-**. R 21 represents a hydrogen atom or an alkyl group having 1 to 6 carbon atoms. Ax and Ay each independently represent one or more bond types selected from the group consisting of a single bond, an ether bond, a thioether bond, an ester bond, an amide bond, and a carbonate bond. Ph represents a phenylene group which may have a substituent. * is R 20 represents the bonding site with the carbon atom to which it is bonded, and ** represents L 20 or represents a bonding site with a benzene ring.

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  • Photoacid generator, copolymer, chemically amplified resist composition, and pattern-forming method using chemically amplified resist composition

    JP2010132852A