Salt, acid generator, resist composition, and method for producing resist patterns

A resist composition with a novel acid generator salt enhances CD uniformity, addressing the limitations of existing resist compositions by improving pattern formation in manufacturing processes.

JP2026066273APending Publication Date: 2026-04-16SUMITOMO CHEM CO LTD
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Patent Information

Application Number
JP2026014800
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Priority Date
2021-12-10
Filing Date
2026-01-30
Publication Date
2026-04-16

AI Technical Summary

Technical Problem

Existing resist compositions do not achieve optimal CD uniformity in resist patterns, necessitating improved acid generators for better pattern formation.

Method used

The development of a resist composition containing a specific acid generator salt represented by formula (I), which includes various hydrocarbon groups and substituents to enhance CD uniformity.

Benefits of technology

The use of this salt-based acid generator improves CD uniformity in resist patterns, leading to better pattern formation and manufacturing processes.

✦ Generated by Eureka AI based on patent content.

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Abstract

An object is to provide an acid generator, a resist composition, a salt, etc. that can produce a resist pattern having good CD uniformity. 【Solution means】An acid generator containing a salt represented by formula (I). JPEG2026066273000223.jpg31136[In the formula, Q 1 and Q 2 are each a fluorine atom, etc.; R 11 and R 12 are each a hydrogen atom, a fluorine atom, etc.; z is an integer of 0 to 6; X 1 is *-CO-O-, *-O-CO-, etc.; L 1 is a single bond or a substituted / unsubstituted hydrocarbon group, and -CH2- in the group may be replaced by -O-, -S-, etc. R 10 is a group represented by formula (R10-1) or formula (R10-2); L 1 when L is a single bond, R 10 is a group represented by formula (R10-1); Z + is an organic cation; ring W is an alicyclic hydrocarbon group; R 1 is a halogen atom, a hydroxy group, etc.; m1 represents an integer of 0 to 6, and m2 represents an integer of 1 to 6.]
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Description

[Technical Field]

[0001] The present invention relates to salts, acid generators, resist compositions, and methods for producing resist patterns. [Background technology]

[0002] Patent Document 1 describes a salt represented by the following formula and a resist composition containing the salt as an acid generator. The item is described. Patent Document 2 (TIFF2026066273000001.tif2448) describes a salt represented by the following formula and a resist composition containing the salt as an acid generator. The item is described. TIFF2026066273000002.tif2454 [Prior art documents] [Patent Documents]

[0003] [Patent Document 1] Japanese Patent Publication No. 2007-161707 [Patent Document 2] Japanese Patent Publication No. 2010-250074 [Overview of the project] [Problems that the invention aims to solve]

[0004] The present invention provides a resist pattern formed from a resist composition containing the above-mentioned salt that is more effective than a resist pattern formed from a resist composition containing the above-mentioned salt. The objective is to provide a salt that forms a resist pattern with good CD uniformity (CDU). do. [Means for solving the problem]

[0005] This invention includes the following inventions. [1] An acid generator containing a salt represented by formula (I). TIFF2026066273000003.tif22103 [In formula (I), Q 1and Q 2 each independently represents a fluorine atom or a perfluoroalkyl group having 1 to 6 carbon atoms. R 11 and R 12 each independently represents a hydrogen atom, a fluorine atom or a perfluoroalkyl group having 1 to 6 carbon atoms. z represents any integer from 0 to 6. When z is 2 or more, a plurality of Rs 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-, where * represents the bonding site with C(R 11 )(R 12 ) or C(Q 1 )(Q 2 ). L 1 represents a single bond or a hydrocarbon group having 1 to 60 carbon atoms which may have a substituent. The -CH2- contained in the hydrocarbon group may be replaced by -O-, -S-, -SO2- or -CO-. R 10 represents a group represented by formula (R10-1) or formula (R10-2). L 1 When L is a single bond, R 10 is a group represented by formula (R10-1). Z + represents an organic cation. TIFF2026066273000004.tif31114 [In formula (R10-1) and formula (R10-2), ring W represents an alicyclic hydrocarbon group having 3 to 36 carbon atoms. The - CH2- contained in the alicyclic hydrocarbon group may be replaced by -O-, -S-, -CO- or -SO2-. R 1 each independently represents a halogen atom, a hydroxy group, a haloalkyl having 1 to 12 carbon atoms A C1-C12 alkyl group, a C3-C18 alicyclic hydrocarbon group, or a combination thereof This represents a combined group, and is contained in the haloalkyl group, the alkyl group, and the alicyclic hydrocarbon group. -CH2- may be replaced by -O- or -CO-. m1 represents an integer from 0 to 6, and when m1 is 2 or greater, multiple R 1 They are the same It can be one or different. m2 represents an integer between 1 and 6. * is L 1 This represents the connection point with [the other element]. [2]L 1 However, single bonds and substituted chain hydrocarbon groups having 1 to 10 carbon atoms (however Even if the -CH2- contained in the chain-like hydrocarbon group is replaced by -O- or -CO- Good.), a cyclic hydrocarbon group having 3 to 24 carbon atoms which may have substituents (however, the cyclic hydrocarbon water The -CH2- contained in the elementary group is replaced by -O-, -S-, -CO-, or -SO2-. (May have substituents) or a chain hydrocarbon group having 1 to 8 carbon atoms and substituents A group formed by combining a cyclic hydrocarbon group having 3 to 24 carbon atoms (however, the chain-type carbonized water The -CH2- contained in the elementary group may be replaced with -O- or -CO-, and the cyclic carbon The -CH2- contained in the hydrogenated group is replaced by -O-, -S-, -SO2-, or -CO-. The acid generator described in [1] may be. [3]*-L 1 -R 10 However, the base is represented by any of the formulas (L1-0) to (L1-5). The acid generator described in [1] or [2]. TIFF2026066273000005.tif107148 [Formula (L1-0) to (L1-5), Ring W, R 1 m1 and m2 have the same meaning as above. L 2 This is a chain-like hydrocarbon group having 1 to 10 carbon atoms, which may have substituents. A cyclic hydrocarbon group having 3 to 24 carbon atoms or a cyclic carbide having 3 to 24 carbon atoms or substituents. This represents a group that combines a hydrogen group with a chain-like hydrocarbon group having 1 to 8 carbon atoms, which may have substituents. The -CH2- contained in the cyclic hydrocarbon group is -O-, -S-, -CO- or -SO2- It may be replaced by -CH2- contained in the chain hydrocarbon group, -O- or -C It may be replaced with O-. L 3 and L 4 Each of these is independently a chain having 1 to 8 carbon atoms, which may have single bonds or substituents. The formula represents a hydrocarbon group, and the -CH2- contained in the chain-like hydrocarbon group is either -O- or -CO-. It's okay if it's been replaced. L 5 and L 6 Each of these independently comprises a single bond or a carbon atom having 1 to 10 carbon atoms which may have substituents. This represents a chain-like hydrocarbon group, and the -CH2- contained in the chain-like hydrocarbon group is either -O- or -CO- It may be replaced by this. Ring W3 represents a cyclic hydrocarbon group having 3 to 24 carbon atoms, which may have substituents, and the cyclic carbon The -CH2- contained in the hydrogen group is replaced by -O-, -S-, -CO-, or -SO2-. It's fine if you do that. Rings W4 and W5 are each independently cyclic carbon atoms having 3 to 18 carbon atoms, which may have substituents. Representing a hydrogenated group, the -CH2- contained in the cyclic hydrocarbon group is -O-, -S-, -CO- Alternatively, it may be replaced with -SO2-. X 3 is **-CO-O-, **-O-CO-, **-O-CO-O- or **-O- It represents. X a and X bThese represent either -O- or -S- independently. X 01 This represents a hydrocarbon group having 1 to 40 carbon atoms, which may have substituents. Even if the contained -CH2- is replaced by -O-, -S-, -CO- or -SO2- good. R 21 and R 22 These are, independently, a halogen atom, a hydroxyl group, and a carbon atom with 1 to 12 carbon atoms. Haloalkyl groups, alkyl groups having 1 to 12 carbon atoms, alicyclic hydrocarbon groups having 3 to 18 carbon atoms or This represents a group formed by combining these, and the haloalkyl group, the alkyl group, and the alicyclic hydrocarbon The -CH2- group contained in the group may be replaced by -O- or -CO-. m21 represents an integer from 0 to 6, and when m21 is 2 or greater, multiple R 21 they They may be the same or different. m22 represents an integer from 0 to 6, and when m22 is 2 or greater, multiple R 22 they They may be the same or different. * is X 1 This represents the connection site with L. 2 This represents the connection point with [the other element]. [4]X 01 However, equation (X 1 -1), formula (X 1 -3) and equation (X 1 -5)~Formula(X 1 -7) The acid generator described in [3] is a group represented by any one of the following. TIFF2026066273000006.tif26144[expression(X 1 -1), formula (X 1 -3) and equation (X 1 -5)~Formula(X 1 -7) Medium, L 11 This represents a hydrocarbon group having 1 to 18 carbon atoms, which may have single bonds or substituents. The -CH2- contained in the hydrogenated group is replaced by -O-, -S-, -SO2-, or -CO-. It's okay to do that. * indicates a connection site. [5] Ring W is a group derived from the ring represented by formula (w1-1), and is represented by formula (w1-2) A ring-derived group, a ring-derived group represented by formula (w1-3), and a ring-derived group represented by formula (w1-6). The ring-derived group or the ring-derived group represented by formula (w1-15) [1]-[4] The acid generator described in any of the following. TIFF2026066273000007.tif2799[Formula (w1-1), Formula (w1-2), Formula (w1-3), Formula (w1-6) and Formula (w1- 15) Medium, The -CH2- contained in the group is replaced by -O-, -S-, -CO-, or -SO2-. It may be done. The connection point can be at any position. [6] An acid generator according to any of [1] to [5], wherein m2 is 1 or 2. The resin contains an acid generator described in any of [7][1] to [6] and an acid-unstable group. A resist composition. [8] Resins having acid-unstable groups are structural units represented by formula (a1-0), formula (a1-1 A small number of structural units selected from the group consisting of structural units represented by formula (a1-2) and structural units represented by formula (a1-2) The resist composition described in [7], comprising at least one of the following: TIFF2026066273000008.tif47148[In formulas (a1-0), (a1-1), and (a1-2), L a01 , L a1 and L a2 These are, independently, -O- or *-O-(CH2) k1 - CO-O- represents a bond, k1 is an integer from 1 to 7, and * is the bonding site with -CO-. represent. R a01 , R a4 and Ra5 These are, independently, a hydrogen atom, a halogen atom, or a halogen. This represents an alkyl group having 1 to 6 carbon atoms, which may contain atoms. R a02 , R a03 and R a04 These are, independently, alkyl groups with 1 to 8 carbon atoms and alkyl groups with 3 to 8 carbon atoms. 18 alicyclic hydrocarbon groups, aromatic hydrocarbon groups with 6 to 18 carbon atoms, or combinations thereof It represents the basis. R a6 and R a7 These are, independently, alkyl groups with 1 to 8 carbon atoms and axyl groups with 2 to 8 carbon atoms. Lukenyl group, alicyclic hydrocarbon group having 3 to 18 carbon atoms, aromatic hydrocarbon group having 6 to 18 carbon atoms or This represents the group formed by combining these elements. m1 represents an integer between 0 and 14. n1 represents an integer between 0 and 10. n1' represents an integer between 0 and 3. [9] Resins having acid-unstable groups include structural units represented by formula (a2-A) [7] or The resist composition is as described in [8]. TIFF2026066273000009.tif4652[In formula (a2-A), R a50 This is a hydrogen atom, a halogen atom, or a C1-C6 element which may have a halogen atom. It represents an alkyl group. R a51 This includes halogen atoms, hydroxyl groups, alkyl groups with 1 to 6 carbon atoms, and C1 to 6 atoms. Alkoxy group, alkoxyalkyl group having 2 to 12 carbon atoms, alkoxyalkyl group having 2 to 12 carbon atoms Lucoxy group, C2-C4 alkylcarbonyl group, C2-C4 alkylcarbonyl This represents an oxy group, an acryloyloxy group, or a methacryloyloxy group. A a50 This is a single bond or *-X a51 -(A a52 -Xa52 ) nb - represents -R a50 they combine This represents the bonding site with the carbon atom. A a52 This represents an alkanediyl group with 1 to 6 carbon atoms. X a51 and X a52 These represent -O-, -CO-O-, or -O-CO- independently. nb represents either 0 or 1. mb represents an integer between 0 and 4. If mb is an integer greater than or equal to 2, Number R a51 They may be the same or different from each other.

[10] Further contains a salt that generates an acid that is less acidic than the acid generated by the acid generator. A resist composition according to any one of [7] to [9].

[11] (1)[7]~

[10] is applied to the substrate. The process, (2) A step of drying the applied composition to form a composition layer, (3) A step of exposing the composition layer, (4) A step of heating the composition layer after exposure, (5) A step of developing the composition layer after heating, A method for manufacturing a resist pattern that includes a resist pattern.

[12] A salt represented by formula (I). TIFF2026066273000010.tif22103 [In formula (I), Q 1 and Q 2 Each of these independently contains a fluorine atom or a perfluoroalkyl group having 1 to 6 carbon atoms. It represents the 'L' group. R 11 and R 12 Each of these is independently a hydrogen atom, a fluorine atom, or a phenyl atom having 1 to 6 carbon atoms. Represents the Oroalkyl group. z represents an integer between 0 and 6, and when z is 2 or greater, multiple R 11 and R 12 They are intertwined It may be the same or different. X 1 represents *-CO-O-, *-O-CO-, *-O-CO-O- or *-O-, where * represents the bonding site with C(R 11 )(R 12 ) or C(Q 1 )(Q 2 ). L 1 represents a hydrocarbon group having 1 to 60 carbon atoms which may have a single bond or a substituent, and -CH2- contained in the hydrocarbon group may be replaced by -O-, -S-, -SO2- or -CO- and may be replaced by -O-, -S-, -SO2- or -CO-. R 10 represents a group represented by formula (R10-1) or formula (R10-2). L 1 When L is a single bond, R 10 is a group represented by formula (R10-1). Z + represents an organic cation.] TIFF2026066273000011.tif31114[In formula (R10-1) and formula (R10-2), ring W represents an alicyclic hydrocarbon group having 3 to 36 carbon atoms, and -CH2- contained in the alicyclic hydrocarbon group may be replaced by -O-, -S-, -CO- or -SO2-. R 1 each independently represents a halogen atom, a hydroxy group, a haloalkyl group having 1 to 12 carbon atoms, an alkyl group having 1 to 12 carbon atoms, an alicyclic hydrocarbon group having 3 to 18 carbon atoms or a combination thereof, and -CH2- contained in the haloalkyl group, the alkyl group and the alicyclic hydrocarbon group may be replaced by -O- or -CO-. m1 represents any integer from 0 to 6, and when m1 is 2 or more, a plurality of R 1 may be the same or different from each other. m2 represents any integer from 1 to 6. * is L 1 This represents the connection point with [the other element].

[13] L 1 However, a chain-like hydrocarbon group having 1 to 10 carbon atoms may have single bonds or substituents (but Furthermore, the -CH2- contained in the chain-like hydrocarbon group is replaced by -O- or -CO-. ) or a cyclic hydrocarbon group having 3 to 24 carbon atoms which may have substituents (however, the cyclic carb The -CH2- contained in the hydrogen group is replaced by -O-, -S-, -CO-, or -SO2-. (Or it may have substituents.) Or it may have a chain hydrocarbon group having 1 to 8 carbon atoms and substituents A group formed by combining a cyclic hydrocarbon group having 3 to 24 carbon atoms (however, the chain-type carbon The -CH2- contained in the hydrogen group may be replaced by -O- or -CO-, and the cyclic The -CH2- group in the hydrocarbon group is replaced by -O-, -S-, -SO2-, or -CO-. The salt described in

[12] may be divided.

[14] *-L 1 -R 10 However, it can be expressed by any of the following equations: (L1-0) to (L1-5). The salt described in

[12] or

[13] , which is the base. TIFF2026066273000012.tif92148[Formula (L1-0)~Formula (L1-5), Ring W, R 1 m1 and m2 have the same meaning as above. L 2 This is a chain-like hydrocarbon group having 1 to 10 carbon atoms, which may have substituents. A cyclic hydrocarbon group having 3 to 24 carbon atoms or a cyclic carbide having 3 to 24 carbon atoms or substituents. This represents a group that combines a hydrogen group with a chain-like hydrocarbon group having 1 to 8 carbon atoms, which may have substituents. The -CH2- contained in the cyclic hydrocarbon group is -O-, -S-, -CO- or -SO2- It may be replaced by -CH2- contained in the chain hydrocarbon group, -O- or -C It may be replaced by O-. L 3 and L 4 each independently represents a single bond or a chain hydrocarbon group having 1 to 8 carbon atoms which may have a substituent. The chain hydrocarbon group represented by the formula, and -CH2- contained in the chain hydrocarbon group may be replaced by -O- or -CO-. It may be replaced. L 5 and L 6 each independently represents a single bond or a chain hydrocarbon group having 1 to 10 carbon atoms which may have a substituent. The chain hydrocarbon group represented by the formula, and -CH2- contained in the chain hydrocarbon group may be replaced by -O- or -CO-. It may be replaced. Ring W3 represents 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-, -CO- or -SO2-. It may be replaced. It may be replaced. Rings W4 and W5 each independently represent a cyclic hydrocarbon group having 3 to 18 carbon atoms which may have a substituent, and -CH2- contained in the cyclic hydrocarbon group may be replaced by -O-, -S-, -CO- or -SO2-. It may be replaced. It may be replaced. X 3 represents -CO-O-, -O-CO-, -O-CO-O- or -O-. It represents. X a and X b each independently represent -O- or -S-. X 01 represents 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-, -CO- or -SO2-. It may be replaced. It may be replaced. R 21 and R 22 each independently represent a halogen atom, a hydroxy group, a hydrocarbon group having 1 to 12 carbon atoms. Haloalkyl groups, alkyl groups having 1 to 12 carbon atoms, alicyclic hydrocarbon groups having 3 to 18 carbon atoms or This represents a group formed by combining these, and the haloalkyl group, the alkyl group, and the alicyclic hydrocarbon The -CH2- group contained in the group may be replaced by -O- or -CO-. m21 represents an integer from 0 to 6, and when m21 is 2 or greater, multiple R 21 they They may be the same or different. m22 represents an integer from 0 to 6, and when m22 is 2 or greater, multiple R 22 they They may be the same or different. * is X 1 This represents the connection site with L. 2 This represents the connection point with [the other element].

[15] X 01 However, equation (X 1 -1), formula (X 1 -3) and equation (X 1 -5)~Formula(X 1 -7) A salt described in

[14] , which is a group represented by any of the following. TIFF2026066273000013.tif26144[expression(X 1 -1), formula (X 1 -3) and equation (X 1 -5)~Formula(X 1 -7) Medium, L 11 This represents a hydrocarbon group having 1 to 18 carbon atoms, which may have single bonds or substituents. The -CH2- contained in the hydrogenated group is replaced by -O-, -S-, -SO2-, or -CO-. It's okay to do that. * indicates a connection site.

[16] Ring W is a group derived from the ring represented by formula (w1-1), and is represented by formula (w1-2). A group derived from a ring, a group derived from a ring represented by formula (w1-3), and a group represented by formula (w1-6) A salt according to any of

[12] to

[0015] , wherein the group is derived from a ring or from a ring represented by formula (w1-15). TIFF2026066273000014.tif2799[Formula (w1-1), Formula (w1-2), Formula (w1-3), Formula (w1-6) and Formula (w1- 15) Medium, The -CH2- contained in the group is replaced by -O-, -S-, -CO-, or -SO2-. It may be done. The connection point can be at any position.

[17] A salt according to any of

[12] to

[16] , wherein m2 is 1 or 2. [Effects of the Invention]

[0006] By using the resist composition containing the salt of the present invention, good CD uniformity (CDU) can be achieved. ) can be used to manufacture resist patterns. [Modes for carrying out the invention]

[0007] In this specification, "(meth)acrylic monomer" means "acrylic monomer and This means "at least one methacrylate monomer." "(meth)acrylate" and " The notation "(meth)acrylic acid," etc., also has the same meaning. For hydrocarbons that can take both a linear and a branched structure, either is acceptable. The -CH2- contained in the group is replaced with -O-, -S-, -CO-, -SO-, or -SO2-. In the event of substitution, the same example shall apply to each base. “Combined bases” refers to the example. This refers to a group formed by bonding two or more of the indicated groups, and the valence of these groups is appropriately changed depending on the bonding configuration. It is also permissible. "Derived from" or "induced from" means that polymerizable C=C molecules are contained in the molecule. This refers to the process where a bond becomes a single bond (-CC- group) through polymerization. Stereoisomers exist. This includes all stereoisomers.

[0008] [Salt represented by formula (I)] This invention relates to a salt represented by formula (I) (hereinafter sometimes referred to as "salt (I)"). In salt (I), the side with a negative charge is called "anion (I)," and the side with a positive charge is called "antion (I)." It is sometimes referred to as "On (I)". TIFF2026066273000015.tif22103[In this formula, all signs have the same meaning as defined above.]

[0009] In equation (I), Q 1 Q 2 , R 11 and R 12 As perfluoroalkyl groups , trifluoromethyl group, perfluoroethyl group, perfluoropropyl group, perfluoro Heisopropyl group, perfluorobutyl group, perfluorosec-butyl group, perfluoro Examples include tert-butyl groups, perfluoropentyl groups, and perfluorohexyl groups. The number of carbon atoms in the perfluoroalkyl group is preferably 1 to 4, and more preferably 1. It is ~3. Q 1 and Q 2 Each of these is independently, preferably with a trifluoromethyl group or a fluorine atom. Yes, and more preferably a fluorine atom. R 11 and R 12 Each of these is independently, preferably a hydrogen atom, a fluorine atom, or a trifluor atom. It is an oromethyl group, more preferably a hydrogen atom or a trifluoromethyl group. z is preferably 0 or 1. X 1 It is preferable that it be *-CO-O-, *-O-CO-O-, or *-O-CO- It is more preferable that it be *-CO-O- or *-O-CO- (* is C(R11 )( R 12 ) or C(Q 1 )(Q 2 This represents the connection site with ).

[0010] L 1 The hydrocarbon groups in this context include chain hydrocarbon groups, monocyclic or polycyclic (spiro ring, condensed) hydrocarbon groups. Alicyclic hydrocarbon groups (including cycloaliphatic and cross-linked rings, etc.), aromatic hydrocarbon groups (alicyclic hydrocarbon groups) Examples include cyclic hydrocarbon groups such as fused rings, and two or more of these groups are combined. Combined groups (for example, formed from an alicyclic hydrocarbon group or aromatic hydrocarbon group and a chain hydrocarbon group) It may also be a hydrocarbon group. The number of carbon atoms in the hydrocarbon group is preferably 1 to 54, and more Preferably 1 to 48, more preferably 1 to 42, and even more preferably 1 to It is 38, more preferably 1 to 36, and even more preferably 1 to 32. More preferably, the range is 1 to 28. Examples of chain-like hydrocarbon groups include alkanediyl groups, alkenediyl groups, and alkynediyl groups. 2-3 valent chain carbides such as alkanetriyl groups, alkenetriyl groups, and alkyntriyl groups Examples include hydrogen groups. Examples of alkanediyl groups include methylene group, ethylene group, propane-1,3-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 group, decane-1,10-diyl group, undecane-1,11-diyl group, dodecane-1,1 2-diyl group, tridecane-1,13-diyl group, tetradecane-1,14-diyl group, Pentadecane-1,15-diyl group, hexadecane-1,16-diyl group and heptadecane Linear alkanediyl groups such as n-1,17-diyl groups and 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 Examples include branched alkanediyl groups such as the 2-methylbutane-1,4-diyl group. Examples of alkanetriyl groups include methanetriyl group, ethanetriyl group, and propanetriyl group. yl group, butanetriyl group, pentanetriyl group, hexanetriyl group, heptanetriyl group, octanethryyl group, nonanethryyl group, decanthryyl group, undecanethryyl group dodecanetriyl group, tridecanetriyl group, tetradecanetriyl group, pentadecane Examples include triyl groups, hexadecantriyl groups, and heptadecantriyl groups. Examples of alkenediyl groups include ethendiyl group, propendiyl group, and isopropendiyl group. group, butendiyl group, isobutendiyl group, ter-t-butendiyl group, pentendiyl group, hexendiyl group, heptendiyl group, octendiyl group, isooctenediyl group, Examples include the nonenindiyl group. Examples of alkenetriyl groups include ethentriyl groups, propentriyl groups, and isopropene groups. Triyl group, butentryyl group, isobutentryyl group, tert-butentryyl group, Pententryyl group, hexentryyl group, heptentryyl group, octentryyl group, Examples include isooctentriyl groups and nonenintriyl groups. Examples of alkynediyl groups include ethindiyl group, propinediyl group, and isopropinediyl group. group, butyndiyl group, isobutyndiyl group, tert-butyndiyl group, pentyndiyl Examples include the hexindiyl group, octindiyl group, and nonindiyl group. Examples of alkynetriyl groups include ethintriyl group, propynetriyl group, and isopropyne Triyl group, butytriyl group, isobutytriyl group, tert-butytriyl group, Pentintriyl group, hexinetriyl group, octintriyl group, noninetriyl group, etc. It can be listed. Other examples include groups in which one or more hydrogen atoms of the aforementioned group are replaced by bonding sites. The number of carbon atoms in the chain-like hydrocarbon group is preferably 1 to 18, more preferably 1 to 12. More preferably 1 to 10, even more preferably 1 to 8, and even more preferably The range is 1 to 7, more preferably 1 to 6, and even more preferably The range is 1 to 5, and particularly preferably 1 to 4. Examples of monocyclic or polycyclic alicyclic hydrocarbon groups include the following alicyclic hydrocarbon groups. The connection point can be at any position. TIFF2026066273000016.tif47168 For example, divalent to trivalent alicyclic carbon such as cycloalkanediyl groups and cycloalkanetriyl groups. Examples include hydrogenated groups. Specifically, cyclobutane-1,3-diyl group, cyclopentane-1,3-diyl group, Cyclohexane-1,4-diyl group, cyclohexane-1,2-diyl group, cyclohexa n-1,3-diyl group, cyclooctane-1,5-diyl group, cyclopropanetriyl group , cyclobutanetriyl group, cyclopentanetriyl group, cyclohexanetriyl group, Monocyclic groups such as chloroheptanetriyl, cyclooctanetriyl, and cyclodecanetriyl groups Alicyclic hydrocarbon groups of the formula and 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, decahydronaphthalentriyl group, adamanta The following: ¹triyl group, norbornanetriyl group, bicyclo[3.3.0]octantriyl group, etc. Examples include polycyclic alicyclic hydrocarbon groups. Other examples include groups in which one or more hydrogen atoms of the aforementioned group are replaced by bonding sites. The number of carbon atoms in the alicyclic hydrocarbon group is preferably 3 to 36, more preferably 3 to 24. Yes, more preferably 3 to 20, even more preferably 3 to 18, and even more preferably 1 The number of layers is preferably 3 to 16, and more preferably 3 to 12. Aromatic hydrocarbon groups include divalent to trivalent aromatic groups such as arylene groups and arenetriyl groups. Examples include hydrocarbon groups. Specifically, phenylene group, naphthylene group, anthrylene group, biphenylene group, phena Ntriylene group, benzenetriyl group, naphthalenetriyl group, anthracetriyl group, Examples include aromatic hydrocarbon groups such as biphenylentryyl groups and phenanthrentryyl groups. . Other examples include groups in which one or more hydrogen atoms of the aforementioned group are replaced by bonding sites. The number of carbon atoms in the aromatic hydrocarbon group is preferably 6 to 36, more preferably 6 to 24. Yes, more preferably 6 to 20, even more preferably 6 to 18, and even more preferably 1 The number of layers is preferably 6 to 14, and more preferably 6 to 10.

[0011] As a group combining two or more types, a combination of an alicyclic hydrocarbon group and a chain hydrocarbon group is used. A set group, a group combining an aromatic hydrocarbon group and a chain hydrocarbon group, an alicyclic hydrocarbon group and an aromatic group. Groups combined with aromatic hydrocarbon groups, alicyclic hydrocarbon groups and chain hydrocarbon groups and aromatic hydrocarbon water Examples include groups that combine with elementary groups. In combination, alicyclic hydrocarbon groups and aromatic groups are examples. Two or more types of phalangeal hydrocarbon groups and chain-like hydrocarbon groups may be combined. The base is X 1 They may be bound together. Examples of groups combining alicyclic hydrocarbon groups and chain hydrocarbon groups include chain hydrocarbon groups. A group in which an alicyclic hydrocarbon group is bonded to an elementary group (for example, *-chain hydrocarbon group-alicyclic hydrocarbon group) -etc.), a group in which a chain hydrocarbon group is bonded to an alicyclic hydrocarbon group (for example, *-alicyclic hydrocarbon) (Method - chain hydrocarbon group - etc.), a chain hydrocarbon group bonded to an alicyclic hydrocarbon group and another chain hydrocarbon group. Groups such as *-chain hydrocarbon group-alicyclic hydrocarbon group-chain hydrocarbon group-, etc. A group in which a chain hydrocarbon group and an alicyclic hydrocarbon group are bonded to a compound hydrocarbon group (for example, *-alicyclic hydrocarbon) Hydrogen group - chain hydrocarbon group - alicyclic hydrocarbon group - etc.), chain hydrocarbon group with alicyclic hydrocarbon A group formed by the bonding of a chain hydrocarbon group and an alicyclic hydrocarbon group (for example, *-chain hydrocarbon group-alicyclic hydrocarbon group). (Rectangular hydrocarbon group - Chain hydrocarbon group - Alicyclic hydrocarbon group - etc.), Alicyclic hydrocarbon group with chain hydrocarbon A group formed by the bonding of a hydrogen carbonate group, an alicyclic hydrocarbon group, and a chain hydrocarbon group (for example, *-alicyclic hydrocarbon). Examples include elemental group - chain hydrocarbon group - alicyclic hydrocarbon group - chain hydrocarbon group - etc. Examples of groups combining aromatic hydrocarbon groups and chain hydrocarbon groups include chain hydrocarbon groups. A group in which an aromatic hydrocarbon group is bonded to an elementary group (for example, *-chain hydrocarbon group-aromatic hydrocarbon group) -etc.), a group in which a chain hydrocarbon group is bonded to an aromatic hydrocarbon group (for example, *-aromatic hydrocarbons) (Method - Chain hydrocarbon group - etc.), Aromatic hydrocarbon groups and chain hydrocarbon groups are bonded to a chain hydrocarbon group. Examples of such groups include *-chain hydrocarbon group-aromatic hydrocarbon group-chain hydrocarbon group-, etc. It can be done. As a group that combines an alicyclic hydrocarbon group and an aromatic hydrocarbon group, the alicyclic hydrocarbon group A group to which an aromatic hydrocarbon group is bonded (for example, *-alicyclic hydrocarbon group-aromatic hydrocarbon group- (e.g., a group in which an alicyclic hydrocarbon group is bonded to an aromatic hydrocarbon group (for example, *-aromatic hydrocarbons) (e.g., a group formed by the condensation of an alicyclic hydrocarbon group and an aromatic hydrocarbon group), For example, the following groups (with the bonding site at any position) are examples. TIFF2026066273000017.tif22165As a group that combines alicyclic hydrocarbon groups, chain hydrocarbon groups, and aromatic hydrocarbon groups, A group in which an aromatic hydrocarbon group and a chain hydrocarbon group are bonded to an alicyclic hydrocarbon group (for example, *-alicyclic (Formula hydrocarbon group - aromatic hydrocarbon group - chain hydrocarbon group - etc.), alicyclic carbon with aromatic hydrocarbon group A group formed by the bonding of a hydrogen carbonate group and a chain-like hydrocarbon group (for example, *-aromatic hydrocarbon group-alicyclic hydrocarbon group). Examples include elementary groups, chain-type hydrocarbon groups, etc. * is X 1 This represents the connection point. In the case of combined groups or groups having substituents, groups with different valencies (A Lukyl group, alkanediyl group, alkanetriyl group, cycloalkyl group, cycloalkane It may contain diyl groups, cycloalkanetriyl groups, etc.

[0012] L 1 The -CH2- groups in hydrocarbon groups with 1 to 60 carbon atoms are -O-, -S-, and -SO It may be replaced with 2- or -CO-. L 1 The -CH2- group in hydrocarbon groups with 1 to 60 carbon atoms is -O-, -S-, or -SO2 -If replaced by -CO-, the number of carbon atoms before replacement is equal to the number of carbon atoms in the hydrocarbon group. Let's assume that. The -CH2- contained in the hydrocarbon group is replaced by -O-, -S-, -SO2-, or -CO-. The replaced group is the hydroxyl group (where the -CH2- contained in the methyl group is replaced by -O-). (The replaced group), carboxyl group (the -CH2-CH2- contained in the ethyl group is -O-CO- (A group that has been replaced by a thiol group) (The -CH2- contained in the methyl group is replaced by an -S-) (A split group), an alkoxy group (where -CH2- is at any position within the alkyl group, -O- (a group replaced by), alkylthio group (a -CH2- at any position within the alkyl group) However, the group replaced by -S-, alkylsulfonyl group (any group contained within the alkyl group) (A group in which the -CH2- at the position is replaced by -SO2-), an alkoxycarbonyl group (alkoxy (A group in which any -CH2-CH2- at any position in the group is replaced by -O-CO-), Alkylcarbonyl group (where any -CH2- in the alkyl group is converted to -CO-) (Replaced group), alkylcarbonyloxy group (any position contained within the alkyl group) (A group in which -CH2-CH2- is replaced by -CO-O-), an oxy group (contained within the methylene group) A group in which -CH2- is replaced by -O-, a carbonyl group (contained within a methylene group) (A group in which -CH2- is replaced by -CO-), an alkanediyloxy group (alkanediyl Alkanediyl (a group in which any -CH2- at any position within the group is replaced by -O-) The oxycarbonyl group (the -CH2-CH2- at any position within the alkanediyl group) (a group replaced by -O-CO-), an alkanediyl carbonyl group (with an alkanediyl group) (A group in which any -CH2- at any position is replaced by -CO-), alkanediylcal Bonyloxy group (where any -CH2-CH2- is located within the alkanediyl group, -C (A group replaced by OO-), an alkanediylthio group (a group contained within the alkanediyl group) (A group in which the -CH2- at the right position is replaced by -S-), an alkanediylsulfonyl group ( (A group in which any -CH2- at any position within the rucandiyl group is replaced by -SO2-) , cycloalkoxy group, cycloalkylalkoxy group, alkoxycarbonyloxy group, Aromatic hydrocarbon group-carbonyloxy group, aromatic hydrocarbon group-carbonyl group, aromatic carbon Examples include hydrogen group-oxy group, and groups combining two or more of these groups. Other examples include groups in which one or more hydrogen atoms of these groups are replaced by bonding sites. Examples of alkoxy groups include alkoxy groups having 1 to 17 carbon atoms, such as methoxy. Group, ethoxy group, propoxy group, butoxy group, pentyloxy group, hexyloxy group, o Cutyloxy group, 2-ethylhexyloxy group, nonyloxy group, decyloxy group, un Examples include decyloxy groups. The number of carbon atoms in the alkoxy group is preferably 1 to 11. More preferably 1 to 6, even more preferably 1 to 4, and even more preferably 1 It is ~3. Examples of alkylthio groups include alkylthio groups having 1 to 17 carbon atoms, for example, methyl Examples include ruthio groups, ethylthio groups, propylthio groups, and butylthio groups. The number of carbon atoms in the group is preferably 1 to 11, more preferably 1 to 6, and even more preferably k is 1 to 4, and more preferably 1 to 3. Examples of alkylsulfonyl groups include alkylsulfonyl groups having 1 to 17 carbon atoms. Examples include methylsulfonyl groups, ethylsulfonyl groups, and propylsulfonyl groups. The alkylsulfonyl group has preferably 1 to 11 carbon atoms, and more preferably 1 carbon atoms. It is ~6, more preferably 1~4, and even more preferably 1~3. Alkoxycarbonyl groups, alkylcarbonyl groups, and alkylcarbonyloxy groups are A carbonyl group or carbonyloxy group is bonded to the alkyl group or alkoxy group mentioned above. It represents the basis. Examples of alkoxycarbonyl groups include alkoxycarbonyl groups having 2 to 17 carbon atoms. For example, methoxycarbonyl groups, ethoxycarbonyl groups, butoxycarbonyl groups, etc. Examples include alkylcarbonyl groups with 2 to 18 carbon atoms. Examples include acetyl groups, propionyl groups, and butyryl groups. Examples of carbonyloxy groups include alkylcarbonyloxy groups having 2 to 17 carbon atoms. Examples include acetyloxy groups, propionyloxy groups, and butyryloxy groups. The number of carbon atoms in the alkoxycarbonyl group is preferably 2 to 11, and more preferably 2. ~6, more preferably 2~4, and even more preferably 2 or 3. The number of carbon atoms in the lucylcarbonyl group is preferably 2 to 12, more preferably 2 to 6. More preferably 2 to 4, and even more preferably 2 or 3. The number of carbon atoms in the rubonyloxy group is preferably 2 to 11, more preferably 2 to 6. More preferably 2 to 4, and even more preferably 2 or 3. Examples of alkanediyloxy groups include those with 1 to 17 carbon atoms. For example, methyleneoxy group, ethyleneoxy group, propanediyloxy group, butanedi Examples include yloxy groups and pentanediyloxy groups. The number is preferably 1 to 11, more preferably 1 to 6, and even more preferably 1 to It is 4, and more preferably 1 to 3.

[0013] Alkanediyloxycarbonyl groups include those with 2 to 17 carbon atoms. Examples of carbonyl groups include methyleneoxycarbonyl groups and ethyleneoxycarbonyl groups. Examples include the nyl group, propanediyloxycarbonyl group, and butanediyloxycarbonyl group. It can be. As for the alkanediylcarbonyl group, alkanediylcarbonyl groups with 2 to 18 carbon atoms are available. Examples include the nyl group, such as the methylenecarbonyl group, ethylenecarbonyl group, and propanedi Examples include ylcarbonyl groups, butanediylcarbonyl groups, and pentanediylcarbonyl groups. Alkanediylcarbonyloxy groups include alkanediylcarbonyl groups with 2 to 17 carbon atoms. Examples of carbonyloxy groups include methylenecarbonyloxy groups and ethylenecarbonyloxy groups. Luoxy group, propanediylcarbonyloxy group, butanediylcarbonyloxy group, etc. For example, the number of carbon atoms in the alkanediyloxycarbonyl group is preferably 2 to 11. , more preferably 2 to 6, even more preferably 2 to 4, even more It is 2 or 3. The number of carbon atoms in the alkanediylcarbonyl group is preferably 2 to 12. More preferably 2 to 6, even more preferably 2 to 4, and even more preferably 2 Or 3. The number of carbon atoms in the alkanediylcarbonyloxy group is preferably 2 to 11. more preferably 2 to 6, even more preferably 2 to 4, and even more preferably It is either 2 or 3. Examples of alkanediylthio groups include those with 1 to 17 carbon atoms. Examples include methylenethio groups, ethylenethio groups, and propylenethio groups. The number of carbon atoms in the diylthio group is preferably 1 to 11, more preferably 1 to 6. More preferably, the values ​​are 1 to 4, and even more preferably, 1 to 3. Examples of alkanediylsulfonyl groups include alkanediylsulfonyl groups having 1 to 17 carbon atoms. Examples include methylene sulfonyl group, ethylene sulfonyl group, and propylene sulfonyl group. Examples include the nyl group. The number of carbon atoms in the alkanediylsulfonyl group is preferably 1 to 11. Yes, more preferably 1 to 6, even more preferably 1 to 4, even more preferably The values ​​are 1 to 3. Examples of cycloalkoxy groups include cycloalkoxy groups with 3 to 17 carbon atoms, for example Examples include cyclohexyloxy groups. Examples of cycloalkylalkoxy groups include carbon Examples include cycloalkylalkoxy groups with prime numbers 4 to 17, for example, cyclohexylmethyl Examples include alkoxycarbonyloxy groups, which have 2 to 16 carbon atoms. Examples include xycarbonyloxy groups, such as the butoxycarbonyloxy group. Aromatic hydrocarbon groups - carbonyloxy groups include aromatic hydrocarbons with 7 to 17 carbon atoms. Examples of carbonyloxy groups include the benzoyloxy group. Carbonyl groups include aromatic hydrocarbon groups with 7 to 17 carbon atoms. Examples of groups include the benzoyl group. Aromatic hydrocarbon group-oxy group Examples include aromatic hydrocarbon groups with 6 to 16 carbon atoms, such as phenyloxy. Examples include the C group. Furthermore, the -CH2- contained in the alicyclic hydrocarbon group may be -O-, -S-, -CO-, or -S The following are examples of groups that have been replaced by O2-. Furthermore, the following groups are also included. Examples include those in which -O- or -CO- is replaced with -S- or -SO2-. Bonding part The position can be any position. TIFF2026066273000018.tif46168 The -CH2- contained in the combined group is -O-, -S-, -CO- or -SO2- Other possible replacement groups include the following. The bonding site can be at any position. can. TIFF2026066273000019.tif36162

[0014] L 1 The substituents that may be present are a hydroxyl group, a carboxyl group, a halogen atom, and a hydroxyl group. A group, alkyl group with 1 to 12 carbon atoms, alkoxy group with 1 to 12 carbon atoms, group with 2 to 13 carbon atoms Alkoxycarbonyl groups, alkylcarbonyl groups with 2 to 13 carbon atoms, Examples include alkylcarbonyloxy groups or groups combining these. Examples of halogen atoms include fluorine, chlorine, bromine, and iodine. ru. Examples of alkyl groups with 1 to 12 carbon atoms include methyl, ethyl, propyl, and isopropyl groups. butyl group, butyl group, isobutyl group, tert-butyl group, pentyl group, hexyl group, octyl Examples include the yl group and the nonyl group. Examples of alkoxy groups having 1 to 12 carbon atoms include methoxy, ethoxy, propoxy, and b Toxy group, pentyloxy group, hexyloxy group, octyloxy group, 2-ethylhexyl oxy group, nonyloxy group, decyloxy group, undecyloxy group, dodecyloxy group These are some examples. Alkoxycarbonyl groups having 2 to 13 carbon atoms, alkylcarbonyl groups having 2 to 13 carbon atoms, and The alkylcarbonyloxy group having 2 to 13 carbon atoms is the alkyl or alkoxy group described above. This represents a group to which a carbonyl group or a carbonyloxy group is bonded. Examples of alkoxycarbonyl groups with 2 to 13 carbon atoms include the methoxycarbonyl group and the ethoxycarbonyl group. Examples include carbonyl groups and butoxycarbonyl groups, which are alkylcarbonyl groups with 2 to 13 carbon atoms. Examples of acetyl groups include acetyl groups, propionyl groups, and butyryl groups, with 2 to 1 carbon atoms. The alkylcarbonyloxy groups of 3 include acetyloxy groups and propionyloxy groups. Examples include butyryloxy groups. The substituent is preferably an alkyl group having 1 to 4 carbon atoms, a hydroxyl group, or a halogen atom. It seems so.

[0015] L 1 This refers to a chain-like hydrocarbon group having 1 to 10 carbon atoms, which may have single bonds or substituents (however, the chain The -CH2- group in the formula hydrocarbon group may be replaced with -O- or -CO-. ), a cyclic hydrocarbon group having 3 to 24 carbon atoms which may have substituents (however, the cyclic hydrocarbon group may have substituents Even if the contained -CH2- is replaced by -O-, -S-, -CO- or -SO2- It is fine.) Or it may have substituents. A chain hydrocarbon group having 1 to 8 carbon atoms and substituents. A group formed by combining a cyclic hydrocarbon group having 3 to 24 carbon atoms (however, the chain-type hydrocarbon group The -CH2- contained therein may be replaced by -O- or -CO-, and the cyclic hydrocarbon The -CH2- contained in the group is replaced by -O-, -S-, -SO2-, or -CO-. It is preferable that it be a chain formula having 1 to 8 carbon atoms, which may have single bonds and substituents. Hydrocarbon group (however, the -CH2- contained in the chain-like hydrocarbon group shall be replaced with -O- or -CO-) A cyclic hydrocarbon group having 3 to 20 carbon atoms may have substituents (however, it may be replaced.) Furthermore, the -CH2- contained in the cyclic hydrocarbon group is -O-, -S-, -CO-, or -SO2 - May be replaced by ) or a chain hydrocarbon having 1 to 6 carbon atoms which may have substituents A group formed by combining a group with a cyclic hydrocarbon group having 3 to 20 carbon atoms which may have substituents (however Furthermore, the -CH2- contained in the chain-like hydrocarbon group is replaced by -O- or -CO-. Also, the -CH2- contained in the cyclic hydrocarbon group is -O-, -S-, -SO2- or - It may be replaced by CO-.) More preferably, it has a single bond and substituents. A chain-like hydrocarbon group having 1 to 7 carbon atoms may be (provided that the chain-like hydrocarbon group contains -CH2- (may be replaced by -O- or -CO-), may have substituents, C3 ~18 cyclic hydrocarbon groups (however, the -CH2- contained in the cyclic hydrocarbon group is -O- or -CO- may be replaced.) or chain carbon having 1 to 5 carbon atoms which may have substituents. Combining a hydrogenated group with a cyclic hydrocarbon group having 3 to 18 carbon atoms, which may have substituents. The group (however, the -CH2- contained in the chain-like hydrocarbon group is replaced by -O- or -CO-) It is also possible that the -CH2- contained in the cyclic hydrocarbon group is replaced with -O- or -CO- It is acceptable if it is understood. It is even more preferable if it is understood. Also, *-L 1 -R 10 This is a base represented by any of the formulas (L1-0) to (L1-5). It is also preferable that it be so. TIFF2026066273000020.tif98148[Formula (L1-0)~Formula (L1-5), Ring W, R1 m1 and m2 have the same meaning as above. L 2 This is a chain-like hydrocarbon group having 1 to 10 carbon atoms, which may have substituents. A cyclic hydrocarbon group having 3 to 24 carbon atoms or a cyclic carbide having 3 to 24 carbon atoms or substituents. This represents a group that combines a hydrogen group with a chain-like hydrocarbon group having 1 to 8 carbon atoms, which may have substituents. The -CH2- contained in the cyclic hydrocarbon group is -O-, -S-, -CO- or -SO2- It may be replaced by -CH2- contained in the chain hydrocarbon group, -O- or -C It may be replaced with O-. L 3 and L 4 Each of these is independently a chain having 1 to 8 carbon atoms, which may have single bonds or substituents. The formula represents a hydrocarbon group, and the -CH2- contained in the chain-like hydrocarbon group is either -O- or -CO-. It's okay if it's been replaced. L 5 and L 6 Each of these independently comprises a single bond or a carbon atom having 1 to 10 carbon atoms which may have substituents. This represents a chain-like hydrocarbon group, and the -CH2- contained in the chain-like hydrocarbon group is either -O- or -CO- It may be replaced by this. Ring W3 represents a cyclic hydrocarbon group having 3 to 24 carbon atoms, which may have substituents, and the cyclic carbon The -CH2- contained in the hydrogen group is replaced by -O-, -S-, -CO-, or -SO2-. It's fine if you do that. Rings W4 and W5 are each independently cyclic carbon atoms having 3 to 18 carbon atoms, which may have substituents. Representing a hydrogenated group, the -CH2- contained in the cyclic hydrocarbon group is -O-, -S-, -CO- Alternatively, it may be replaced with -SO2-. X 3 is **-CO-O-, **-O-CO-, **-O-CO-O- or **-O- It represents. X a and X b These represent either -O- or -S- independently. X 01 This represents a hydrocarbon group having 1 to 40 carbon atoms, which may have substituents. Even if the contained -CH2- is replaced by -O-, -S-, -CO- or -SO2- good. R 21 and R 22 These are, independently, a halogen atom, a hydroxyl group, and a carbon atom with 1 to 12 carbon atoms. Haloalkyl groups, alkyl groups having 1 to 12 carbon atoms, alicyclic hydrocarbon groups having 3 to 18 carbon atoms or This represents a group formed by combining these, and the haloalkyl group, the alkyl group, and the alicyclic hydrocarbon The -CH2- group contained in the group may be replaced by -O- or -CO-. m21 represents an integer from 0 to 6, and when m21 is 2 or greater, multiple R 21 they They may be the same or different. m22 represents an integer from 0 to 6, and when m22 is 2 or greater, multiple R 22 they They may be the same or different. * is X 1 This represents the connection site with L. 2 This represents the connection point with [the other element]. Note that among the groups represented by formulas (L1-1) to (L1-5), L 1 The part corresponding to (however (Excluding substituents.) The total number of carbon atoms in each component is 60 or less. Note that the combination of chain hydrocarbon groups and cyclic hydrocarbon groups here is *-chain hydrocarbon Base-alicyclic hydrocarbon group or aromatic hydrocarbon group-, *-alicyclic hydrocarbon group or aromatic hydrocarbon water Elementary group - chain hydrocarbon group -, * - chain hydrocarbon group - alicyclic hydrocarbon group or aromatic hydrocarbon group -Chain hydrocarbon group-, *-Alicyclic hydrocarbon group or aromatic hydrocarbon group-Chain hydrocarbon group-Alicyclic hydrocarbon group Cyclic hydrocarbon groups or aromatic hydrocarbon groups -, *-chain hydrocarbon groups - alicyclic hydrocarbon groups and aroma Groups formed by the condensation of alicyclic hydrocarbon groups, and groups formed by the condensation of alicyclic hydrocarbon groups and aromatic hydrocarbon groups. Chain hydrocarbon group -, *-chain hydrocarbon group-alicyclic hydrocarbon group and aromatic hydrocarbon group condense Examples include groups such as chain hydrocarbon groups. * is X 1 This represents the connection point.

[0016] The substituents that each group may have are L 1 Similar to the groups listed as substituents that may be present. Examples include: L 2 The cyclic hydrocarbon group can be an alicyclic hydrocarbon group, an aromatic hydrocarbon group, or a compound of these. Examples of combined bases include L 1 Examples similar to the bases exemplified above can be given. L 2 As for the chain-like hydrocarbon group, L 1 Examples similar to the bases exemplified above can be given. Among them, L 2 Examples include a chain-like hydrocarbon group having 1 to 8 carbon atoms which may have substituents (the chain The -CH2- group in the formula hydrocarbon group may be replaced with -O- or -CO-. ), a cyclic hydrocarbon group having 3 to 20 carbon atoms which may have substituents (contained within the cyclic hydrocarbon group) -CH2- may be replaced by -O-, -S-, -CO-, or -SO2-. ) or a cyclic hydrocarbon group having 3 to 20 carbon atoms which may have substituents and carbon which may have substituents A group that combines a chain-like hydrocarbon group with prime numbers 1 to 6 (the -CH2 contained in the cyclic hydrocarbon group) - may be replaced by -O-, -S-, -CO- or -SO2-, and the chain carbonization The -CH2- contained in the hydrogen group may be replaced with -O- or -CO-. A chain-like hydrocarbon group having 1 to 6 carbon atoms, which may have substituents (contained in the chain-like hydrocarbon group) The -CH2- group may be replaced with -O- or -CO-. A good cyclic hydrocarbon group having 3 to 18 carbon atoms (the -CH2- contained in the cyclic hydrocarbon group is - It may be replaced by O-, -S-, -CO- or -SO2-.) or has a substituent. A cyclic hydrocarbon group having 3 to 18 carbon atoms may have substituents, and a chain-type carbon group having 1 to 4 carbon atoms may have substituents. Groups combined with hydrogenated groups (the -CH2- contained in the cyclic hydrocarbon group are -O-, -S -, -CO- or -SO2- may be replaced, and the chain hydrocarbon group may contain - CH2- may be replaced with -O- or -CO-. ) is more preferable. L 3 , L 4 , L 5 and L 6 As for the chain-like hydrocarbon group, L 1 Similar to the base exemplified above This is one example. Among them, L 3 This is a chain-like hydrocarbon group having 1 to 6 carbon atoms, which may have single bonds or substituents. Preferably, a single bond or a chain hydrocarbon group having 1 to 4 carbon atoms is preferred, and more preferably, a single bond or methylene group. A group or an ethylene group is more preferable, and a single bond or a methylene group is even more preferable. L 4 This refers to a chain-like hydrocarbon group having 1 to 6 carbon atoms, which may have single bonds or substituents (the chain-like hydrocarbon group The -CH2- contained in the hydrogen group may be replaced with -O- or -CO-. In addition, single bonds or chain hydrocarbon groups having 1 to 5 carbon atoms (the chain hydrocarbon group contains -CH 2- may be replaced by -O- or -CO-. ) is more preferably a single bond or A chain-like hydrocarbon group having 1 to 4 carbon atoms (the -CH2- contained in the chain-like hydrocarbon group is -O- or It may be replaced by -CO-.) More preferably, a single bond or a chain having 1 to 3 carbon atoms. Formula hydrocarbon group (the -CH2- contained in the chain hydrocarbon group is replaced with -O- or -CO-) It may be divided.) is even more preferable, and a single bond or a chain hydrocarbon group having 1 to 3 carbon atoms is Even more preferable. L 5 This refers to a chain-like hydrocarbon group having 1 to 8 carbon atoms, which may have single bonds or substituents (the chain-like hydrocarbon group The -CH2- contained in the hydrogen group may be replaced with -O- or -CO-. A single bond or a chain hydrocarbon group having 1 to 6 carbon atoms (the chain hydrocarbon group contains -CH 2- may be replaced by -O- or -CO-. ) is more preferably a single bond or A chain-like hydrocarbon group having 1 to 4 carbon atoms (the -CH2- contained in the chain-like hydrocarbon group is -O- or It may be replaced with -CO-. ) is even more preferable. L 6 This refers to a chain-like hydrocarbon group having 1 to 8 carbon atoms, which may have single bonds or substituents (the chain-like hydrocarbon group The -CH2- contained in the hydrogen group may be replaced with -O- or -CO-. A single bond or a chain hydrocarbon group having 1 to 6 carbon atoms (the chain hydrocarbon group contains -CH 2- may be replaced by -O- or -CO-. ) is more preferably a single bond or A chain-like hydrocarbon group having 1 to 4 carbon atoms (the -CH2- contained in the chain-like hydrocarbon group is -O- or It may be replaced with -CO-. ) is even more preferable.

[0017] The cyclic hydrocarbon groups of rings W3, W4, and W5 include alicyclic hydrocarbon groups and aromatic carbon groups. Examples include hydrogen groups or groups formed by condensing them, L 1 Similar to the example given, It can be done. Also, ring W3 is connected to ring W4 and X a and X band X 01 It can also be represented as a ring containing can. Examples of rings W3, W4, and W5 include groups derived from the following rings. TIFF2026066273000021.tif74160[Formula (w1-1)~Formula (w1-26), The group may have substituents, and the -CH2- contained in the group may be -O-, -S-, or -C It may be replaced by O- or -SO2-. The binding site is at any position. Here, a ring-derived group is a group that has a bonding site at any position in the ring and is included in the ring. A group in which -CH2- may be replaced by -O-, -S-, -CO- or -SO2- It means. Ring W3 is a cyclic hydrocarbon group having 3 to 20 carbon atoms, which may have substituents (the cyclic hydrocarbon group The -CH2- contained in is replaced by -O-, -S-, -CO- or -SO2-. It is also fine.) is preferred, and the ring is represented by any of formulas (w1-1) to (w1-26). The resulting base is more preferable, formulas (w1-1) to (w1-3), formula (w1-6), formula (w1 -12) Expressed by either equation (w1-18) or equation (w1-22) or equation (w1-26) A group derived from a ring is even more preferred, such as formula (w1-1), formula (w1-2), and formula (w1-1 3) Equations (w1-15) to (w1-18), (w1-22), (w1-24) and A group derived from a ring represented by any of the formulas (w1-26) is even more preferred. Ring W4 is an alicyclic hydrocarbon group having 3 to 18 carbon atoms, which may have substituents (alicyclic hydrocarbon water The -CH2- contained in the elementary group is replaced by -O-, -S-, -CO-, or -SO2-. It may be present.) is preferred, and the ring is represented by any of formulas (w1-1) to (w1-21). A group derived from formula (w1-1), formula (w1-2), formula (w1-3), or formula A group derived from a ring represented by (w1-6) is even more preferred, such as formula (w1-1) or formula (w1 A group derived from the ring represented by (-2) is even more preferable. Ring W5 is an alicyclic hydrocarbon group having 3 to 18 carbon atoms, which may have substituents (alicyclic hydrocarbon water The -CH2- contained in the elementary group is replaced by -O-, -S-, -CO-, or -SO2-. It may be present.) is preferred, and the ring is represented by any of formulas (w1-1) to (w1-21). A group derived from formula (w1-1), formula (w1-2), formula (w1-3), or formula A group derived from a ring represented by (w1-6) is even more preferred, such as formula (w1-1) or formula (w1 A group derived from the ring represented by (-2) is even more preferable.

[0018] X 3 **-CO-O-, **-O-CO-, or **-O-CO-O- are preferred. X a and X b It is preferable that they are the same atom, and more preferably that they are both oxygen atoms. It's nice.

[0019] R 21 and R 22 halogen atoms, haloalkyl groups, alkyl groups and alicyclic hydrocarbon groups For example, R 1 Examples similar to the bases exemplified below can be given. R 21 and R 22 These are halogen atoms, hydroxyl groups, and haloalkyl groups having 1 to 6 carbon atoms. Alkyl groups having 1 to 6 carbon atoms, alicyclic hydrocarbon groups having 3 to 18 carbon atoms (the haloalkyl group, the The -CH2- contained in the alkyl group and the alicyclic hydrocarbon group is replaced with -O- or -CO-. They may be replaced, and the alkyl group and the alicyclic hydrocarbon group may have a halogen atom. Good.) Or a combination of these is preferred. m21 is preferably an integer between 0 and 3, and is 0, 1, or 2. More preferably, it is 0 or even more preferably 1. m22 is preferably an integer between 0 and 4, and can be 0, 1, 2, or 4. It is more preferable that it is 0 or 1.

[0020] X 01 Examples of hydrocarbon groups in this context include chain hydrocarbon groups, alicyclic hydrocarbon groups, and aromatic carbon groups. Examples include cyclic hydrocarbon groups such as hydrogen groups, and groups formed by combining two or more of these groups are also acceptable. , L 1 Examples similar to the bases exemplified above can be given.

[0021] X 01 Examples include the following groups. * indicates a bonding site. The base is X a and X b They may be bound together. TIFF2026066273000022.tif40135 Here, L 11 This represents a hydrocarbon group having 1 to 18 carbon atoms, which may have single bonds or substituents. Furthermore, the -CH2- contained in the hydrocarbon group becomes -O-, -S-, -SO2-, or -CO- It's okay if it's been replaced. The total number of carbon atoms in each of the above groups (excluding substituents) is 40 or less. L 11 Examples of hydrocarbon groups include chain hydrocarbon groups, alicyclic hydrocarbon groups, and aromatic hydrocarbon groups. Examples include cyclic hydrocarbon groups such as, and may also be groups formed by combining two or more of these groups, L 1 Examples similar to the bases exemplified above can be given. L11 This includes single bonds, chain hydrocarbon groups having 1 to 8 carbon atoms which may have substituents, and substituents A cyclic hydrocarbon group having 3 to 12 carbon atoms or a C3 to 12 carbon atom group which may have substituents A combination of a cyclic hydrocarbon group and a chain hydrocarbon group having 1 to 6 carbon atoms, which may have substituents. The group (the -CH2- contained in the cyclic hydrocarbon group is -O-, -S-, -CO-, or -SO2) - may be replaced by -CH2- contained in the chain hydrocarbon group, -O- or - It may be replaced with CO-. ) is preferable.

[0022] X 01 The following bases are preferred. In particular, formula (X 1 -1), formula (X 1 -3) and Expression(X 1 -5)~Formula(X 1 It is preferable that the group is represented by any of the formulas (X 1 -1), formula (X 1 -3) or formula (X 1 It is more preferable that the group be represented by -5). TIFF2026066273000023.tif25162[expression(X 1 -1), formula (X 1 -3), formula (X 1 -5)~Formula(X 1 -7), formula (X 1 -12) and formula (X 1 -13) Middle, L 11 This represents a hydrocarbon group having 1 to 18 carbon atoms, which may have single bonds or substituents. The -CH2- contained in the hydrogenated group is replaced by -O-, -S-, -SO2-, or -CO-. It's okay to do that. * indicates a connection site.

[0023] X 01 Among them, equation (X 2 -1), formula (X2 -3), formula (X 2 -5)~Formula(X 2 -7) , the expression (X 2 -21), formula (X 2 -23) and formula (X 2 A group represented by any of the following (-25) It is preferable to do so. TIFF2026066273000024.tif61138[formula(X 2 -1), formula (X 2 -3), formula (X 2 -5)~Formula(X 2 -7), formula (X 2 -twenty one) , the expression (X 2 -23) and formula (X 2 -25) Medium, * indicates a connection site.

[0024] The alicyclic hydrocarbon group in ring W is either monocyclic or polycyclic (spiro ring, fused ring, or bridge). It may be any of the following (including cycloidal rings, etc.), and may be either saturated or unsaturated. Alicyclic hydrocarbons Examples of bases include the following. The bonding site can be at any position. ru. TIFF2026066273000025.tif47168 For example, cycloalkyl groups, cycloalkanediyl groups, and other 1-2 valent alicyclic hydrocarbon groups These are some examples. Specifically, monocyclic alicyclic hydrocarbon groups include cyclopropyl groups and cyclobutyl groups. Cyclopentyl group, cyclohexyl group, cycloheptyl group, cyclooctyl group, cyclodecyl Monocyclic cycloalkyl groups such as syl groups, cyclopropanediyl groups, cyclobutanediyl groups, Monocyclic groups such as cyclopentanediyl, cyclohexanediyl, and cyclooctanediyl groups Examples include cycloalkanediyl groups. Examples of polycyclic alicyclic hydrocarbon groups include decahydr Ronaphthyl group, adamantyl group, norbornyl group, bicyclo[3.3.0]octyl group, etc. Polycyclic cycloalkyl group, decahydronaphthalenediyl group, adamantanediyl group, nor Polycyclic cycloalkanes such as bornanediyl groups and bicyclo[3.3.0]octanediyl groups Examples include yl groups. Furthermore, the -CH2- contained in the alicyclic hydrocarbon group may be -O-, -S-, -CO-, or -S The following are examples of groups that have been replaced by O2-. Furthermore, the following groups are also included. Examples include those in which -O- or -CO- is replaced with -S- or -SO2-. Bonding part The position can be any position. TIFF2026066273000026.tif46168 The number of carbon atoms in the alicyclic hydrocarbon group is preferably 3 to 24, more preferably 3 to 20. Yes, more preferably 3 to 18, even more preferably 3 to 16, and even more preferably 1 The number of layers is preferably 3 to 12, and more preferably 3 to 10. Ring W is an alicyclic hydrocarbon group having 3 to 20 carbon atoms (the alicyclic hydrocarbon group contains -CH2 - may be replaced with -O-, -S-, -CO-, or -SO2-. ) is preferred. A cycloaliphatic hydrocarbon group having 3 to 18 carbon atoms (the -CH2- contained in the cycloaliphatic hydrocarbon group is -O-, -S-, -CO-, or -SO2- may be substituted. ) is more preferable. Furthermore, a group derived from a ring represented by any of the formulas (w1-1) to (w1-21) is preferred. Furthermore, the base originates from the ring represented by formula (w1-1), and the base originates from the ring represented by formula (w1-2). The group derived from the ring represented by formula (w1-3), the group derived from the ring represented by formula (w1-6) A group derived from a ring represented by formula (w1-15) is even more preferable, and a group derived from a ring represented by formula (w1-15) is even more preferable, and A group derived from the ring represented by formula (w1-2) or a group derived from the ring represented by formula (w1-2) preferable. TIFF2026066273000027.tif50168[Formula (w1-1) to formula (w1-21), The -CH2- contained in the group is replaced by -O-, -S-, -CO-, or -SO2-. It may be done. The connection point can be at any position. Here, a ring-derived group is a group that has a bonding site at any position in the ring and is included in the ring. A group in which -CH2- may be replaced by -O-, -S-, -CO- or -SO2- It means.

[0025] R 1 Examples of halogen atoms include fluorine, chlorine, bromine, and iodine. It can be done. R 1 In this context, a C1-C12 haloalkyl group refers to a C1-C12 group that has a halogen atom. This represents an alkyl group with 1 to 12 carbon atoms, including alkyl fluorides and alkyl chlorides with 1 to 12 carbon atoms. Examples include lucyl groups, alkyl bromides with 1 to 12 carbon atoms, and alkyl iodides with 1 to 12 carbon atoms. It can be given. As a haloalkyl group, a perfluoroalkyl group (trif) having 1 to 12 carbon atoms is used. Luoromethyl group, pentafluoroethyl group, heptafluoropropyl group, nonafluoropropyl group (e.g., tyl group), 2,2,2-trifluoroethyl group, 3,3,3-trifluoropropyl group , 4,4,4-trifluorobutyl group, and 3,3,4,4,4-pentafluorobutyl Examples include groups such as chloromethyl, bromomethyl, and iodomethyl groups. The number of carbon atoms is preferably 1 to 9, more preferably 1 to 6, and even more preferably The range is 1 to 4, and more preferably 1 to 3. R 1Examples of alkyl groups with 1 to 12 carbon atoms include methyl group, ethyl group, propyl group, iso Propyl group, butyl group, isobutyl group, tert-butyl group, pentyl group, hexyl group, Examples of alkyl groups include octyl groups and nonyl groups. The number of carbon atoms in the alkyl group is preferably 1 to 9, more preferably 1 to 6, even more preferably 1 to 4, and even more Preferably, it is 1 to 3. R 1 Examples of alicyclic hydrocarbon groups having 3 to 18 carbon atoms include the cyclopropyl group. , cyclobutyl group, cyclopentyl group, cyclohexyl group, cycloheptyl group, cyclo monocyclic cycloalkyl groups such as culyl and cyclodecyl groups, norbornyl groups, adamantyl Examples include polycyclic cycloalkyl groups such as decahydronaphthyl groups. Alicyclic hydrocarbons The number of carbon atoms in the group is preferably 3 to 16, more preferably 3 to 12, and even more preferably Or, it is between 3 and 10. R 1 -CH2 is included in the haloalkyl group, alkyl group, or alicyclic hydrocarbon group represented by - If replaced by -O- or -CO-, the number of carbon atoms before replacement is the same as the haloal The total number of carbon atoms in the kill group, the alkyl group, or the alicyclic hydrocarbon group. The replaced group is This is a hydroxyl group (a group in which the -CH2- contained in a methyl group is replaced by -O-), A ruboxy group (a group in which the -CH2-CH2- contained in the ethyl group is replaced with -O-CO-) ), alkoxy group (where any -CH2- in the alkyl group is replaced by -O-) (a split group), an alkoxycarbonyl group (a -CH2- at any position within the alkyl group) CH2- is replaced by -O-CO-, alkylcarbonyl group (with alkyl group) (A group in which any -CH2- at any position is replaced by -CO-), alkylcarbonyl The oxy group (where any -CH2-CH2- in the alkyl group is replaced by -CO-O-) (Replaced group), haloalkoxy group (-CH2 at any position within the haloalkyl group) - (a group in which -O- is replaced), haloalkoxycarbonyl group (contained within the haloalkyl group) (A group in which any -CH2-CH2- at any given position is replaced by -O-CO-), haloalkyl A carbonyl group (where -CH2- at any position within a haloalkyl group is replaced with -CO-) (Replaced group), haloalkylcarbonyloxy group (any group contained in the haloalkyl group) (A group in which the -CH2-CH2- at position is replaced by -CO-O-), and of these groups, two or more Examples include bases that combine the above. Examples of alkoxy groups include alkoxy groups having 1 to 11 carbon atoms, such as methoxy. Group, ethoxy group, propoxy group, butoxy group, pentyloxy group, hexyloxy group, o Cutyloxy group, 2-ethylhexyloxy group, nonyloxy group, decyloxy group, un Examples include decyloxy groups. The number of carbon atoms in the alkoxy group is preferably 1 to 6. Preferably, it is 1 to 4, and more preferably 1 to 3. Alkoxycarbonyl groups, alkylcarbonyl groups, and alkylcarbonyloxy groups are A carbonyl group or carbonyloxy group is bonded to the alkyl group or alkoxy group mentioned above. It represents the basis. Examples of alkoxycarbonyl groups include alkoxycarbonyl groups having 2 to 11 carbon atoms. For example, methoxycarbonyl groups, ethoxycarbonyl groups, butoxycarbonyl groups, etc. Examples include alkylcarbonyl groups with 2 to 12 carbon atoms. Examples include acetyl groups, propionyl groups, and butyryl groups, and alkyl groups. Examples of carbonyloxy groups include alkylcarbonyloxy groups having 2 to 11 carbon atoms. Examples include acetyloxy groups, propionyloxy groups, and butyryloxy groups. The number of carbon atoms in the alkoxycarbonyl group is preferably 2 to 6, more preferably 2 to 4. Yes, and more preferably 2 or 3. The number of carbon atoms in the alkylcarbonyl group is preferably It is 2 to 6, more preferably 2 to 4, and even more preferably 2 or 3. The carbon number of the carbon-carbonyloxy group is preferably 2 to 6, more preferably 2 to 4. More preferably, it is 2 or 3. Haloalkoxy group, haloalkoxycarbonyl group, haloalkylcarbonyl group, halo Examples of lucylcarbonyloxy groups include haloalkoxy groups with 1 to 11 carbon atoms and groups with 2 to 1 carbon atoms. 1 haloalkoxycarbonyl group, C2-C12 haloalkylcarbonyl group, C2 Examples include 2 to 11 haloalkylcarbonyloxy groups, for example, 1 of the groups exemplified above. Examples of groups in which the above hydrogen atoms are replaced with halogen atoms include those mentioned above. Furthermore, the -CH2- contained in the alicyclic hydrocarbon group is replaced by -O- or -CO-. Examples of bases include the following. The bonding site can be at any position. TIFF2026066273000028.tif47155m1 is preferably an integer between 0 and 5, and is also an integer between 0 and 4. It is more preferable that it be an integer of any integer from 0 to 3, and even more preferably 0, 1 or It is more preferable that it is 2, and even more preferable that it is 0 or 1. m2 is preferably an integer between 1 and 5, and is also an integer between 1 and 4. It is more preferable that it be 1, 2 or 3, and even more preferable that it be 1 or 2. That is even more preferable. R 1 This includes halogen atoms, hydroxyl groups, C1-C6 haloalkyl groups, and C1-C6 Alkyl groups, alicyclic hydrocarbon groups having 3 to 18 carbon atoms (the haloalkyl group, the alkyl group and The -CH2- contained in the alicyclic hydrocarbon group is replaced by -O- or -CO-. (Also acceptable) or a combination thereof is preferred, and a halogen atom, a hydroxyl group, a carbon-1 group is preferred. A C1-C4 alkyl group, a C1-C4 haloalkyl group, or a C1-C3 alkoxy group is suitable. Preferably, a halogen atom, a hydroxyl group, a perfluoroalkyl group having 1 to 3 carbon atoms or A carbon-1 to carbon-3 alkoxy group is more preferred, along with an iodine atom, a fluorine atom, and a hydroxyl group. A trifluoromethyl group or a methoxy group is even more preferred, and a hydroxyl group is even more preferred. preferable.

[0026] Examples of anions (I) include the following anions. Among them, equation (Ia -1) ~ Formula (Ia-4), Formula (Ia-7) ~ Formula (Ia-11), Formula (Ia-19) ~ Formula ( Anions represented by formulas (Ia-29), (Ia-39) to (Ia-77) are preferred. TIFF2026066273000029.tif217163

[0027] TIFF2026066273000030.tif254166

[0028] TIFF2026066273000031.tif220163

[0029] TIFF2026066273000032.tif240164

[0030] Z +Examples of organic cations include organic onium cations, organic sulfonium cations, and Organic iodonium cation, organic ammonium cation, benzothiazolium cation and Examples include organic phosphonium cations. Among these, organic sulfonium cations are particularly noteworthy. Organic iodonium cations are preferred, and aryl sulfonium cations are more preferred. Specifically, a cation represented by any of formulas (b2-1) to (b2-4) (hereinafter) Depending on the formula number, it may be referred to as "cation (b2-1)," etc. ) is one example.

[0031] In formulas (b2-1) to (b2-4) of TIFF2026066273000033.tif48169, R b4 ~R b6 These are, independently, chain hydrocarbon groups with 1 to 30 carbon atoms and groups with 3 to 36 carbon atoms. This term represents an alicyclic hydrocarbon group or an aromatic hydrocarbon group having 6 to 36 carbon atoms, and is contained in the chain-like hydrocarbon group. The hydrogen atoms present are found in hydroxyl groups, alkoxy groups with 1 to 12 carbon atoms, and lipid groups with 3 to 12 carbon atoms. The alicyclic hydrocarbon group may be substituted with a cyclic hydrocarbon group or an aromatic hydrocarbon group having 6 to 18 carbon atoms. The hydrogen atoms contained in the hydrocarbon group are halogen atoms and aliphatic hydrocarbon groups with 1 to 18 carbon atoms. They may also be substituted with an alkylcarbonyl group or glycidyloxy group having 2 to 4 carbon atoms. The hydrogen atoms contained in the aromatic hydrocarbon group are halogen atoms, hydroxyl groups, and C1- 18 aliphatic hydrocarbon groups, C1-C12 alkyl fluorides, or C1-C12 It may be substituted with a coxy group. R b4 and R b5 These atoms bond with each other and, together with the sulfur atoms they bond to, form a ring. Even if the -CH2- contained in the ring is replaced by -O-, -S-, or -CO- good. R b7 and R b8 These are, independently, a halogen atom, a hydroxyl group, and a lipid with 1 to 12 carbon atoms. Alkaline hydrocarbon groups, C1-C12 alkyl fluorides, or C1-C12 alkoxy groups It represents. m2 and n2 each independently represent an integer between 0 and 5. When m2 is 2 or more, multiple R b7 They may be the same or different, and when n2 is 2 or more, multiple Number R b8 They may be the same or different. R b9 and R b10 Each of these is independently a chain-like hydrocarbon group having 1 to 36 carbon atoms or a group having 3 to 3 carbon atoms. It represents 36 alicyclic hydrocarbon groups. R b9 and R b10 These atoms bond with each other and, together with the sulfur atoms they bond to, form a ring. It may be done, and the -CH2- contained in the ring may be replaced by -O-, -S- or -CO-. That's good too. R b11 This consists of a hydrogen atom, a chain hydrocarbon group with 1 to 36 carbon atoms, and an alicyclic carbon group with 3 to 36 carbon atoms. This represents a hydrogen group or an aromatic hydrocarbon group having 6 to 18 carbon atoms. R b12 This refers to a chain-type hydrocarbon group having 1 to 12 carbon atoms, an alicyclic hydrocarbon group having 3 to 18 carbon atoms, or This represents an aromatic hydrocarbon group having 6 to 18 carbon atoms, and the hydrogen atoms contained in this chain-like hydrocarbon group are carbon It may be substituted with an aromatic hydrocarbon group having prime numbers 6 to 18, and the aromatic hydrocarbon group contains The hydrogen atom is a carbon-1 to carbon-12 alkoxy group or a carbon-1 to carbon-12 alkyl carbonyl group. It may be substituted with an oxy group. R b11 and R b12 These molecules bond to each other, forming a ring including the -CH-CO- groups to which they are joined. It is also possible that the -CH2- contained in the ring is replaced by -O-, -S-, or -CO-. That's fine. R b13 ~R b18 These are, independently, a halogen atom, a hydroxyl group, and a lipid with 1 to 12 carbon atoms. Alkaline hydrocarbon groups, C1-C12 alkyl fluorides, or C1-C12 alkoxy groups It represents. R b13 and R b14 This refers to the fact that they bond with each other and together with the benzene ring to which they bond, they form sulfurous compounds. A ring containing a child may be formed, and the -CH2- contained in the ring may be -O-, -S-, or -CO - may be used instead. L b31 This represents a sulfur atom or an oxygen atom. o2, p2, s2, and t2 each independently represent an integer between 0 and 5. q2 and r2 each independently represent an integer between 0 and 4. u2 represents either 0 or 1. When o2 is 2 or more, multiple R b13 They are the same or different, and when p2 is 2 or more, multiple R b14 They are the same or different, and when q2 is 2 or more, multiple R b15 They are the same or different, r2 When there are 2 or more R b16 They are the same or different, and when s2 is 2 or more, multiple R b17 teeth If the same or different, and t2 is 2 or more, multiple R b18 They are either the same or different. When u2 is 0, then at least one of o2, p2, q2, and r2 is 1 or greater, and R b1 3 ~R b16 Preferably, at least one of them is a halogen atom, when u2 is 1. , one of o2, p2, s2, t2, q2 and r2 is 1 or more, R b13 ~ R b18 Preferably, at least one of them is a halogen atom. Furthermore, when u2 is 0, it is preferable that r2 is 1 or greater, and even more preferable that it is 1. This is preferable. Also, when u2 is 0 and r2 is 1 or greater, R b16 is a halogen atom It is preferable.

[0032] Aliphatic hydrocarbon groups refer to both chain-type hydrocarbon groups and alicyclic hydrocarbon groups. Examples of chain hydrocarbon groups include methyl, ethyl, propyl, isopropyl, and butyl groups. Group, sec-butyl group, tert-butyl group, pentyl group, hexyl group, octyl group and Examples include alkyl groups with a 2-ethylhexyl group. In particular, R b9 ~R b12 The chain-like hydrocarbon group preferably has 1 to 12 carbon atoms. The alicyclic hydrocarbon group may be monocyclic or polycyclic, and monocyclic alicyclic carbon Examples of hydrogen groups include cyclopropyl group, cyclobutyl group, cyclopentyl group, and cyclohexyl group. Examples of cycloalkyl groups include cycloheptyl, cyclooctyl, and cyclodecyl groups. Examples of polycyclic alicyclic hydrocarbon groups include the decahydronaphthyl group and the adamantyl group. Examples include norbornyl groups and the following groups. TIFF2026066273000034.tif11157 In particular, R b9 ~R b12 The alicyclic hydrocarbon group preferably has 3 to 18 carbon atoms, more preferably These have 4 to 12 carbon atoms.

[0033] As an example of an alicyclic hydrocarbon group in which a hydrogen atom is substituted with an aliphatic hydrocarbon group, methylcyclohex xyl group, dimethylcyclohexyl group, 2-methyladamantan-2-yl group, 2-ethyl Ruadamantan-2-yl group, 2-isopropyladamantan-2-yl group, methyl nor Examples include bornyl groups and isobornyl groups. Hydrogen atoms are substituted with aliphatic hydrocarbon groups. In alicyclic hydrocarbon groups, the total number of carbon atoms in the alicyclic hydrocarbon group and the aliphatic hydrocarbon group is preferable. The number is 20 or less.

[0034] A fluoride alkyl group refers to an alkyl group having 1 to 12 carbon atoms and containing a fluorine atom. Oromethyl group, difluoromethyl group, trifluoromethyl group, perfluorobutyl group, etc. Examples include: The number of carbon atoms in the alkyl fluoride is preferably 1 to 9, and more preferably 1 It is ~6, and more preferably 1~4.

[0035] Aromatic hydrocarbon groups include phenyl, biphenyl, naphthyl, and phenanthryl groups. Examples include aryl groups. Aromatic hydrocarbon groups include chain hydrocarbon groups or alicyclic hydrocarbon groups. It may have an elementary group, and an aromatic hydrocarbon group having a chain-like hydrocarbon group (tolyl group, xyl t-butylphenyl group, cumenyl group, mesityl group, p-ethylphenyl group, p-tert-butylphenyl (e.g., 2,6-diethylphenyl group, 2-methyl-6-ethylphenyl group) and alicyclic carbon Aromatic hydrocarbon groups having a hydrogenated group (p-cyclohexylphenyl group, p-adamantyl group) Examples include phenyl groups, etc. Furthermore, if the aromatic hydrocarbon group has a chain hydrocarbon group or an alicyclic hydrocarbon group, Chain-type hydrocarbon groups with 1 to 18 prime numbers and alicyclic hydrocarbon groups with 3 to 18 carbon atoms are preferred. As an aromatic hydrocarbon group in which a hydrogen atom is substituted with an alkoxy group, p-methoxyphenyl Examples include the 'L' group. Examples of chain hydrocarbon groups in which hydrogen atoms are substituted with aromatic hydrocarbon groups include the benzyl group and the ferrous hydrocarbon group. Netyl group, phenylpropyl group, trityl group, naphthylmethyl group, naphthylethyl group, etc. An example is the aralkyl group.

[0036] Examples of alkoxy groups include methoxy, ethoxy, propoxy, butoxy, and pentoxy groups. oxy group, hexyloxy group, heptyloxy group, octyloxy group, decyloxy group Examples include dodecyloxy groups, etc. Examples of alkylcarbonyl groups include acetyl, propionyl, and butyryl groups. It is possible. Examples of halogen atoms include fluorine, chlorine, bromine, and iodine. ru. Examples of alkylcarbonyloxy groups include methylcarbonyloxy group and ethylcarbonyl Oxy group, propyl carbonyloxy group, isopropyl carbonyloxy group, butylcarbon Bonyloxy group, sec-butylcarbonyloxy group, tert-butylcarbonyloxy C group, pentylcarbonyloxy group, hexylcarbonyloxy group, octylcarbonyl Examples include oxy groups and 2-ethylhexylcarbonyloxy groups.

[0037] R b4 and R b5 The ring formed when these atoms bond to each other and together with the sulfur atom they bond to is The rings may be monocyclic, polycyclic, aromatic, non-aromatic, saturated, or unsaturated. This ring may have 3 to 18 carbon atoms, preferably 4 to 18 carbon atoms. Furthermore, the ring containing the sulfur atom can be a 3-membered to 12-membered ring, preferably a 3-membered to 7-membered ring. For example, the following ring can be cited. * indicates a bonding site. TIFF2026066273000035.tif24142

[0038] R b9 and R b10 The rings formed by these elements together can be monocyclic, polycyclic, aromatic, or non-aromatic. The ring may be either saturated or unsaturated. Examples of rings include 3-membered to 12-membered rings. Preferably a 3-membered to 7-membered ring. For example, a thiolan-1-ium ring (tetrahydrothi Examples include the ophenium ring, thian-1-ium ring, and 1,4-oxatian-4-ium ring. It can be done. R b11 and R b12 The rings formed by these elements together can be monocyclic, polycyclic, aromatic, or non-aromatic. The ring may be either saturated or unsaturated. Examples of rings include 3-membered to 12-membered rings. Preferably a 3-membered to 7-membered ring. Oxocycloheptane ring, oxocyclohexane ring Examples include oxonorbornane rings and oxoadamantane rings.

[0039] Among cations (b2-1) to (b2-4), preferably cation (b2 -1) The following cations can be considered as cations (b2-1): TIFF2026066273000036.tif81157

[0040] TIFF2026066273000037.tif106161

[0041] The following cations can be considered as cations (b2-2): TIFF2026066273000038.tif18151

[0042] The following cations can be considered as cations (b2-3): TIFF2026066273000039.tif26140

[0043] The following cations can be considered as cations (b2-4): TIFF2026066273000040.tif153161

[0044] Salt (I) is a combination of the above-mentioned anion and the above-mentioned organic cation, which can be any combination. They can be combined. Preferably, the salt (I) is from formulas (Ia-1) to (Ia-4) ), formula (Ia-7) ~ formula (Ia-11), formula (Ia-19) ~ formula (Ia-29), formula (I a-39) An anion represented by any of the formulas (Ia-77) and a cation (b2-1) , combinations with cation (b2-2), cation (b2-3), or cation (b2-4) It can be listed.

[0045] Examples of salt (I) include the salts listed in Table 1. In the table below, each symbol corresponds to the above A This represents the symbols attached to structures that represent nions or cations. For example, the salt (I-1) is represented by formula (Ia This refers to a salt consisting of the anion shown in (-1) and the cation represented by formula (b2-c-1). The following salts are represented. TIFF2026066273000041.tif3194 [Table 1] TIFF2026066273000043.tif223154 TIFF2026066273000044.tif223154 TIFF2026066273000045.tif223154 TIFF2026066273000046.tif223154 TIFF2026066273000047.tif223154 TIFF2026066273000048.tif223154 TIFF2026066273000049.tif223154 TIFF2026066273000050.tif223154 TIFF2026066273000051.tif223154 TIFF2026066273000052.tif223154 TIFF2026066273000053.tif223154 TIFF2026066273000054.tif223154 TIFF2026066273000055.tif223154 TIFF2026066273000056.tif223154 TIFF2026066273000057.tif223154 TIFF2026066273000058.tif223154 TIFF2026066273000059.tif223154 TIFF2026066273000060.tif223154 TIFF2026066273000061.tif223154 TIFF2026066273000062.tif223154 TIFF2026066273000063.tif223154 TIFF2026066273000064.tif223154 TIFF2026066273000065.tif223154 TIFF2026066273000066.tif223154 TIFF2026066273000067.tif223154 TIFF2026066273000068.tif223154 TIFF2026066273000069.tif223154 TIFF2026066273000070.tif223154 TIFF2026066273000071.tif223154 TIFF2026066273000072.tif182155 In particular, salt (I) is divided into salt (I-1) to salt (I-4), salt (I-7) to salt (I-11). Salt (I-19) to Salt (I-22), Salt (I-25) to Salt (I-31), Salt (I-37) ~Salt (I-40), Salt (I-43)~Salt (I-49), Salt (I-55)~Salt (I-58) Salt (I-61) ~ Salt (I-67), Salt (I-73) ~ Salt (I-76), Salt (I-79) ~Salt (I-85), Salt (I-91)~Salt (I-94), Salt (I-97)~Salt (I-103 ), salt (I-109) ~ salt (I-112), salt (I-115) ~ salt (I-121), salt ( I-127) ~ Salt (I-130), Salt (I-133) ~ Salt (I-139), Salt (I-14 5) Salt (I-148), Salt (I-151), Salt (I-157), Salt (I-163), Salt (I-166), salt (I-169) ~ salt (I-175), salt (I-181) ~ salt (I-1 84), Salt (I-187) ~ Salt (I-193), Salt (I-199) ~ Salt (I-202), Salt (I-205) ~ Salt (I-211), Salt (I-217) ~ Salt (I-220), Salt (I- 223) Salt (I-229), Salt (I-235), Salt (I-480), Salt (I-609) Salt (I-1232) is preferred.

[0046] <Method for producing salt (I)> In salt (I), X 1 However, *-CO-O-(* is C(R 11 )(R 12 ) or C( Q 1 )(Q 2 This represents the bonding site with ). A salt that is ) (a salt represented by formula (I1) is, for example, After reacting the salt represented by formula (I1-a) with carbonyldiimidazole in a solvent, Furthermore, it can be produced by reacting it with the compound represented by formula (I1-b). . TIFF2026066273000073.tif54138 (In this formula, all symbols have the same meaning as described above.) Examples of solvents used in this reaction include chloroform and acetonitrile. The reaction temperature is typically between 5°C and 80°C, and the reaction time is typically between 0.5 hours and 24 hours.

[0047] Examples of salts represented by formula (I1-a) include the following salts, as shown in Japanese Patent Publication No. 20. It can be manufactured by the method described in Publication No. 08-127367. Examples of compounds represented by formula (I1-b) in TIFF2026066273000074.tif77142 include compounds represented by the following formulas, and the city It can be easily obtained from the market, and can also be easily manufactured using known methods. ru. TIFF2026066273000075.tif120167

[0048] TIFF2026066273000076.tif110157

[0049] In salt (I), X 1 However, the salt is *-O-CO-O- (the salt represented by formula (I2)). For example, a salt represented by formula (I2-a) and carbonyldiimidazole are reacted in a solvent. After the initial reaction, it is further produced by reacting it with a compound represented by formula (I1-b). It is possible. Furthermore, the salt represented by formula (I2) can, for example, combine with the compound represented by formula (I1-b) in a carbochemical manner. After reacting with nyldimidazole in a solvent, the salt represented by formula (I2-a) is further obtained. It can also be manufactured by reacting it with something. TIFF2026066273000077.tif89148 (In this formula, all symbols have the same meaning as described above.) Examples of solvents used in this reaction include chloroform and acetonitrile. The reaction temperature is typically between 5°C and 80°C, and the reaction time is typically between 0.5 hours and 24 hours. Examples of salts represented by formula (I2-a) include the following salts, as shown in Japanese Patent Publication No. 20. It can be manufactured by the method described in Publication No. 12-193170. TIFF2026066273000078.tif84160

[0050] In salt (I), X 1 However, salts that are *-O-CO- (salts represented by formula (I3)) For example, a compound represented by formula (I3-b) is reacted with carbonyldiimidazole in a solvent. It is produced by reacting it with a salt represented by formula (I2-a) and then further reacting it with the salt represented by formula (I2-a). It is possible. TIFF2026066273000079.tif33146 (In this formula, all symbols have the same meaning as described above.) Examples of solvents used in this reaction include chloroform and acetonitrile. The reaction temperature is typically between 5°C and 80°C, and the reaction time is typically between 0.5 hours and 24 hours.

[0051] Compounds represented by formula (I3-b) include, for example, the compounds shown below: It can be easily obtained from the market and can also be easily manufactured using known methods. ru. TIFF2026066273000080.tif46136

[0052] TIFF2026066273000081.tif111161

[0053] In salt (I), X 1 However, a salt that is *-O- (a salt represented by formula (I4)) is given by formula (I The salt represented by formula (2-a) and the compound represented by formula (I1-b) are mixed in a solvent in the presence of a base. It can be obtained by reacting with it. TIFF2026066273000082.tif51120 (In this formula, all signs have the same meaning as described above.) Potassium hydroxide is an example of a base used in this reaction. Examples of solvents used in this reaction include acetonitrile. The reaction temperature is typically between 5°C and 80°C, and the reaction time is typically between 0.5 hours and 24 hours.

[0054] In salt (I), L 1 However, it consists of an alkanediyl group with 1 to 4 carbon atoms and an alicyclic ring with 3 to 18 carbon atoms. A group formed by combining with a hydrocarbon group (however, the -CH2- contained in the alkanediyl group) -O- or -CO- may be replaced by -C in the alicyclic hydrocarbon group. H2- may be replaced by -O-, -S-, -SO2-, or -CO-. The salt is expressed by formula (I1-a) when synthesizing the salts represented by formulas (I1) to (I4). It is manufactured by replacing a salt or a salt represented by formula (I2-a) with a salt represented below. It is possible. TIFF2026066273000083.tif182161

[0055] [Acid Generator] The acid generator of the present invention is an acid generator containing salt(I). It contains one type of salt(I). It may contain two or more types of salt (I). The acid generator of the present invention, in addition to salt (I), contains an acid generator known in the resist field (hereinafter referred to as "acid generator"). It may contain a herbal agent (B), which may be used alone. You may use one type, or you may use two or more types in combination.

[0056] The acid generator (B) may be either nonionic or ionic. As herbal preparations, sulfonate esters (e.g., 2-nitrobenzyl ester, aromatic sulfonate ester) are used. Sulfonate, oximesulfonate, N-sulfonyloxiimide, sulfonyloxyke Ton, diazonaphthoquinone 4-sulfonate), sulfones (e.g., disulfone, keto Examples include sulfones, sulfonyl diazomethanes, etc. Ionic acid generators include onions. Onium salts containing um cations (e.g., diazonium salts, phosphonium salts, sulfonium salts) Typical examples include salts (iodonium salts). An anion of anium salts is aniodonium sulfonate. Examples include sulfonylimide anions, sulfonylmethide anions, and others.

[0057] As for the acid generating agent (B), see Japanese Patent Publication No. 63-26653, Japanese Patent Publication No. 55-164824, JP-A-62-69263, JP-A-63-146038, JP-A-63-163452 Japanese Patent Publication No. 62-153853, Japanese Patent Publication No. 63-146029, U.S. Patent No. 3,779, Patent No. 778, U.S. Patent No. 3,849,137, German Patent No. 3914407, European Patent No. Compounds that generate acid when exposed to radiation, as described in publications No. 126, 712, etc., can be used. Compounds manufactured by known methods may also be used. The acid generator (B) may consist of two or more types. They may be used in combination.

[0058] The acid generator (B) is preferably a salt represented by formula (B1) (hereinafter referred to as "acid generator (B1)") (There are cases where this is true.) TIFF2026066273000084.tif2862[In formula (B1), Q b1 and Q b2 These are, independently, a hydrogen atom, a fluorine atom, and an alkyl group having 1 to 6 carbon atoms. Alternatively, it represents a perfluoroalkyl group having 1 to 6 carbon atoms. L b1 This represents a divalent saturated hydrocarbon group having 1 to 24 carbon atoms, and the saturated hydrocarbon group contains -CH2- may be replaced by -O- or -CO-, and the saturated hydrocarbon group is contained The hydrogen atoms may be substituted with fluorine atoms or hydroxyl groups. Y is a methyl group which may have substituents or a C3-C2 group which may have substituents 4 represents an alicyclic hydrocarbon group, and the -CH2- contained in the alicyclic hydrocarbon group is -O-, - It may be replaced by S-, -SO2-, or -CO-. Z1 + This represents an organic cation.

[0059] Q b1 and Q b2 Examples of perfluoroalkyl groups include trifluoromethyl group, perfluoroalkyl group Perfluoroethyl group, perfluoropropyl group, perfluoroisopropyl group, perfluoro Butyl group, perfluorosec-butyl group, perfluorotert-butyl group, perflu Examples include the olopentyl group and the perfluorohexyl group. Q b1 and Q b2 Examples of alkyl groups include methyl group, ethyl group, propyl group, and isopropyl group. Pyr group, butyl group, sec-butyl group, tert-butyl group, pentyl group, hexyl group, etc. These are some examples. The acid generator (B) is preferably a fluorine-containing acid generator, Q b1 and Q b2 teeth, Preferably, at least one of them contains a fluorine atom or a perfluoroalkyl group, and less than one. It is more preferable that at least one of them is a fluorine atom or a perfluoroalkyl group, Each is more preferably a fluorine atom or a trifluoromethyl group, and both It is even more preferable that the atom be a fluorine atom.

[0060] L b1 In this context, divalent saturated hydrocarbon groups include linear alkanediyl groups and branched alkanediyl groups. Examples include candiyl groups, monocyclic or polycyclic divalent alicyclic saturated hydrocarbon groups, and these groups It may also be a group formed by combining two or more of the above. Specifically, methylene group, ethylene group, propane-1,3-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, dodecane-1,12-diyl group, Tridecane-1,13-diyl group, tetradecane-1,14-diyl group, pentadecane- 1,15-diyl group, hexadecane-1,16-diyl group and heptadecane-1,17- Linear alkanediyl groups such as diyl groups; 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 Branched alkanediyl groups such as the 2-methylbutane-1,4-diyl group; Cyclobutane-1,3-diyl group, cyclopentane-1,3-diyl group, cyclohexa Cycloalkanediyl groups such as n-1,4-diyl group and cyclooctane-1,5-diyl group A monocyclic, divalent, alicyclic saturated hydrocarbon group; norbornane-1,4-diyl group, norbornane-2,5-diyl group, adamantane- Polycyclic divalent alicyclic saturated carbon such as 1,5-diyl group and adamantane-2,6-diyl group Examples include hydrogen groups.

[0061] L b1 The -CH2- contained in the divalent saturated hydrocarbon group represented by is either -O- or -CO- The replaced base can be represented, for example, by any of the equations (b1-1) to (b1-3). The following are examples of the groups. Furthermore, the groups represented by formulas (b1-1) to (b1-3) and their components are also included. In the groups represented by formulas (b1-4) to (b1-11), which are examples, * and ** are bonds. The symbols indicate the location, and * represents the connection site with -Y.

[0062] TIFF2026066273000085.tif26117[In formula (b1-1), L b2 This represents a single bond or a divalent saturated hydrocarbon group having 1 to 22 carbon atoms, and the saturated hydrocarbon The hydrogen atoms in the group may be substituted with fluorine atoms. L b3 This represents a single bond or a divalent saturated hydrocarbon group having 1 to 22 carbon atoms, and the saturated hydrocarbon The hydrogen atoms contained in the group may be substituted with fluorine atoms or hydroxyl groups, and the saturated The -CH2- group in the hydrocarbon group may be replaced by -O- or -CO-. However, L b2 and L b3 The total number of carbon atoms is 22 or less. In formula (b1-2), L b4 This represents a single bond or a divalent saturated hydrocarbon group having 1 to 22 carbon atoms, and the saturated hydrocarbon The hydrogen atoms in the group may be substituted with fluorine atoms. L b5 This represents a single bond or a divalent saturated hydrocarbon group having 1 to 22 carbon atoms, and the saturated hydrocarbon The hydrogen atoms contained in the group may be substituted with fluorine atoms or hydroxyl groups, and the saturated The -CH2- group in the hydrocarbon group may be replaced by -O- or -CO-. However, L b4 and L b5 The total number of carbon atoms is 22 or less. In formula (b1-3), L b6 This represents a single bond or a divalent saturated hydrocarbon group having 1 to 23 carbon atoms, and the saturated hydrocarbon The hydrogen atoms in the group may be substituted with fluorine atoms or hydroxyl groups. L b7 This represents a single bond or a divalent saturated hydrocarbon group having 1 to 23 carbon atoms, and the saturated hydrocarbon The hydrogen atoms contained in the group may be substituted with fluorine atoms or hydroxyl groups, and the saturated The -CH2- group in the hydrocarbon group may be replaced by -O- or -CO-. However, L b6 and L b7 The total number of carbon atoms is 23 or less.

[0063] In the groups represented by formulas (b1-1) to (b1-3), the saturated hydrocarbon group is included. If -CH2- is replaced by -O- or -CO-, the number of carbon atoms before replacement is... This is the number of carbon atoms in the hydrocarbon group. As for divalent saturated hydrocarbon groups, L b1 Examples include divalent saturated hydrocarbon groups. It can be done.

[0064] L b2 Preferably, a single bond, a methylene group, *-CH(CF3)-, *-C(CF3) It is 2. L b3 This is preferably a divalent saturated hydrocarbon group having 1 to 4 carbon atoms. L b4 The is preferably a divalent saturated hydrocarbon group having 1 to 8 carbon atoms, and the divalent saturated carbon The hydrogen atoms in the hydrogen group may be substituted with fluorine atoms. L b5 This is preferably a single bond or a divalent saturated hydrocarbon group having 1 to 8 carbon atoms. L b6 The saturated hydrocarbon group is preferably a single bond or a divalent saturated hydrocarbon group having 1 to 4 carbon atoms. The hydrogen atoms in the hydrocarbon group may be substituted with fluorine atoms. L b7 Preferably, it is a single bond or a divalent saturated hydrocarbon group having 1 to 18 carbon atoms, and the saturated The hydrogen atoms in the hydrocarbon group may be substituted with fluorine atoms or hydroxyl groups. The -CH2- contained in the divalent saturated hydrocarbon group is replaced by -O- or -CO-. That's fine.

[0065] L b1 The -CH2- contained in the divalent saturated hydrocarbon group represented by is either -O- or -CO- The replaced group is preferably the group represented by formula (b1-1) or formula (b1-3). The base represented by equation (b1-1) is shown in equations (b1-4) to (b1-8), respectively. The basis for this is listed below. TIFF2026066273000086.tif49119[In formula (b1-4), L b8 This represents a single bond or a divalent saturated hydrocarbon group having 1 to 22 carbon atoms, and the saturated hydrocarbon The hydrogen atoms in the group may be substituted with fluorine atoms or hydroxyl groups. In formula (b1-5), L b9 This represents a divalent saturated hydrocarbon group having 1 to 20 carbon atoms, and this divalent saturated hydrocarbon group The -CH2- group may be replaced by -O- or -CO-. L b10 This represents a single bond or a divalent saturated hydrocarbon group having 1 to 19 carbon atoms, and the divalent saturated The hydrogen atoms in the hydrocarbon group may be substituted with fluorine atoms or hydroxyl groups. . However, L b9 and L b10 The total number of carbon atoms is 20 or less. In formula (b1-6), L b11 This represents a divalent saturated hydrocarbon group with 1 to 21 carbon atoms. L b12 This represents a single bond or a divalent saturated hydrocarbon group having 1 to 20 carbon atoms, and the divalent saturated The hydrogen atoms in the hydrocarbon group may be substituted with fluorine atoms or hydroxyl groups. . However, L b11 and L b12 The total number of carbon atoms is 21 or less. In formula (b1-7), L b13 This represents a divalent saturated hydrocarbon group with 1 to 19 carbon atoms. L b14 This represents a single bond or a divalent saturated hydrocarbon group having 1 to 18 carbon atoms, and the divalent saturated The -CH2- group in the hydrocarbon group may be replaced by -O- or -CO-. L b15 This represents a single bond or a divalent saturated hydrocarbon group having 1 to 18 carbon atoms, and the divalent saturated The hydrogen atoms in the hydrocarbon group may be substituted with fluorine atoms or hydroxyl groups. . However, L b13 ~L b15 The total number of carbon atoms is 19 or less. In formula (b1-8), L b16 This represents a divalent saturated hydrocarbon group having 1 to 18 carbon atoms, and the divalent saturated hydrocarbon group The -CH2- group contained in may be replaced by -O- or -CO-. L b17 This represents a divalent saturated hydrocarbon group with 1 to 18 carbon atoms. L b18 This represents a single bond or a divalent saturated hydrocarbon group having 1 to 17 carbon atoms, and the divalent saturated The hydrogen atoms in the hydrocarbon group may be substituted with fluorine atoms or hydroxyl groups. . However, L b16 ~L b18 The total number of carbon atoms is 19 or less. L b8 This is preferably a divalent saturated hydrocarbon group having 1 to 4 carbon atoms. L b9 Preferably, it is a divalent saturated hydrocarbon group having 1 to 8 carbon atoms. L b10 It is preferably a single bond or a divalent saturated hydrocarbon group having 1 to 19 carbon atoms, Preferably, it is a single bond or a divalent saturated hydrocarbon group having 1 to 8 carbon atoms. L b11 Preferably, it is a divalent saturated hydrocarbon group having 1 to 8 carbon atoms. L b12 Preferably, it is a single bond or a divalent saturated hydrocarbon group having 1 to 8 carbon atoms. L b13 This is preferably a divalent saturated hydrocarbon group having 1 to 12 carbon atoms. L b14This is preferably a single bond or a divalent saturated hydrocarbon group having 1 to 6 carbon atoms. L b15 It is preferably a single bond or a divalent saturated hydrocarbon group having 1 to 18 carbon atoms, Preferably, it is a single bond or a divalent saturated hydrocarbon group having 1 to 8 carbon atoms. L b16 This is preferably a divalent saturated hydrocarbon group having 1 to 12 carbon atoms. L b17 This is preferably a divalent saturated hydrocarbon group having 1 to 6 carbon atoms. L b18 It is preferably a single bond or a divalent saturated hydrocarbon group having 1 to 17 carbon atoms, Preferably, it is a single bond or a divalent saturated hydrocarbon group having 1 to 4 carbon atoms.

[0066] The base represented by equation (b1-3) is given by equations (b1-9) to (b1-11), respectively. The bases that can be represented are listed below. TIFF2026066273000087.tif24140[In formula (b1-9), L b19 This represents a single bond or a divalent saturated hydrocarbon group having 1 to 23 carbon atoms, and the saturated hydrocarbon The hydrogen atoms in the group may be substituted with fluorine atoms. L b20 This represents a single bond or a divalent saturated hydrocarbon group having 1 to 23 carbon atoms, and the saturated hydrocarbon The hydrogen atom contained in the group is a fluorine atom, a hydroxyl group, or an alkylcarbonyloxy group. It may be substituted. The -CH2- contained in the alkylcarbonyloxy group is -O- Alternatively, it may be replaced with -CO-, and the hydrogen contained in the alkylcarbonyloxy group The atoms may be substituted with hydroxyl groups. However, L b19 and L b20 The total number of carbon atoms is 23 or less. In formula (b1-10), L b21This represents a single bond or a divalent saturated hydrocarbon group having 1 to 21 carbon atoms, and the saturated hydrocarbon The hydrogen atoms in the group may be substituted with fluorine atoms. L b22 This represents a single bond or a divalent saturated hydrocarbon group having 1 to 21 carbon atoms. L b23 This represents a single bond or a divalent saturated hydrocarbon group having 1 to 21 carbon atoms, and the saturated hydrocarbon The hydrogen atom contained in the group is a fluorine atom, a hydroxyl group, or an alkylcarbonyloxy group. It may be substituted. The -CH2- contained in the alkylcarbonyloxy group is -O- Alternatively, it may be replaced with -CO-, and the hydrogen contained in the alkylcarbonyloxy group The atoms may be substituted with hydroxyl groups. However, L b21 , L b22 and L b23 The total number of carbon atoms is 21 or less. In formula (b1-11), L b24 This represents a single bond or a divalent saturated hydrocarbon group having 1 to 20 carbon atoms, and the saturated hydrocarbon The hydrogen atoms in the group may be substituted with fluorine atoms. L b25 This represents a divalent saturated hydrocarbon group with 1 to 21 carbon atoms. L b26 This represents a single bond or a divalent saturated hydrocarbon group having 1 to 20 carbon atoms, and the saturated hydrocarbon The hydrogen atom contained in the group is a fluorine atom, a hydroxyl group, or an alkylcarbonyloxy group. It may be substituted. The -CH2- contained in the alkylcarbonyloxy group is -O- Alternatively, it may be replaced with -CO-, and the hydrogen contained in the alkylcarbonyloxy group The atoms may be substituted with hydroxyl groups. However, L b24 , L b25 and L b26 The total number of carbon atoms is 21 or less.

[0067] Furthermore, between the group represented by formula (b1-9) and the group represented by formula (b1-11), When a hydrogen atom in a hydrocarbon group is substituted with an alkylcarbonyloxy group, The number of carbon atoms before replacement is defined as the number of carbon atoms in the saturated hydrocarbon group. Examples of alkylcarbonyloxy groups include acetyloxy group, propionyloxy group, and b thyryloxy group, cyclohexylcarbonyloxy group, adamantylcarbonyloxy group These are some examples.

[0068] The following are examples of bases represented by formula (b1-4): TIFF2026066273000088.tif17151

[0069] The following are examples of bases represented by formula (b1-5): TIFF2026066273000089.tif68149

[0070] The following are examples of bases represented by formula (b1-6): TIFF2026066273000090.tif30155

[0071] The following are examples of bases represented by formula (b1-7): TIFF2026066273000091.tif44168

[0072] The following are examples of bases represented by formula (b1-8): TIFF2026066273000092.tif24151

[0073] The following are examples of bases represented by formula (b1-2): TIFF2026066273000093.tif30162

[0074] The following are examples of bases represented by formula (b1-9): TIFF2026066273000094.tif38145

[0075] The following are examples of bases represented by formula (b1-10): TIFF2026066273000095.tif87159

[0076] The following are examples of bases represented by formula (b1-11): TIFF2026066273000096.tif81157

[0077] The -CH2- contained in the alicyclic hydrocarbon group represented by Y is -O-, -S-, -SO2- or Examples of alicyclic hydrocarbon groups that have not been replaced by -CO- include formulas (Y1) to ( Examples of bases include those represented by equations (Y11), (Y36) to (Y38). The -CH2- contained in the alicyclic hydrocarbon group represented by Y is -O-, -S-, -SO2- or When -CO- is replaced, the number of replacements may be one or two or more. Examples include the bases expressed by equations (Y12) to (Y35) and (Y39) to (Y43). It can be expressed by the base represented by equations (Y12) to (Y35) and (Y39) to (Y43). O- or -CO- may be replaced by -S- or -SO2-. * is L b1 The conclusion This indicates the joining point. The alicyclic hydrocarbon group represented by TIFF2026066273000097.tif84166Y is preferably formula (Y1) to formula (Y20), formula ( Y26), equation (Y27), equation (Y30), equation (Y31), equation (Y39) to equation (Y43) A group represented by any of the following, more preferably by formula (Y11), formula (Y15), or formula (Y16) ), formula (Y20), formula (Y26), formula (Y27), formula (Y30), formula (Y31), formula (Y 39) A group represented by formula (Y40), formula (Y42), or formula (Y43), more preferably Alternatively, see equation (Y11), equation (Y15), equation (Y20), equation (Y26), equation (Y27), equation ( Y30), formula (Y31), formula (Y39), formula (Y40), formula (Y42), or formula (Y43) It is a base represented by . The alicyclic hydrocarbon group represented by Y is given by formulas (Y28) to (Y35), (Y39), and (Y 40) In the case of a spiro ring having an oxygen atom, such as formula (Y42) or formula (Y43), 2 The alkanediyl group between the oxygen atoms preferably has one or more fluorine atoms. Furthermore, among the alkanediyl groups contained in the ketal structure, the methylene group adjacent to the oxygen atom It is preferable that the fluorine atom is not substituted.

[0078] The substituents of the methyl group represented by Y include halogen atoms, hydroxyl groups, and groups with 3 to 1 carbon atoms. 6 alicyclic hydrocarbon groups, C6-C18 aromatic hydrocarbon groups, glycidyloxy groups, -( CH2) ja -CO-OR b1 Base or -(CH2) ja -O-CO-R b1 group (in the formula, R b1 These are alkyl groups with 1 to 16 carbon atoms, alicyclic hydrocarbon groups with 3 to 16 carbon atoms, and groups with 6 carbon atoms. Represents up to 18 aromatic hydrocarbon groups or combinations thereof. ja is any of 0 to 4. It represents that integer. The -CH2- contained in the alkyl group and the alicyclic hydrocarbon group is -O- The alkyl group and the alicyclic hydrocarbon may be replaced by -SO2- or -CO-. The hydrogen atoms contained in the group and the aromatic hydrocarbon group are replaced with hydroxyl groups or fluorine atoms. Examples include: (It's okay if it's divided.) The substituents of the alicyclic hydrocarbon group represented by Y include halogen atoms, hydroxyl groups, and hydroxyl groups. A C1-C16 alkyl group which may be substituted with a roxy group (the alkyl group contains -CH2- may be replaced by -O- or -CO-. ), lipids with 3 to 16 carbon atoms. Cyclic hydrocarbon groups, aromatic hydrocarbon groups with 6 to 18 carbon atoms, aralkyl groups with 7 to 21 carbon atoms, Glycidyloxy group, -(CH2) ja -CO-OR b1 Base or -(CH2) ja -O -CO-R b1 group (in the formula, R b1 These are alkyl groups with 1 to 16 carbon atoms and lipids with 3 to 16 carbon atoms. This represents a cyclic hydrocarbon group, an aromatic hydrocarbon group having 6 to 18 carbon atoms, or a group that is a combination of these. . ja represents an integer from 0 to 4. The alkyl group and the alicyclic hydrocarbon group are contained in The -CH2- may be replaced with -O-, -SO2- or -CO-, and the alcohol The hydrogen atoms contained in the kill group, the alicyclic hydrocarbon group, and the aromatic hydrocarbon group are hydroxyl Examples include: (which may be replaced by a group or a fluorine atom.)

[0079] Examples of halogen atoms include fluorine, chlorine, bromine, and iodine. ru. Examples of alicyclic hydrocarbon groups include cyclopentyl groups, cyclohexyl groups, and methyl cyclohexyl groups. Chlohexyl group, dimethylcyclohexyl group, cycloheptyl group, cyclooctyl group, no Examples include the rubornyl group and the adamantyl group. Alicyclic hydrocarbon groups are chain hydrocarbon groups. They may also contain, for example, a methylcyclohexyl group, a dimethylcyclohexyl group, etc. The number of carbon atoms in the alicyclic hydrocarbon group is preferably 3 to 12, more preferably 3 to 10. be. Examples of aromatic hydrocarbon groups include phenyl, naphthyl, anthryl, and biphenyl groups. Examples include aryl groups such as nyl groups and phenanthryl groups. Aromatic hydrocarbon groups are chain carbon It may have a hydrogenated group or an alicyclic hydrocarbon group, and may have an aromatic carbon having a chain hydrocarbon group Examples of hydrogen groups include tolyl group, xylyl group, coumenyl group, mesityl group, and p-ethylphenyl group, p-tert-butylphenyl group, 2,6-diethylphenyl group, 2-methyl-6- Examples include ethylphenyl groups, and aromatic hydrocarbon groups having alicyclic hydrocarbon groups include: Examples include p-cyclohexylphenyl groups and p-adamantylphenyl groups. Aromatic carbon The number of carbon atoms in the hydrogenated group is preferably 6 to 14, and more preferably 6 to 10. Examples of alkyl groups include methyl, ethyl, propyl, isopropyl, and b Tyl group, sec-butyl group, tert-butyl group, pentyl group, hexyl group, heptyl group , 2-ethylhexyl group, octyl group, nonyl group, decyl group, undecyl group, dodecyl group Examples include the following. The number of carbon atoms in the alkyl group is preferably 1 to 12, and more preferably 1 It is ~6, and more preferably 1~4. Alkyl groups substituted with hydroxyl groups include hydroxymethyl groups and hydroxy Examples include hydroxyalkyl groups such as ethyl groups. Examples of aralkyl groups include benzyl group, phenethyl group, phenylpropyl group, and naphthyl group. Examples include tyl groups and naphthylethyl groups. The -CH2- group in the alkyl group is replaced by -O-, -SO2-, or -CO-, etc. The groups include alkoxy groups, alkylsulfonyl groups, alkoxycarbonyl groups, and alkyl groups. Examples include carbonyl groups, alkylcarbonyloxy groups, or combinations thereof. ru. Examples of alkoxy groups include methoxy, ethoxy, propoxy, butoxy, and pentoxy groups. oxy group, hexyloxy group, heptyloxy group, octyloxy group, decyloxy group Examples include dodecyloxy groups. The number of carbon atoms in the alkoxy group is preferably 1 to 12. Yes, more preferably 1 to 6, and even more preferably 1 to 4. Examples of alkylsulfonyl groups include methylsulfonyl groups and ethylsulfonyl groups. Examples include propyl sulfonyl groups. The number of carbon atoms in the alkyl sulfonyl group is preferably 1. It is ~12, more preferably 1~6, and even more preferably 1~4. Examples of alkoxycarbonyl groups include methoxycarbonyl groups and ethoxycarbonyl groups. Examples include alkoxycarbonyl groups and butoxycarbonyl groups. The number of carbon atoms in the alkoxycarbonyl group is preferred. More preferably 2 to 12, more preferably 2 to 6, and even more preferably 2 to 4. Examples of alkylcarbonyl groups include acetyl, propionyl, and butyryl groups. Examples include the following. The number of carbon atoms in the alkylcarbonyl group is preferably 2 to 12, and more preferably The value is between 2 and 6, and more preferably between 2 and 4. Examples of alkylcarbonyloxy groups include acetyloxy groups and propionyloxy groups. Examples include the cy group and the butyryloxy group. The number of carbon atoms in the alkylcarbonyloxy group is preferred. More preferably 2 to 12, more preferably 2 to 6, and even more preferably 2 to 4. Examples of combined groups include groups that combine an alkoxy group and an alkyl group, and A group combining a lucoxy group and an alkoxy group, or a group combining an alkoxy group and an alkylcarbonyl group. Groups combining these, groups combining an alkoxy group and an alkylcarbonyloxy group, etc. It can be listed. Examples of groups combining an alkoxy group and an alkyl group include the methoxymethyl group. Alkoxyalkyl groups such as methoxyethyl group, ethoxyethyl group, and ethoxymethyl group For example, the number of carbon atoms in the alkoxyalkyl group is preferably 2 to 12, and more preferably k is 2 to 6, and more preferably 2 to 4. Groups that combine alkoxy groups include methoxymethoxy groups and metoxy groups. Alkoxyalkoxy groups such as xyethoxy group, ethoxymethoxy group, and ethoxyethoxy group Examples include the following. The number of carbon atoms in the alkoxyalkoxy group is preferably 2 to 12, and more Preferably, it is 2 to 6, and more preferably 2 to 4. Examples of groups combining an alkoxy group and an alkylcarbonyl group include methoxyacetyl. Alco groups such as methoxypropionyl group, ethoxyacetyl group, and ethoxypropionyl group Examples include xyalkylcarbonyl groups. The number of carbon atoms in an alkoxyalkylcarbonyl group is... Preferably 3 to 13, more preferably 3 to 7, and even more preferably 3 to 5. be. Groups that combine an alkoxy group and an alkylcarbonyloxy group include methoxya Cetyloxy group, Methoxypropionyloxy group, Ethoxyacetyloxy group, Ethoxy Examples include alkoxyalkylcarbonyloxy groups such as propionyloxy groups. The number of carbon atoms in the coxyalkylcarbonyloxy group is preferably 3 to 13, and more preferably The value of k is between 3 and 7, and more preferably between 3 and 5. The -CH2- group in the alicyclic hydrocarbon group is replaced by -O-, -SO2-, or -CO-, etc. The basis for the division is expressed by equations (Y12) to (Y35) and (Y39) to (Y43). Examples include the bases.

[0080] The following are examples of Y: TIFF2026066273000098.tif102165

[0081] TIFF2026066273000099.tif85162Y is preferably a cycloaliphatic hydrocarbon group having 3 to 24 carbon atoms, which may have substituents. More preferably, an alicyclic hydrocarbon group having 3 to 20 carbon atoms, which may have substituents. More preferably, it is an alicyclic hydrocarbon group having 3 to 18 carbon atoms, which may have substituents. More preferably, an adamantyl group which may have a substituent, and the alicyclic hydrocarbon The -CH2- group constituting the group or adamantyl group is replaced with -O-, -SO2-, or -CO-. It may be divided. Specifically, Y is preferably an adamantyl group, hydroxyadamantyl The group, oxoadamantyl group or formula (Y42), formula (Y100) to formula (Y114), formula (Y 134) This is the base represented by formula (Y139).

[0082] The anions in the salt represented by formula (B1) are given by formula (B1-A-1) ~ formula (B1- Anions represented by A-62) (hereinafter referred to as "anion (B1-A-1)" etc. depending on the formula number) In some cases, this is preferable, and formulas (B1-A-1) to (B1-A-4), formula (B1 -A-9), formula (B1-A-10), formula (B1-A-24) ~ formula (B1-A-33), formula (B1-A-36) ~ Formula (B1-A-40), Formula (B1-A-47) ~ Formula (B1-A-6 An anion represented by either of the two in (2) is more preferable.

[0083] TIFF2026066273000100.tif78147

[0084] TIFF2026066273000101.tif110166

[0085] TIFF2026066273000102.tif97157

[0086] TIFF2026066273000103.tif90161

[0087] TIFF2026066273000104.tif47156

[0088] TIFF2026066273000105.tif76159

[0089] TIFF2026066273000106.tif132161 Here R i2 ~R i7 These are, independently of each other, for example, alkyl groups having 1 to 4 carbon atoms, preferably The group is either a methyl group or an ethyl group. i8 For example, a chain-like hydrocarbon group having 1 to 12 carbon atoms. Preferably, alkyl groups having 1 to 4 carbon atoms, alicyclic hydrocarbon groups having 5 to 12 carbon atoms, or these. A group formed by combining these, more preferably a methyl group, an ethyl group, or a cyclohex group. It is either an adamantyl group or an adamantyl group. A41 These are single bonds or alkanediyl compounds with 1 to 4 carbon atoms. It is the basis. Q b1 and Q b2 This expresses the same meaning as above. Specifically, the anion in the salt represented by formula (B1) is as shown in Japanese Patent Publication No. 2010-20. Anions listed in Public Gazette No. 4646 are examples.

[0090] Preferably, the anion in the salt represented by formula (B1) is formula (B1a-1) ~ formula ( The anions represented by B1a-40 are listed below. TIFF2026066273000107.tif86165

[0091] TIFF2026066273000108.tif92162

[0092] TIFF2026066273000109.tif197154

[0093] In particular, equations (B1a-1) to (B1a-3), and equations (B1a-7) to (B1a-1) 6), formula (B1a-18), formula (B1a-19), formula (B1a-22) ~ formula (B1a-4 An anion represented by any of the following is preferred. Z1 + Examples of organic cations include organic onium cations and organic sulfonium cations. Organic iodium cation, organic ammonium cation, benzothiazolium cation and Examples include organic phosphonium cations. Among these, organic sulfonium cationic cations are particularly noteworthy. N and organic iodonium cations are preferred, and aryl sulfonium cations are more preferred. It is. As for the aryl sulfonium cation, Z in formula (I) + Similar to the cation Examples include:

[0094] The acid generator (B) is a combination of the anion and the organic cation described above, and these are They can be combined in any way. The acid generator (B) is preferably of formula (B1a-1)~ Formula (B1a-3), Formula (B1a-7) ~ Formula (B1a-16), Formula (B1a-18), Formula ( Anio represented by any of the following equations (B1a-19), (B1a-22) to (B1a-40) N and cation (b2-1), cation (b2-2), cation (b2-3) or catio One example is the combination with n(b2-4).

[0095] The acid generator (B) is preferably represented by formulas (B1-1) to (B1-60), respectively. Examples include those that are used. Among them, those containing arylsulfonium cations are preferred. Formula (B1-1) ~ Formula (B1-3), Formula (B1-5) ~ Formula (B1-7), Formula (B1-11) ~Formula (B1-14), Formula (B1-20) ~Formula (B1-26), Formula (B1-29), Formula (B 1-31) Those represented by formula (B1-60) are particularly preferred. TIFF2026066273000110.tif191166

[0096] TIFF2026066273000111.tif250153

[0097] TIFF2026066273000112.tif238165

[0098] When the acid generator contains salt (I) and acid generator (B), salt (I) and acid generator (B) The ratio of the content of each (mass ratio; salt (I): acid generator (B)) is usually 1:99 to 99:1. Yes, preferably 2:98 to 98:2, and more preferably 5:95 to 95:5. More preferably 10:90~90:10, and especially preferably 15:85~85: It is 15.

[0099] [Resist composition] The resist composition of the present invention comprises an acid generator containing salt (I) and a resin having an acid-unstable group ( It contains the following (sometimes referred to as "resin (A)"). Here, "acid-unstable group" refers to the elimination group. It has a group, and upon contact with an acid, the leaving group is removed, and the constituent unit becomes a hydrophilic group (for example, hydroxy This refers to a group that converts into a constituent unit having a carboxyl group or a carboxyl group. The resist composition of the present invention generates an acid that is less acidic than the acid generated by the acid generator. It may contain a quencher such as salt (hereinafter sometimes referred to as "quencher (C)"). Preferably, it contains a solvent (which may be referred to as "solvent (E)" below).

[0100] <Acid Generator> In the resist composition of the present invention, the total content of the acid generator is as follows: resin (A)1 Preferably 1 to 45 parts by mass, more preferably 1 part by mass, per 00 parts by mass 40 parts by mass or less, more preferably 3 parts by mass or more and 40 parts by mass or less, even more preferably The amount is 3 parts by mass or more and 35 parts by mass or less, and more preferably 5 parts by mass or more and 35 parts by mass or less. ru.

[0101] <Resin (A)> Resin (A) is a structural unit having an acid-unstable group (hereinafter referred to as "structural unit (a1)"). It is preferable that the resin (A) further contains structural units other than structural unit (a1). It is so. Structural units other than structural unit (a1) include structural units that do not have acid-unstable groups ( (Sometimes referred to as "structural unit (s)"), structural unit (a1), and other structural units (s) Structural units (for example, structural units having halogen atoms as described later (hereinafter referred to as "structural units (a4)") (There are cases where this occurs), structural units having non-eliminating hydrocarbon groups (hereinafter referred to as "structural units (a) 5) In some cases, this refers to structural units derived from monomers known in the field, etc. These are some examples.

[0102] <Structural unit (a1)> Structural unit (a1) is a monomer having an acid-unstable group (hereinafter referred to as "monomer (a1)"). It is derived from (in some cases). The acid-unstable group contained in resin (A) is the 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)) is preferred. JPEG2026066273000113.jpg1988[In formula (1), R a1 , R a2 and R a3 These are, independently, alkyl groups with 1 to 8 carbon atoms. C1-C2 group, C2-C8 alkenyl group, C3-C20 alicyclic hydrocarbon group, C6-C1 8 represents aromatic hydrocarbon groups or groups formed by combining them, or R a1 and R a2 they are connected to each other They then form a non-aromatic hydrocarbon ring with 3 to 20 carbon atoms, together with the carbon atoms to which they bond. . ma and na each independently represent 0 or 1, and at least one of ma and na This represents 1. * indicates a connection site. TIFF2026066273000114.tif2171[In formula (2), R a1’ and R a2’ Each of these is independently a hydrogen atom or a carbon atom with 1 to 1 carbon atoms. Represents two hydrocarbon groups, R a3’ R represents a hydrocarbon group with 1 to 20 carbon atoms. a2’ Reach biR a3’ They bond with each other, and together with the carbon atoms and X they bond to, they have 3 to 20 carbon atoms. A heterocycle is formed, and the hydrocarbon group and the -CH2- contained in the heterocycle are -O- or -S- It can be replaced with this. X represents either an oxygen atom or a sulfur atom. 'na' represents either 0 or 1. * indicates a connection site.

[0103] R a1 , R a2 and R a3 Examples of alkyl groups in this context include methyl group, ethyl group, and propyl group. Examples include the hydroxyl group, butyl group, pentyl group, hexyl group, heptyl group, and octyl group. R a1 , R a2 and R a3 The alkenyl groups in this context include the ethenyl group and the propenyl group. isopropenyl group, butenyl group, isobutenyl group, tert-butenyl group, pentenyl Examples include the hexenyl group, heptenyl group, octenyl group, isooctenyl group, and nonenyl group. It is possible. R a1 , R a2 and R a3 In this context, the alicyclic hydrocarbon group is either monocyclic or polycyclic. This is also acceptable. Examples of monocyclic alicyclic hydrocarbon groups include cyclopentyl group, cyclohexyl group, and cyclopentyl group. Examples include cycloalkyl groups such as chloroheptyl and cyclooctyl groups. Polycyclic and alicyclic groups. The hydrocarbon groups include decahydronaphthyl, adamantyl, norbornyl, and the following: Examples include the base (* indicates a binding site). a1 , R a2 and R a3 Alicyclic carbonization The number of carbon atoms in the hydrogen group is preferably 3 to 16. TIFF2026066273000115.tif10150R a1 , R a2 and R a3 Aromatic hydrocarbon groups in this context include phenyl groups and naphthyl groups. Examples of aryl groups include anthryl, biphenyl, and phenanthryl groups. The combined groups include those that combine the alkyl group and alicyclic hydrocarbon group mentioned above. (For example, methylcyclohexyl group, dimethylcyclohexyl group, methylnorbornyl group) Cyclohexylmethyl group, adamantylmethyl group, adamantyldimethyl group, norbol Alkylcycloalkyl groups such as ylethyl groups or cycloalkylalkyl groups), benzyl Aralkyl groups such as p-methylphenyl groups, aromatic hydrocarbon groups having alkyl groups (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., alicyclic hydrocarbon group Aromatic hydrocarbon groups (p-cyclohexylphenyl group, p-adamantylphenyl group) Examples include aryl-cycloalkyl groups such as phenylcyclohexyl groups. Preferably, ma is 0 and na is 1. R a1 and R a2 -C(R a1 )(R a2 )(R a3 Examples of such rings include the following: The non-aromatic hydrocarbon ring is preferably carbon The numbers range from 3 to 12. * represents the bonding site with -O-. TIFF2026066273000116.tif30138

[0104] R a1’ , R a2’ and R a3’ Examples of hydrocarbon groups in this context include alkyl groups and alicyclic carbon groups. Examples include hydrogenated groups, aromatic hydrocarbon groups, and groups formed by combining these. It is possible. Alkyl and alicyclic hydrocarbon groups are R a1 , R a2 and R a3 Similar to the base mentioned above This is one example. Aromatic hydrocarbon groups include phenyl group, naphthyl group, anthryl group, biphenyl group, Examples include aryl groups such as phenanthryl groups. The combined groups include those that combine the alkyl group and alicyclic hydrocarbon group mentioned above. (For example, methylcyclohexyl group, dimethylcyclohexyl group, methylnorbornyl group) Cyclohexylmethyl group, adamantylmethyl group, adamantyldimethyl group, norbol Alkylcycloalkyl groups such as ylethyl groups or cycloalkylalkyl groups), benzyl Aralkyl groups such as p-methylphenyl groups, aromatic hydrocarbon groups having alkyl groups (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., alicyclic hydrocarbon group Aromatic hydrocarbon groups (p-cyclohexylphenyl group, p-adamantylphenyl group) Examples include aryl-cycloalkyl groups such as phenylcyclohexyl groups. R a2’ and R a3’ They bond with each other and together with the carbon atoms and X they bond to, complex When forming a ring, -C(R a1’ )(R a2’ )-XR a3’ The following rings are examples: * indicates a bonding site. TIFF2026066273000117.tif18130R a1’ and R a2’ Preferably, at least one of them is a hydrogen atom. na' is preferably 0.

[0105] The following are examples of base (1): In equation (1), R a1 , R a2 and R a3 is an alkyl group, ma=0, and n A group where a=1. A tert-butoxycarbonyl group is preferred as this group. In equation (1), R a1 , R a2 However, together with the carbon atoms to which these bond, adamant Forms a chill group, R a3 A group that is an alkyl group, with ma=0 and na=1. In equation (1), R a1 and R a2 Each of them is an alkyl group independently, and R a3 Adama A methyl group with ma=0 and na=1. The following are specific examples of group (1). * indicates a bonding site. TIFF2026066273000118.tif154163

[0106] The following are specific examples of group (2). * indicates a bonding site. TIFF2026066273000119.tif55153

[0107] The monomer (a1) preferably has an acid-unstable group and an ethylenically unsaturated bond. Mer, more preferably a (meth)acrylic monomer having an acid-unstable group.

[0108] Among (meth)acrylic monomers having an acid-unstable group, preferably those having 5 to 20 carbon atoms. Examples include those having alicyclic hydrocarbon groups. A resin (A) having structural units derived from monomer (a1) is used in the resist composition. This allows for an improvement in the resolution of the resist pattern.

[0109] As a structural unit derived from a (meth)acrylic monomer having group (1), formula (a1- A structural unit represented by (0) (hereinafter sometimes referred to as structural unit (a1-0)), formula (a1 A structural unit represented by -1) (hereinafter sometimes referred to as structural unit (a1-1)) or formula ( The structural units represented by a1-2) (hereinafter sometimes referred to as structural units (a1-2)) are listed below. It can be made. Preferably, structural unit (a1-0), structural unit (a1-1) and structural unit (a At least one structural unit selected from the group consisting of 1-2), more preferably, At least one selected from the group consisting of building units (a1-1) and structural units (a1-2) These are structural units. They may be used individually or in combination of two or more types. TIFF2026066273000120.tif48157[In formulas (a1-0), (a1-1), and (a1-2), L a01 , L a1 and L a2 These are, independently, -O- or *-O-(CH2) k1 - CO-O- represents a bond, k1 is an integer from 1 to 7, and * is the bonding site with -CO-. represent. R a01 , R a4 and R a5 These are, independently, a hydrogen atom, a halogen atom, or a halogen. This represents an alkyl group having 1 to 6 carbon atoms, which may contain atoms. R a02 , R a03 and R a04 These are, independently, alkyl groups with 1 to 8 carbon atoms and alkyl groups with 3 to 8 carbon atoms. 18 alicyclic hydrocarbon groups, aromatic hydrocarbon groups with 6 to 18 carbon atoms, or combinations thereof It represents the basis. R a6 and R a7 These are, independently, alkyl groups with 1 to 8 carbon atoms and axyl groups with 2 to 8 carbon atoms. Lukenyl group, alicyclic hydrocarbon group having 3 to 18 carbon atoms, aromatic hydrocarbon group having 6 to 18 carbon atoms or This represents the group formed by combining these elements. m1 represents an integer between 0 and 14. n1 represents an integer between 0 and 10. n1' represents an integer between 0 and 3.

[0110] R a01 , R a4 and R a5This is preferably a hydrogen atom or a methyl group, and more preferably a methyl group. It is a chill group. L a01 , L a1 and L a2 Preferably, an oxygen atom or *-O-(CH2) k01 -C OO- (where k01 is preferably an integer from 1 to 4, more preferably It is 1, more preferably an oxygen atom. R a02 , R a03 and R a04 Alkyl groups, alkenyl groups, alicyclic hydrocarbon groups, and aromatic compounds in the context of aroma Group hydrocarbon groups and groups formed by combining them include R of group (1). a1 , R a2 and R a3 raised Similar groups to the geta group can be cited. R a6 and R a7 alkyl groups, alkenyl groups, alicyclic hydrocarbon groups, aromatic carbon groups As for hydrogen groups and groups formed by combining them, R in formula (1) a1 , R a2 and R a3 The basis mentioned above and Similar groups can be cited. R a02 , R a03 , and R a04 The alkyl group in this case is preferably an alkyl group having 1 to 6 carbon atoms. It is a group, more preferably a methyl group or an ethyl group, and even more preferably a methyl group. ru. R a6 and R a7 The alkyl group in 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 further Preferably, it is an ethyl group, an isopropyl group, or a t-butyl group. R a6 and R a7The alkenyl group in is preferably an alkenyl group having 2 to 6 carbon atoms. Yes, more preferably an ethenyl group, propenyl group, isopropenyl group or butenyl group. ru. R a02 , R a03 , R a04 , R a6 and R a7 The number of carbon atoms in the alicyclic hydrocarbon group is preferably The range is 5 to 12, and more preferably 5 to 10. R a02 , R a03 , R a04 , R a6 and R a7 The number of carbon atoms in the aromatic hydrocarbon group is preferably The range is 6 to 12, and more precisely, 6 to 10. Groups that combine alkyl groups and alicyclic hydrocarbon groups are formed by combining these alkyl groups and alicyclic hydrocarbon groups. It is preferable that the total number of carbon atoms in the combined group is 18 or less. Groups formed by combining alkyl groups and aromatic hydrocarbon groups are composed of these alkyl groups and aromatic hydrocarbon groups. It is preferable that the total number of carbon atoms in the combined group is 18 or less. R a02 and R a03 Preferably, an alkyl group having 1 to 6 carbon atoms or an aromatic group having 6 to 12 carbon atoms. A hydrocarbon group, more preferably a methyl group, an ethyl group, a phenyl group, or a naphthyl group. ru. R a04 Preferably, an alkyl group having 1 to 6 carbon atoms or an alicyclic hydrocarbon having 5 to 12 carbon atoms. The group is a methyl group, more preferably an ethyl group, a cyclohexyl group, or an adamantyl group. be. R a6 and R a7 Each is independently preferably an alkyl group having 1 to 6 carbon atoms, 2-6 alkenyl groups or 6-12 aromatic hydrocarbon groups, more preferably Tyl group, ethyl group, isopropyl group, t-butyl group, ethenyl group, phenyl group or naphthyl group It is a group, and more preferably an ethyl group, isopropyl group, t-butyl group, ethenyl group or It is a phenyl group. m1 is preferably an integer between 0 and 3, and more preferably 0 or 1. n1 is preferably an integer between 0 and 3, and more preferably 0 or 1. n1' is preferably 0 or 1.

[0111] Examples of structural units (a1-0) are given by equations (a1-0-1) to (a1-0-18). A structural unit represented by one of the following and R in the structural unit (a1-0) a01 This corresponds to A structure in which the til group is replaced by a hydrogen atom, a halogen atom, a haloalkyl group, or another alkyl group. The manufacturing units are listed, as in equations (a1-0-1) to (a1-0-10) and (a1-0-13). A structural unit represented by any of the formulas (a1-0-14) is preferred. TIFF2026066273000121.tif100168

[0112] As for the structural unit (a1-1), for example, as described in Japanese Patent Publication No. 2010-204646 Examples of structural units derived from monomers include those from formula (a1-1-1) to formula (a1 -1-7) Structural units represented by any of the above and R in structural units (a1-1) a4 in relation to The corresponding methyl group is replaced by a hydrogen atom, halogen atom, haloalkyl group, or other alkyl group. A divided structural unit is preferred, and can be represented by any of the formulas (a1-1-1) to (a1-1-4). A structural unit that can be made into a structural unit is preferable. TIFF2026066273000122.tif38168

[0113] The structural unit (a1-2) is any of the formulas (a1-2-1) to (a1-2-14). The structural unit represented by and the R in the structural unit (a1-2) a5 The methyl group corresponding to water Examples of structural units that are replaced by elementary atoms, halogen atoms, haloalkyl groups, or other alkyl groups include Equations (a1-2-2), (a1-2-5), (a1-2-6), and (a1- 2-10) A structural unit represented by any of the formulas (a1-2-14) is preferred. TIFF2026066273000123.tif67163

[0114] If resin (A) contains structural unit (a1-0), its content is the total structural unit of resin (A). For each position, it is usually 5-80 mol%, preferably 5-75 mol%, and more preferably The percentage is between 10 and 70 mol%. If resin (A) contains structural unit (a1-1) and / or structural unit (a1-2), The total content of these is typically 10 to 90 mol% relative to the total structural units of resin (A), and is preferable. More preferably 15-85 mol%, more preferably 20-80 mol%, and even more preferably More preferably, it is 20-75 mol%, and more preferably 20-70 mol%.

[0115] A structural unit having a base (2) in structural unit (a1) is represented by formula (a1-4). Examples of structural units (hereinafter sometimes referred to as "structural units (a1-4)") include the following. TIFF2026066273000124.tif4766[In formula (a1-4), R a32 This is a hydrogen atom, a halogen atom, or a carbon-1 atom which may have a halogen atom. Represents alkyl groups up to 6. R a33 This includes halogen atoms, hydroxyl groups, alkyl groups with 1 to 6 carbon atoms, and C1 to 6 atoms. Alkoxy group, alkoxyalkyl group having 2 to 12 carbon atoms, alkoxyalkyl group having 2 to 12 carbon atoms Lucoxy group, C2-C4 alkylcarbonyl group, C2-C4 alkylcarbonyl This represents an oxy group, an acryloyloxy group, or a methacryloyloxy group. A a30 is a single bond or * -X a31 -(A a32 -X a32 ) nc - represents -R a32 they combine This represents the bonding site with the carbon atom. A a32 This represents an alkanediyl group with 1 to 6 carbon atoms. X a31 and X a32 These represent -O-, -CO-O-, or -O-CO- independently. nc represents 0 or 1. la represents an integer from 0 to 4. If la is an integer greater than or equal to 2, Number R a33 They may be the same or different from one another. R a34 and R a35 Each of these independently represents a hydrogen atom or a hydrocarbon group having 1 to 12 carbon atoms. R a36 R represents a hydrocarbon group with 1 to 20 carbon atoms. a35 and R a36 they combine with each other and Together with the -CO- to which they bond, they form a divalent hydrocarbon group having 2 to 20 carbon atoms, and the carbonized water The -CH2- contained in the elementary group and the divalent hydrocarbon group is replaced by -O- or -S- That's good too.

[0116] R a32 and R a33 Examples of halogen atoms in this context include fluorine, chlorine, and bromine atoms. These are some examples. R a32C1-C6 alkyl groups that may have a halogen atom include: Trifluoromethyl group, difluoromethyl group, methyl group, perfluoroethyl group, 2,2 ,2-trifluoroethyl group, 1,1,2,2-tetrafluoroethyl group, ethyl group, pe fluoropropyl group, 2,2,3,3,3-pentafluoropropyl group, propyl group, Perfluorobutyl group, 1,1,2,2,3,3,4,4-octafluorobutyl group, Tyl group, perfluoropentyl group, 2,2,3,3,4,4,5,5,5-nonafluoro Examples include pentyl groups, pentyl groups, hexyl groups, and perfluorohexyl groups. R a32 The hydrogen atom or an alkyl group having 1 to 4 carbon atoms is preferred, and the hydrogen atom, methyl group or An ethyl group is more preferable, and a hydrogen atom or a methyl group is even more preferable. R a33 The alkyl groups in this context are methyl, ethyl, propyl, and isopropyl groups. Examples include the butyl group, sec-butyl group, tert-butyl group, pentyl group, and hexyl group. The alkyl group is preferably an alkyl group having 1 to 4 carbon atoms, and may have a methyl group or an ethyl group. More preferably, a methyl group is even more preferred. R a33 The alkoxy groups in this context include methoxy, ethoxy, propoxy, and iso Propoxy group, butoxy group, sec-butoxy group, tert-butoxy group, pentyl oxy Examples include the hydroxyl group and the hexyloxy group. Alkoxy groups are alkoxy groups with 1 to 4 carbon atoms. Preferably, a methoxy group or an ethoxy group is preferred, and a methoxy group is even more preferred. R a33 The alkoxyalkyl groups in this context are methoxymethyl group and ethoxyethyl group. , propoxymethyl group, isopropoxymethyl group, butoxymethyl group, sec-butoxy Examples include methyl groups and tert-butoxymethyl groups. Alkoxyalkyl groups have a number of carbon atoms. 2 to 8 alkoxyalkyl groups are preferred, and methoxymethyl or ethoxyethyl groups are preferred. A methoxymethyl group is more preferable, and a methoxymethyl group is even more preferable. R a33 Examples of alkoxyalkoxy groups in this context include methoxymethoxy groups and methoxyethyl groups. Xy group, ethoxymethoxy group, ethoxyethoxy group, propoxymethoxy group, isoprop Xymethoxy group, butoxymethoxy group, sec-butoxymethoxy group, tert-butoxy A cymethoxy group is one example. Alkoxyalkoxy groups are alkoxyal groups with 2 to 8 carbon atoms. A coxy group is preferred, and a methoxyethoxy group or an ethoxyethoxy group is more preferred. R a33 The alkylcarbonyl groups in this context include acetyl, propionyl, and butyric groups. Examples include lyl groups. Alkyl carbonyl groups are alkyl carbonyl groups having 2 to 3 carbon atoms. A is preferred, and an acetyl group is more preferred. R a33 Examples of alkylcarbonyloxy groups in this context include acetyloxy groups and propionyl groups. Examples include the oxy group and the butyryloxy group. The alkylcarbonyloxy group has a number of carbon atoms. Two to three alkylcarbonyloxy groups are preferred, and acetyloxy groups are more preferred. R a33 This includes halogen atoms, hydroxyl groups, C1-C4 alkyl groups, and C1-C4 An alkoxy group or an alkoxyalkoxy group having 2 to 8 carbon atoms is preferred, along with a fluorine atom and iodine. Elementary atom, hydroxyl group, methyl group, methoxy group, ethoxy group, ethoxyethoxy group or ethoxyethoxy group A toxicmethoxy group is more preferred, along with a fluorine atom, an iodine atom, a hydroxyl group, a methyl group, A methoxy group or an ethoxyethoxy group is even more preferred.

[0117] *-X a31 -(A a32 -X a32 ) nc - for example, *-O-, *-CO-O-, *-OC O-, *-CO-OA a32 -CO-O-, *-O-CO-A a32 -O-, *-OA a32 -CO-O-, *-CO-OA a32 -O-CO-, *-O-CO-A a32 -O-CO-, These include *-CO-O- and *-CO-OA. a32 -CO-O- or *- OA a32 -CO-O- is preferred.

[0118] A a32 The alkanediyl groups in this include 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, butane-1,3-diyl group, 2-methyl Propane-1,3-diyl group, 2-methylpropane-1,2-diyl group, pentane-1, Examples include 4-diyl groups and 2-methylbutane-1,4-diyl groups. A a32 It is preferable that this is a methylene group or an ethylene group.

[0119] A a30 These are single bonds, *-CO-O- or *-CO-OA a32 Being a CO-O Preferably, it is a single bond, *-CO-O- or *-CO-O-CH2-CO-O-. More preferably, the bond is a single bond or even more preferably *-CO-O-.

[0120] la is preferably 0, 1, or 2, more preferably 0 or 1, and even more preferably 0. R a34 , R a35 and R a36 Examples of hydrocarbon groups in this context include alkyl groups and alicyclic hydrocarbon groups. Examples include aromatic hydrocarbon groups and groups formed by combining these. Alkyl groups include methyl, ethyl, propyl, butyl, pentyl, and hexyl groups. Examples include syl groups, heptyl groups, and octyl groups. The alicyclic hydrocarbon group may be monocyclic or polycyclic. Monocyclic alicyclic hydrocarbon group Examples include cyclopentyl groups, cyclohexyl groups, cycloheptyl groups, and cyclooctyl groups. Examples of cycloalkyl groups include decahydrona. Phthyl groups, adamantyl groups, norbornyl groups, and the following groups (* indicates a bonding site), etc. It can be listed. TIFF2026066273000125.tif10151 Aromatic hydrocarbon groups include phenyl group, naphthyl group, anthryl group, biphenyl group, Examples include aryl groups such as phenanthryl groups. The combined groups include those that combine the alkyl group and alicyclic hydrocarbon group mentioned above. (For example, methylcyclohexyl group, dimethylcyclohexyl group, methylnorbornyl group) Cyclohexylmethyl group, adamantylmethyl group, adamantyldimethyl group, norbol Alkylcycloalkyl groups such as ylethyl groups or cycloalkylalkyl groups), benzyl Aralkyl groups such as p-methylphenyl groups, aromatic hydrocarbon groups having alkyl groups (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., alicyclic hydrocarbon group Aromatic hydrocarbon groups (p-cyclohexylphenyl group, p-adamantylphenyl group) Examples include aryl-cycloalkyl groups such as phenylcyclohexyl groups, etc. , R a36 Examples include alkyl groups having 1 to 18 carbon atoms, and alicyclic hydrocarbon groups having 3 to 18 carbon atoms. Aromatic hydrocarbon groups having 6 to 18 carbon atoms, or groups formed by combining these. It can be listed.

[0121] R a34 Preferably, it is a hydrogen atom. R a35 Preferably, a hydrogen atom, an alkyl group having 1 to 12 carbon atoms, or a C3 to 12 carbon atom. It is an alicyclic hydrocarbon group, more preferably a methyl group or an ethyl group. R a36 The hydrocarbon group is preferably an alkyl group having 1 to 18 carbon atoms, or a C3 to 18 carbon atom Alicyclic hydrocarbon groups, aromatic hydrocarbon groups with 6 to 18 carbon atoms, or combinations thereof The group formed is more preferably an alkyl group having 1 to 18 carbon atoms, or a group having 3 to 1 carbon atoms. It is an 8-cell alicyclic hydrocarbon group or an aralkyl group having 7 to 18 carbon atoms. a36 Alki in The rico group and alicyclic hydrocarbon group are preferably unsubstituted. a36 Aromatic carbonization in The hydrogen group is preferably an aromatic ring having an aryloxy group with 6 to 10 carbon atoms. -OC(R) in structural units (a1-4) a34 )(R a35 )-OR a36 is an acid (for example) It is eliminated upon contact with p-toluenesulfonic acid, forming a hydroxyl group. -OC(R a34 )(R a35 )-OR a36 It bonds to the ortho- or para-position of the benzene ring. It is preferable that the bond is formed at the p-position, and more preferably that it is formed at the p-position.

[0122] As for structural units (a1-4), for example, see Japanese Patent Publication No. 2010-204646. Examples include monomer-derived structural units. Preferably, formulas (a1-4-1) to (a1 -4-24) The structural units and R in the structural unit (a1-4) a32 to A structure in which the corresponding hydrogen atom is replaced by a halogen atom, a haloalkyl group, or an alkyl group. The units are listed, more preferably formulas (a1-4-1) to (a1-4-5), formula (a1 -4-10), formula (a1-4-13), formula (a1-4-14), formula (a1-4-19), The structural units are represented by equation (a1-4-20). TIFF2026066273000126.tif127160

[0123] If resin (A) contains structural units (a1-4), the content of these units is the total structural content of resin (A). The percentage of the total units is preferably 3 to 80 mol%, and preferably 5 to 75 mol%. More preferably, 7 to 70 mol%, and even more preferably 7 to 65 mol%. It is even more preferable that the amount is 10 to 60 mol%, and is particularly preferable.

[0124] As structural units derived from (meth)acrylic monomers having group (2), formula (a1 Structural units represented by -5) (hereinafter sometimes referred to as "structural units (a1-5)") are also mentioned. It can be done. TIFF2026066273000127.tif4558 formula (a1-5), R a8 This may have a halogen atom, or it may have a C1-C6 alkyl group, a hydrogen atom, or a halogen atom. This represents a chlorogenic atom. Za1 This is a single bond or *-(CH2) h3 -CO-L 54 - represents a value, and h3 is one of 1 to 4. Represents an integer of L, where * is L 51 This represents the connection point. L 51 , L 52 , L 53 and L 54 These represent either -O- or -S- independently. s1 represents an integer between 1 and 3. s1' represents an integer between 0 and 3.

[0125] Examples of halogen atoms include fluorine atoms and chlorine atoms, with fluorine atoms being preferred. Examples of C1-C6 alkyl groups that may have a halogen atom include methyl and ethyl groups. Group, propyl group, butyl group, pentyl group, hexyl group, heptyl group, octyl group, fluorine Examples include methyl and trifluoromethyl groups. In equation (a1-5), R a8 This is a hydrogen atom, a methyl group, or a trifluoromethyl group preferable. L 51 An oxygen atom is preferred. L 52 and L 53 Preferably, one of them is -O- and the other is -S-. s1 is preferably 1. s1' is preferably an integer between 0 and 2. Z a1 A single bond or *-CH2-CO-O- is preferred.

[0126] Examples of structural units (a1-5) are described in Japanese Patent Publication No. 2010-61117. Examples of monomer-derived structural units include those from formula (a1-5-1) to formula (a1-5- 4) The structural units represented by formula (a1-5-1) or formula (a1-5-2 A structural unit represented by ) is more preferable. TIFF2026066273000128.tif33133

[0127] If resin (A) contains structural units (a1-5), the percentage of these units is the total structural content of resin (A). The amount is preferably 1 to 50 mol%, more preferably 3 to 45 mol%, and 5 to 40 mol% relative to the unit. A % of 10% is more preferable, and 5 to 30 mol% is even more preferable.

[0128] In addition, the following structural units (a1) can also be listed. TIFF2026066273000129.tif31162

[0129] When resin (A) contains structural units such as (a1-3-1) to (a1-3-7) above The content is preferably 10 to 95 mol% relative to the total structural units of resin (A), and 15 ~90 mol% is more preferred, 20~85 mol% is even more preferred, and 20~70 mol% is More preferably, 20 to 60 mol% is particularly preferred.

[0130] In addition, the following structural units (a1) can also be listed. TIFF2026066273000130.tif5295 When resin (A) contains structural units such as (a1-6-1) to (a1-6-3) above. The content is preferably 10 to 60 mol% relative to the total structural units of resin (A), and 15 ~55 mol% is more preferred, 20~50 mol% is even more preferred, and 20~45 mol% is More preferably, 20 to 40 mol% is particularly preferred.

[0131] <Structural unit (s)> A structural unit (s) is a monomer that does not have an acid-unstable group (hereinafter referred to as "monomer (s)"). It is derived from (there is a combination). The monomer that derives the structural unit (s) is an acid-resistant monomer known in the field of resists. Monomers without a stable group can be used. The structural unit (s) preferably has a hydroxyl group or a lactone ring. A structural unit having a xyl group and not having an acid-unstable group (hereinafter referred to as "structural unit (a2)") A structural unit having a lactone ring and / or not having an acid-unstable group (hereinafter referred to as "structural unit") If a resin containing a "production unit (a3)" is used in the resist composition of the present invention, This improves the resolution of the resist pattern and its adhesion to the substrate.

[0132] <Structural Unit (a2)> The hydroxyl group in structural unit (a2) can be an alcoholic hydroxyl group or a phenolic group. A hydroxyl group may also be used. When manufacturing a resist pattern from the resist composition of the present invention, KrF is used as the exposure light source. High-energy beams such as excimer lasers (248 nm), electron beams, or EUV (ultra-ultraviolet light) are used. If present, the structural unit (a2) is a structural unit having a phenolic hydroxyl group ( a2) is preferred, and it is even more preferable to use the structural unit (a2-A) described later. When using an ArF excimer laser (193 nm), the structural unit (a2) is A A structural unit (a2) having a hydroxyl group is preferred, and the structural unit (a2) described later -1) is more preferable. The structural unit (a2) contains one type alone. It is acceptable to include two or more types.

[0133] Structural units having a phenolic hydroxyl group in structural unit (a2) include those of formula (a Examples of structural units represented by 2-A) (hereinafter sometimes referred to as "structural unit (a2-A)") include It is possible. TIFF2026066273000131.tif4955[In formula (a2-A), R a50 This is a hydrogen atom, a halogen atom, or a C1-C6 element which may have a halogen atom. It represents an alkyl group. R a51 This includes halogen atoms, hydroxyl groups, alkyl groups with 1 to 6 carbon atoms, and C1 to 6 atoms. Alkoxy group, alkoxyalkyl group having 2 to 12 carbon atoms, alkoxyalkyl group having 2 to 12 carbon atoms Lucoxy group, C2-C4 alkylcarbonyl group, C2-C4 alkylcarbonyl This represents an oxy group, an acryloyloxy group, or a methacryloyloxy group. A a50 This is a single bond or *-X a51 -(A a52 -X a52 ) nb - represents -R a50 they combine This represents the bonding site with the carbon atom. A a52 This represents an alkanediyl group with 1 to 6 carbon atoms. X a51 and X a52 These represent -O-, -CO-O-, or -O-CO- independently. nb represents either 0 or 1. mb represents an integer between 0 and 4. If mb is an integer greater than or equal to 2, Number R a51 They may be the same or different from each other.

[0134] R a50 and R a51 Examples of halogen atoms in this context include fluorine, chlorine, and bromine atoms. These are some examples. R a50 C1-C6 alkyl groups that may have a halogen atom include: Trifluoromethyl group, difluoromethyl group, methyl group, perfluoroethyl group, 2,2 ,2-trifluoroethyl group, 1,1,2,2-tetrafluoroethyl group, ethyl group, pe fluoropropyl group, 2,2,3,3,3-pentafluoropropyl group, propyl group, Perfluorobutyl group, 1,1,2,2,3,3,4,4-octafluorobutyl group, Tyl group, perfluoropentyl group, 2,2,3,3,4,4,5,5,5-nonafluoro Examples include pentyl groups, pentyl groups, hexyl groups, and perfluorohexyl groups. R a50 The hydrogen atom or an alkyl group having 1 to 4 carbon atoms is preferred, and the hydrogen atom, methyl group or An ethyl group is more preferable, and a hydrogen atom or a methyl group is even more preferable. R a51 The alkyl groups in this context are methyl, ethyl, propyl, and isopropyl groups. Examples include the butyl group, sec-butyl group, tert-butyl group, pentyl group, and hexyl group. The alkyl group is preferably an alkyl group having 1 to 4 carbon atoms, and may have a methyl group or an ethyl group. More preferably, a methyl group is even more preferred. R a51 The alkoxy groups in this context include methoxy, ethoxy, propoxy, and iso Examples include propoxy groups, butoxy groups, sec-butoxy groups, and tert-butoxy groups. The alkoxy group is preferably an alkoxy group having 1 to 4 carbon atoms, and is either a methoxy group or an ethoxy group. More preferably, a methoxy group is even more preferred. R a51 The alkoxyalkyl groups in this context are methoxymethyl group and ethoxyethyl group. , propoxymethyl group, isopropoxymethyl group, butoxymethyl group, sec-butoxy Examples include methyl groups and tert-butoxymethyl groups. Alkoxyalkyl groups have a number of carbon atoms. 2 to 8 alkoxyalkyl groups are preferred, and methoxymethyl or ethoxyethyl groups are preferred. A methoxymethyl group is more preferable, and a methoxymethyl group is even more preferable. R a51 Examples of alkoxyalkoxy groups in this context include methoxymethoxy groups and methoxyethyl groups. Xy group, ethoxymethoxy group, ethoxyethoxy group, propoxymethoxy group, isoprop Xymethoxy group, butoxymethoxy group, sec-butoxymethoxy group, tert-butoxy A cymethoxy group is one example. Alkoxyalkoxy groups are alkoxyal groups with 2 to 8 carbon atoms. A coxy group is preferred, and a methoxyethoxy group or an ethoxyethoxy group is more preferred. R a51 The alkylcarbonyl groups in this context include acetyl, propionyl, and butyric groups. Examples include lyl groups. Alkyl carbonyl groups are alkyl carbonyl groups having 2 to 3 carbon atoms. A is preferred, and an acetyl group is more preferred. R a51 Examples of alkylcarbonyloxy groups in this context include acetyloxy groups and propionyl groups. Examples include the oxy group and the butyryloxy group. The alkylcarbonyloxy group has a number of carbon atoms. Two to three alkylcarbonyloxy groups are preferred, and acetyloxy groups are more preferred. R a51 This includes halogen atoms, hydroxyl groups, C1-C4 alkyl groups, and C1-C4 An alkoxy group or an alkoxyalkoxy group having 2 to 8 carbon atoms is preferred, along with a fluorine atom and iodine. Elementary atom, hydroxyl group, methyl group, methoxy group, ethoxy group, ethoxyethoxy group or ethoxyethoxy group A toxicmethoxy group is more preferred, along with a fluorine atom, an iodine atom, a hydroxyl group, a methyl group, A methoxy group or an ethoxyethoxy group is even more preferred.

[0135] *-X a51 -(A a52 -Xa52 ) nb - for example, *-O-, *-CO-O-, *-OC O-, *-CO-OA a52 -CO-O-, *-O-CO-A a52 -O-, *-OA a52 -CO-O-, *-CO-OA a52 -O-CO-, *-O-CO-A a52 -O-CO-, These include *-CO-O- and *-CO-OA. a52 -CO-O- or *- OA a52 -CO-O- is preferred.

[0136] A a52 The alkanediyl groups in this include 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, butane-1,3-diyl group, 2-methyl Propane-1,3-diyl group, 2-methylpropane-1,2-diyl group, pentane-1, Examples include 4-diyl groups and 2-methylbutane-1,4-diyl groups. A a52 It is preferable that this is a methylene group or an ethylene group.

[0137] A a50 These are single bonds, *-CO-O- or *-CO-OA a52 Being a CO-O Preferably, it is a single bond, *-CO-O- or *-CO-O-CH2-CO-O-. More preferably, the bond is a single bond or even more preferably *-CO-O-.

[0138] mb is preferably 0, 1, or 2, more preferably 0 or 1, and even more preferably 0. At least one hydroxyl group can be attached to the m- or p-position of the benzene ring. Preferably, the phenyl group is bonded at the m-position, and more preferably, at the m-position. If present, it is preferable that the two hydroxyl groups are bonded to the m- and p- positions, respectively. It seems so.

[0139] As for the structural unit (a2-A), see Japanese Patent Publication No. 2010-204634, Japanese Patent Publication No. 2012- Examples include monomer-derived structural units described in Publication No. 12577.

[0140] The structural unit (a2-A) is represented by equations (a2-2-1) to (a2-2-24). In the structural units and structural units represented by formulas (a2-2-1) to (a2-2-24) R in structural unit (a2-A) a50 The methyl group corresponding to a hydrogen atom, halogen atom, Examples include structural units that are replaced by a γ-alkyl group or other alkyl groups. Structural unit (a2 -A) is a structural unit represented by formulas (a2-2-1) to (a2-2-4), formula (a2-2 -6) Structural units represented by formula (a2-2-8) and formula (a2-2- 12) Structural units represented by formula (a2-2-18) and formulas (a2-2-1) to (a Structural units represented by formula (a2-2-4), structural units represented by formula (a2-2-6), formula (a2- The structural units are represented by 2-8) and by formulas (a2-2-12) to (a2-2-18). In the structural unit, R in the structural unit (a2-A) a50 The methyl group corresponding to the hydrogen source It is preferable that the structural unit is replaced by a child, and the structural unit is represented by formula (a2-2-3). Position, structural unit represented by formula (a2-2-4), structural unit represented by formula (a2-2-8), Structural units represented by formulas (a2-2-12) to (a2-2-14) and formula (a2-2-1 8) Structural units represented by formula (a2-2-3), and structural units represented by formula (a2-2 -4) Structural units represented by formula (a2-2-8), Structural units represented by formula (a2-2-1 2) Structural units represented by formula (a2-2-14) and structural units represented by formula (a2-2-18) In the structural unit, R in the structural unit (a2-A) a50 The methyl group corresponding to the hydrogen atom It is more preferable that the structural unit is replaced by the structure represented by formula (a2-2-3). Units, structural units represented by formula (a2-2-4), structural units represented by formula (a2-2-8) and structural units represented by formula (a2-2-3), structural units represented by formula (a2-2-4), In the structural unit represented by formula (a2-2-8), R in structural unit (a2-A) a5 0 It is even more preferable that the corresponding methyl group is replaced by a hydrogen atom in the structural unit. TIFF2026066273000132.tif79169

[0141] Content of structural unit (a2-A) when structural unit (a2-A) is present in resin (A) This is preferably 5 to 80 mol%, more preferably 10 to 70 mol%, relative to the total structural units. It is mol%, more preferably 15-65 mol%, and even more preferably 20- It is 65 mol%. Structural unit (a2-A) is polymerized using structural unit (a1-4), for example, and then p-Tol It can be incorporated into resin (A) by treating it with an acid such as ene sulfonic acid. After polymerization using acetoxystyrene, etc., tetramethylammonium hydroxide, etc. By treating with alkali, the structural unit (a2-A) can be incorporated into the resin (A). can.

[0142] Structural units having an alcoholic hydroxyl group in structural unit (a2) include those with the formula ( The structural unit represented by a2-1) (hereinafter sometimes referred to as "structural unit (a2-1)") It can be listed. TIFF2026066273000133.tif4663 formula (a2-1), L a3 is -O- or *-O-(CH2) k2 -CO-O- represents, k2 represents an integer between 1 and 7. * represents a connection site with -CO-. R a14 represents a hydrogen atom or a methyl group. R a15 and R a16 Each of these independently represents a hydrogen atom, a methyl group, or a hydroxyl group. o1 represents an integer between 0 and 10.

[0143] In equation (a2-1), L a3 Preferably, -O-, -O-(CH2) f1 -CO-O- (where f1 represents any integer from 1 to 4), and more preferably -O-. R a14 The group is preferably a methyl group. R a15 Preferably, it is a hydrogen atom. R a16 This is preferably a hydrogen atom or a hydroxyl group. o1 is preferably an integer between 0 and 3, more preferably 0 or 1.

[0144] As for the structural unit (a2-1), for example, see Japanese Patent Publication No. 2010-204646. Examples of structural units derived from monomers are given by equations (a2-1-1) to (a2-1-6). A structural unit represented by any of the following formulas is preferred, from formula (a2-1-1) to formula (a2-1-4) A structural unit represented by either formula (a2-1-1) or formula (a2-1- The structural unit represented in 3) is even more preferable. TIFF2026066273000134.tif50139

[0145] If resin (A) contains structural units (a2-1), the content of these units is the total structural unit content of resin (A). For each position, it is usually 1 to 45 mol%, preferably 1 to 40 mol%, and more preferably The amount is 1 to 35 mol%, more preferably 1 to 20 mol%, and even more preferably The percentage is between 1 and 10 mol%.

[0146] <Structural unit (a3)> The lactone rings of structural unit (a3) ​​are a β-propiolactone ring and a γ-butyrolactone ring. It can be a monocyclic ring such as a δ-valerolactone ring, and the contraction of a monocyclic lactone ring with other rings. A ring compound is also acceptable. Preferably, a γ-butyrolactone ring, an adamantane lactone ring, or γ - A bridged ring containing a butyrolactone ring structure (e.g., a structural unit represented by the following formula (a3-2)) These are some examples.

[0147] The structural unit (a3) ​​is preferably formula (a3-1), formula (a3-2), formula (a3-3) Alternatively, it is a structural unit represented by formula (a3-4). These may be contained individually. It may contain two or more types. TIFF2026066273000135.tif52166[In formulas (a3-1), (a3-2), (a3-3), and (a3-4), L a4 , L a5 and L a6 These are, independently, -O- or *-O-(CH2) k3 -C This represents a base represented by OO-(where k3 is an integer from 1 to 7). La7 is -O-, *-OL a8 -O-, *-OL a8 -CO-O-, *-OL a8 -CO-OL a9 -CO-O- or *-OL a8 -O-CO-L a9 -O- represents vinegar. L a8 and L a9 Each of these independently represents an alkanediyl group with 1 to 6 carbon atoms. * indicates a bonding site with a carbonyl group. R a18 , R a19 and R a20 Each of these independently represents either a hydrogen atom or a methyl group. R a24 This is a hydrogen atom, a halogen atom, or a C1-C2 atom which may have a halogen atom. This represents an alkyl group of 6. X a3 represents -CH2- or an oxygen atom. R a21 This represents an aliphatic hydrocarbon group with 1 to 4 carbon atoms. R a22 , R a23 and R a25 Each of these independently comprises a carboxyl group, a cyano group, or a carbon Represents aliphatic hydrocarbon groups with prime numbers 1 through 4. p1 represents an integer between 0 and 5. q1 represents an integer between 0 and 3. r1 represents an integer between 0 and 3. w1 represents an integer between 0 and 8. When p1, q1, r1 and / or w1 are 2 or more, multiple R a21 , R a22 , R a2 3 and / or R a25 They may be the same or different from each other.

[0148] R a21 , R a22, R a23 and R a25 As for aliphatic hydrocarbon groups in this context, methyl ethyl group, propyl group, isopropyl group, butyl group, sec-butyl group and ter Examples include alkyl groups such as t-butyl groups. R a24 The halogen atoms in this include fluorine, chlorine, bromine, and iodine. Atoms are one example. R a24 The alkyl groups in this context include methyl, ethyl, propyl, and isopropyl groups. butyl group, sec-butyl group, tert-butyl group, pentyl group, and hexyl group, etc. Examples include alkyl groups having 1 to 4 carbon atoms, and more preferably methyl groups. Alternatively, an ethyl group may be used. R a24 Examples of alkyl groups having a halogen atom include the trifluoromethyl group. Perfluoroethyl group, perfluoropropyl group, perfluoroisopropyl group, perf Perfluorobutyl group, perfluorosec-butyl group, perfluorotert-butyl group, Lufluoropentyl group, perfluorohexyl group, trichloromethyl group, tribromomethyl Examples include the 14-3 group and the triiodomethyl group.

[0149] L a8 and L a9 Examples of alkanediyl groups in this context include methylene groups, ethylene groups, and pro groups. Pan-1,3-diyl group, propane-1,2-diyl group, butane-1,4-diyl group, tan-1,5-diyl group, hexane-1,6-diyl group, butane-1,3-diyl group, 2-methylpropane-1,3-diyl group, 2-methylpropane-1,2-diyl group, pen Examples include tan-1,4-diyl groups and 2-methylbutane-1,4-diyl groups.

[0150] In equations (a3-1) to (a3-3), L a4 ~L a6 Each is independently preferred Alternatively, -O- or *-O-(CH2) k3 In -CO-O-, k3 is one of 1 to 4. The base is an integer, more preferably -O- and *-O-CH2-CO-O-, even more preferably It is an oxygen atom. R a18 ~R a21 The group is preferably a methyl group. R a22 and R a23 Each of these is independently preferably a carboxyl group, a cyano group, or a melanin group. It is a chill group. p1, q1, and r1 are each independently, preferably integers between 0 and 2. More preferably, it is 0 or 1.

[0151] In equation (a3-4), R a24 Preferably, a hydrogen atom or an alkyl group having 1 to 4 carbon atoms. It is a group, more preferably a hydrogen atom, a methyl group or an ethyl group, and even more preferably a group of the same type. It is either a hydrogen atom or a methyl group. R a25 The group is preferably a carboxyl group, a cyano group, or a methyl group. L a7 Preferably -O- or *-OL a8 -CO-O- and, far It is -O-, -O-CH2-CO-O-, or -O-C2H4-CO-O-. w1 is preferably an integer between 0 and 2, and more preferably 0 or 1. In particular, formula (a3-4)' is preferred over formula (a3-4). TIFF2026066273000136.tif3848(in the formula, R a24 , L a7 (This expresses the same meaning as above.)

[0152] The structural unit (a3) ​​is the monomer described in Japanese Patent Publication No. 2010-204646. , monomers described in Japanese Patent Publication No. 2000-122294, Japanese Patent Publication No. 2012-41274 Examples of structural units derived from monomers described in the publication are listed below. Structural unit (a3) ​​is , formula (a3-1-1), formula (a3-1-2), formula (a3-2-1), formula (a3-2-2) , equation (a3-3-1), equation (a3-3-2), and equation (a3-4-1) ~ equation (a3-4-1 2) A structural unit represented by any of the above, and in the said structural unit, formula (a3-1) to formula ( R in a3-4) a18 , R a19 , R a20 and R a24 The methyl group corresponding to water Structural units that are replaced by elementary atoms are preferred.

[0153] TIFF2026066273000137.tif118166

[0154] If resin (A) contains structural units (a3), the total content of these units is the total structural unit content of resin (A). The amount is usually 5-70 mol%, preferably 10-65 mol%, and more preferably It is either 10-60 mol% or 10-60 mol%. Also, structural unit (a3-1), structural unit (a3-2), structural unit (a3-3) or structure The content of units (a3-4) is 5 to 60 units relative to the total structural units of resin (A), respectively. % is preferred, 5 to 50 mol% is more preferred, and 10 to 50 mol% is even more preferred.

[0155] <Structural Unit (a4)> The following are examples of structural units (a4): TIFF2026066273000138.tif2964[In formula (a4), R41 represents a hydrogen atom or a methyl group. R 42 This represents a saturated hydrocarbon group having a halogen atom with 1 to 24 carbon atoms, and the saturated hydrocarbon water The -CH2- group in the element may be replaced by -O- or -CO-. R 42 The saturated hydrocarbon groups represented by these terms include chain-type saturated hydrocarbon groups and monocyclic or polycyclic alicyclic saturated hydrocarbon groups. Examples include hydrocarbon groups, and groups formed by combining these.

[0156] Examples of chain-type saturated hydrocarbon groups include methyl, ethyl, propyl, butyl, and pentyl groups. Hexyl group, heptyl group, octyl group, decyl group, dodecyl group, pentadecyl group, Examples include xadecyl groups, heptadecyl groups, and octadecyl groups. Examples of monocyclic or polycyclic alicyclic saturated hydrocarbon groups include cyclopentyl groups and cyclohexyl groups. cycloalkyl groups such as cycloheptyl and cyclooctyl groups; decahydronaphthyl groups, Polycyclic lipids such as adamantyl groups, norbornyl groups, and the following groups (* indicates the binding site). Examples include cyclic saturated hydrocarbon groups. TIFF2026066273000139.tif10146 The groups formed by the combination include one or more alkyl groups or one or more alkanes. Examples of groups formed by combining an yl group with one or more alicyclic saturated hydrocarbon groups include -Alkanediyl group-alicyclic saturated hydrocarbon group, -Alkanediyl group-alkyl Examples include AL groups, -alkanediyl groups, -alicyclic saturated hydrocarbon groups, -alkyl groups, etc.

[0157] The structural unit (a4) is the structural unit represented by formula (a4-0) and the structural unit represented by formula (a4-1). Examples include structural units and structural units represented by formula (a4-4). TIFF2026066273000140.tif4349[In formula (a4-0), R 54 represents a hydrogen atom or a methyl group. L 4a This represents a single bond or an alkanediyl group having 1 to 4 carbon atoms. L 3a This is a perfluoroalkanediyl group having 1 to 8 carbon atoms or a perfluoroalkanediyl group having 3 to 12 carbon atoms. This represents a luorocycloalkanediyl group. R 64 This represents a hydrogen atom or a fluorine atom.

[0158] L 4a The alkanediyl groups in this include methylene group, ethylene group, propane-1, Linear alkanediyl groups such as 3-diyl groups and butane-1,4-diyl groups, ethane-1,1 -diyl group, propane-1,2-diyl group, butane-1,3-diyl group, 2-methylprop Branched alkanes such as pan-1,3-diyl groups and 2-methylpropane-1,2-diyl groups A diyl group is one example.

[0159] L 3a In this context, perfluoroalkanediyl groups include difluoromethylene groups and per Fluoroethylene group, perfluoroethylfluoromethylene group, perfluoropropane- 1,3-diyl group, perfluoropropane-1,2-diyl group, perfluoropropane- 2,2-diyl group, perfluorobutane-1,4-diyl group, perfluorobutane-2, 2-diyl group, perfluorobutane-1,2-diyl group, perfluoropentane-1,5 -diyl group, perfluoropentane-2,2-diyl group, 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 Examples include diyl groups and perfluorooctane-4,4-diyl groups. L 3a As for the perfluorocycloalkanediyl group in this context, perfluorocyclo xandiyl group, perfluorocyclopentanediyl group, perfluorocycloheptanediyl Examples include yl groups and perfluoroadamantanediyl groups.

[0160] L 4a The is preferably a single bond, a methylene group or an ethylene group, and more preferably a single bond. The bond is a methylene group. L 3a is preferably a perfluoroalkanediyl group having 1 to 6 carbon atoms, and more preferably Alternatively, it is a perfluoroalkanediyl group with 1 to 3 carbon atoms.

[0161] The structural units (a4-0) include the structural units shown below and the structural units within the following structural units ( a4-0) R 54 Examples of structural units in which the corresponding methyl group is replaced by a hydrogen atom include It can be done. TIFF2026066273000141.tif98166

[0162] TIFF2026066273000142.tif4866[In formula (a4-1), R a41 represents a hydrogen atom or a methyl group. R a42This represents a saturated hydrocarbon group having 1 to 20 carbon atoms, which may have substituents. The -CH2- group in the hydrocarbon group may be replaced by -O- or -CO-. A a41 This is an alkanediyl group having 1 to 6 carbon atoms, which may have substituents, or a compound of formula (ag 1) represents the base. However, A a41 and R a42 At least one of them is a substitution It has a halogen atom (preferably a fluorine atom) as a base. TIFF2026066273000143.tif1487 [In formula (a-g1), s represents either 0 or 1. A a42 and A a44 Each of these is independently a divalent carbon atom having 1 to 5 carbon atoms, which may have substituents. This represents a saturated hydrocarbon group. A a43 This is a divalent saturated hydrocarbon group having 1 to 5 carbon atoms, which may have single bonds or substituents. It represents. X a41 and X a42 These are, independently, -O-, -CO-, -CO-O-, or -O-CO - represents However, A a42 , A a43 , A a44 , X a41 and X a42 The total number of carbon atoms is 7 or less. * indicates a binding site, and the * on the right is -O-CO-R a42 This is the junction site.

[0163] R a42 The saturated hydrocarbon groups in this context include chain-type saturated hydrocarbon groups and monocyclic or polycyclic alicyclic groups. Examples include saturated hydrocarbon groups and groups formed by combining them. ru.

[0164] Examples of chain-type saturated hydrocarbon groups include methyl, ethyl, propyl, butyl, and pentyl groups. Hexyl group, heptyl group, octyl group, decyl group, dodecyl group, pentadecyl group, Examples include xadecyl groups, heptadecyl groups, and octadecyl groups. Examples of monocyclic or polycyclic alicyclic saturated hydrocarbon groups include cyclopentyl groups and cyclohexyl groups. cycloalkyl groups such as cycloheptyl and cyclooctyl groups; decahydronaphthyl groups, Polycyclic lipids such as adamantyl groups, norbornyl groups, and the following groups (* indicates the binding site). Examples include cyclic saturated hydrocarbon groups. TIFF2026066273000144.tif10160 The groups formed by the combination include one or more alkyl groups or one or more alkanes. Examples of groups formed by combining an yl group with one or more alicyclic saturated hydrocarbon groups include -Alkanediyl group-alicyclic saturated hydrocarbon group, -Alkanediyl group-alkyl Examples include AL groups, -alkanediyl groups, -alicyclic saturated hydrocarbon groups, -alkyl groups, etc.

[0165] R a42 The substituents it possesses consist of halogen atoms and groups represented by formula (a-g3). At least one selected from the group is mentioned. Examples of halogen atoms include fluorine atoms and salts. Examples include elementary atoms, bromine atoms, and iodine atoms, with fluorine atoms being preferred. TIFF2026066273000145.tif855[In formula (a-g3), X a43 * represents an oxygen atom, a carbonyl group, *-O-CO-, or *-CO-O-. A a45 This represents a saturated hydrocarbon group having 1 to 17 carbon atoms, which may contain a halogen atom. * is R a42 This represents the connection point with [the other element]. However, R a42 -Xa43 -A a45 In R a42 If it does not have a halogen atom, then A a4 5 This represents a saturated hydrocarbon group having 1 to 17 carbon atoms and containing at least one halogen atom.

[0166] A a45 The saturated hydrocarbon groups in this context include methyl, ethyl, propyl, and butyl groups. pentyl group, hexyl group, heptyl group, octyl group, decyl group, dodecyl group, pentade Alkyl groups such as syl, hexadecyl, heptadecyl, and octadecyl groups; Monocyclic groups such as cyclopentyl, cyclohexyl, cycloheptyl, and cyclooctyl groups Alicyclic hydrocarbon groups; as well as decahydronaphthyl groups, adamantyl groups, norbornyl groups and Examples include polycyclic alicyclic hydrocarbon groups such as the following groups (* indicates a bonding site). TIFF2026066273000146.tif10160 The groups formed by the combination include one or more alkyl groups or one or more alkanes. Examples of groups formed by combining an yl group with one or more alicyclic hydrocarbon groups include -Alkanediyl group-alicyclic hydrocarbon group, -Alkanediyl group-alkyl group, -Al Examples include candiyl group-alicyclic hydrocarbon group-alkyl group, etc.

[0167] R a42 The halogen atom is preferably a saturated hydrocarbon group which may have a halogen atom. Alkyl groups having and / or saturated hydrocarbon groups having a group represented by formula (a-g3) are suitable. It is preferable. R a42 If it is a saturated hydrocarbon group having a halogen atom, it preferably has a fluorine atom. A saturated hydrocarbon group, more preferably a perfluoroalkyl group or perfluoroalkyl group. It is a chloroalkyl group, and more preferably a perfluoroalkyl group having 1 to 6 carbon atoms. Particularly preferred is a perfluoroalkyl group having 1 to 3 carbon atoms. The perfluoromethyl group, perfluoroethyl group, and perfluoropropyl group are examples of perfluoropropyl groups. , perfluorobutyl group, perfluoropentyl group, perfluorohexyl group, perfluoro Examples include oroheptyl groups and perfluorooctyl groups. Examples of the 'l' group include the perfluorocyclohexyl group. R a42 However, if it is a saturated hydrocarbon group having a group represented by formula (a-g3), then formula (a- Including the number of carbon atoms in the group represented by g3), R a42 The total number of carbon atoms should preferably be 15 or less. Furthermore, 12 or less is more preferable. When the group represented by formula (a-g3) is used as a substituent, The number should preferably be one.

[0168] R a42 If is a saturated hydrocarbon group having a group represented by formula (a-g3), then R a42 is, More preferably, the group is represented by the formula (a-g2). TIFF2026066273000147.tif871[In formula (a-g2), A a46 This comprises a divalent saturated hydrocarbon group having 1 to 17 carbon atoms, which may have a halogen atom. represent. X a44 This represents **-O-CO- or **-CO-O- (where ** is A a46 The connection site represent.). A a47 This represents a saturated hydrocarbon group having 1 to 17 carbon atoms, which may contain a halogen atom. However, A a46 , A a47 and X a44The total number of carbon atoms is 18 or less, A a46 and A a47 of Of these, at least one has at least one halogen atom. * indicates a bonding site with a carbonyl group.

[0169] A a46 The saturated hydrocarbon group preferably has 1 to 6 carbon atoms, and more preferably 1 to 3. A a47 The number of carbon atoms in the saturated hydrocarbon group is preferably 4 to 15, more preferably 5 to 12, A a 47 A cyclohexyl group or an adamantyl group is more preferable.

[0170] The preferred structure of the group represented by formula (a-g2) is as follows (* represents a carbonyl group) (This is the junction site.) TIFF2026066273000148.tif14160

[0171] A a41 The alkanediyl groups in this include methylene group, ethylene group, propane-1, 3-diyl group, butane-1,4-diyl group, pentane-1,5-diyl group, hexane-1 Linear alkanediyl groups such as ,6-diyl groups; propane-1,2-diyl groups, butane-1 ,3-diyl group, 2-methylpropane-1,2-diyl group, 1-methylbutane-1,4- Examples include branched alkanediyl groups such as diyl groups and 2-methylbutane-1,4-diyl groups. ru. A a41 The substituents on the alkanediyl group include a hydroxyl group and a carbon-1 to carbon-6 group. Examples include alkoxy groups. A a41 is preferably an alkanediyl group having 1 to 4 carbon atoms, more preferably a carbon number The group is an alkanediyl group of type 2 to 4, and more preferably an ethylene group.

[0172] A in the group represented by formula (a-g1) a42 , A a43 and A a44 Divalent saturated carbonized water The elemental groups include linear or branched alkanediyl groups and monocyclic or polycyclic divalent alicyclic saturated carbon. By combining a hydrogenated group, as well as an alkanediyl group and a divalent alicyclic saturated hydrocarbon group... Examples include divalent saturated hydrocarbon groups formed from these groups. Specifically, methylene groups, ethylene groups, etc. n group, propane-1,3-diyl group, propane-1,2-diyl group, butane-1,4-diyl group Iyl group, 1-methylpropane-1,3-diyl group, 2-methylpropane-1,3-diyl Examples include the 2-methylpropane-1,2-diyl group. A a42 , A a43 and A a44 The substituents of the divalent saturated hydrocarbon group represented by are hydroxyl groups. Examples include alkoxy groups having 1 to 6 carbon atoms. s is preferably 0.

[0173] In the group represented by formula (a-g1), X a42 -O-, -CO-, -CO-O- or The following are examples of groups that are -O-CO-. In the following examples, * and ** represents a binding site, and ** is -O-CO-R a42 This is the junction site. TIFF2026066273000149.tif47141

[0174] The structural units represented by formula (a4-1) are the structural units shown below and the structural units shown below. R in the structural unit represented by formula (a4-1) a41 A methyl group corresponding to this is placed on a hydrogen atom. Examples of replaced structural units include: TIFF2026066273000150.tif99146

[0175] TIFF2026066273000151.tif132150

[0176] The structural units represented by formula (a4-1) are the structural units represented by formula (a4-2) and Examples of structural units are given by formula (a4-3). TIFF2026066273000152.tif4356[In formula (a4-2), R f5 represents a hydrogen atom or a methyl group. L 44 This represents an alkanediyl group having 1 to 6 carbon atoms, and the -C contained in the alkanediyl group H2- may be replaced by -O- or -CO-. R f6 This represents a saturated hydrocarbon group having 1 to 20 fluorine atoms. However, L 44 and R f6 The upper limit for the total number of carbon atoms is 21.

[0177] L 44 The alkanediyl group with 1 to 6 carbon atoms is A a41 Similar to the examples given above, It can be done. R f6 The saturated hydrocarbon group is R 42 Similar to the examples given earlier, the same types of bases can be cited. L 44 In this context, an alkanediyl group having 2 to 4 carbon atoms is preferred. An ethylene group is more preferable.

[0178] Examples of structural units represented by formula (a4-2) include formulas (a4-1-1) to (a4 The structural units represented in (a4-2) are as follows. R f5The structural unit in which the corresponding methyl group is replaced by a hydrogen atom is also represented by formula (a4-2). It can be cited as a structural unit.

[0179] TIFF2026066273000153.tif5671[In formula (a4-3), R f7 represents a hydrogen atom or a methyl group. L 5 This represents an alkanediyl group with 1 to 6 carbon atoms. A f13 This represents a divalent saturated hydrocarbon group having 1 to 18 carbon atoms, which may contain a fluorine atom. vinegar. X f12 This represents *-O-CO- or *-CO-O- (* is A f13 This represents the connection point. ). A f14 This represents a saturated hydrocarbon group having 1 to 17 carbon atoms, which may contain a fluorine atom. However, A f13 and A f14 At least one of them has a fluorine atom, L 5 , A f13 and A f14 The upper limit for the total number of carbon atoms is 20.

[0180] L 5 The alkanediyl group in A is a41 The same as the example with the alkanediyl group. The basis for this can be cited.

[0181] A f13 A preferred divalent saturated hydrocarbon group which may have a fluorine atom is A divalent chain-type saturated hydrocarbon group which may have a fluorine atom and a fluorine atom A divalent alicyclic saturated hydrocarbon group, more preferably a perfluoroalkanedi It is a lu group. Examples of divalent chain-type saturated hydrocarbon groups that may contain a fluorine atom include methylene groups and ethyl acetate groups. Alkanediyl groups such as len group, propanediyl group, butanediyl group and pentanediyl group ; Difluoromethylene group, perfluoroethylene group, perfluoropropanediyl group, Perfluoroalkanes such as the fluorobutanediyl group and the perfluoropentanediyl group. Examples include diyl groups. Divalent alicyclic saturated hydrocarbon groups, which may contain a fluorine atom, are monocyclic and polycyclic. A slight misalignment is also acceptable. Examples of monocyclic groups include cyclohexanediyl groups and perfluorocyclodiyl groups. Examples include the xandiyl group. Polycyclic groups include the adamantanediyl group and norbol. Examples include the nandiyl group and the perfluoroadamantanediyl group.

[0182] A f14 The saturated hydrocarbon group and the saturated hydrocarbon group which may have a fluorine atom are R a42 in Similar groups to those exemplified can be cited. Among them, the trifluoromethyl group and the difluoromethyl group are particularly noteworthy. Tyl group, methyl group, perfluoroethyl group, 2,2,2-trifluoroethyl group, 1,1 ,2,2-tetrafluoroethyl group, ethyl group, perfluoropropyl group, 2,2,3, 3,3-Pentafluoropropyl group, propyl group, perfluorobutyl group, 1,1,2, 2,3,3,4,4-Octafluorobutyl group, butyl group, perfluoropentyl group, 2 ,2,3,3,4,4,5,5,5-nonafluoropentyl group, pentyl group, hexyl group , perfluorohexyl group, heptyl group, perfluoroheptyl group, octyl group and per Fluoroctyl groups and other alkyl fluorides, cyclopropylmethyl groups, cyclopropyl groups Cyclobutylmethyl group, cyclopentyl group, cyclohexyl group, perfluorocyclohexyl group Xyl group, adamantyl group, adamantylmethyl group, adamantyldimethyl group, norbol Nyl group, norbornylmethyl group, perfluoroadamantyl group, perfluoroadamantyl A methyl group is preferred.

[0183] In equation (a4-3), L 5 An ethylene group is preferred. A f13 The divalent saturated hydrocarbon group is a divalent chain-type saturated hydrocarbon group having 1 to 6 carbon atoms and carbon A group containing a divalent alicyclic saturated hydrocarbon group having 3 to 12 carbon atoms is preferred, and a divalent chain having 2 to 3 carbon atoms is preferred. A saturated hydrocarbon group is even more preferred. A f14 The saturated hydrocarbon group is a chain-type saturated hydrocarbon group having 3 to 12 carbon atoms and a group having 3 to 12 carbon atoms. Groups containing alicyclic saturated hydrocarbon groups are preferred, and chain-type saturated hydrocarbon groups having 3 to 10 carbon atoms and Groups containing alicyclic saturated hydrocarbon groups having 3 to 10 carbon atoms are even more preferred. Among them, A f14 teeth Preferably, the group contains an alicyclic saturated hydrocarbon group having 3 to 12 carbon atoms, and more preferably, Cyclopropylmethyl group, cyclopentyl group, cyclohexyl group, norbornyl group and It is a damantyl group.

[0184] Examples of structural units represented by equation (a4-3) include equation (a4-1'-1) ~ equation (a The structural units represented in 4-1'-11) are listed below. Keru R f7 The structural unit in which the corresponding methyl group is replaced by a hydrogen atom is also shown in formula (a4-3). It can be cited as a structural unit.

[0185] As a structural unit (a4), the structural unit represented by formula (a4-4) can also be cited. TIFF2026066273000154.tif4466[In formula (a4-4), R f21 represents a hydrogen atom or a methyl group. A f21 is, -(CH2) j1 -,-(CH2) j2 -O-(CH2) j3 - or - (CH2) j4 - CO-O-(CH2) j5 - represents j1 through j5 each independently represent an integer from 1 to 6. R f22 This represents a saturated hydrocarbon group with 1 to 10 carbon atoms containing a fluorine atom.

[0186] R f22 The saturated hydrocarbon group is R a42 Examples include saturated hydrocarbon groups similar to those represented by the symbol. R f22 This refers to an alkyl group having 1 to 10 carbon atoms that contains a fluorine atom, or a carbon atom containing a fluorine atom. A cycloaliphatic saturated hydrocarbon group having 1 to 10 prime atoms is preferred, and a group having 1 to 10 carbon atoms and a fluorine atom is preferred. Alkyl alkyl groups are more preferred, and C1-C6 alkyl groups having a fluorine atom are even more preferred. It's nice.

[0187] In equation (a4-4), A f21 As for, -(CH2) j1 - is preferred, ethylene A group or a methylene group is more preferred, and a methylene group is even more preferred.

[0188] Examples of structural units represented by formula (a4-4) include the following structural units and the following formula In the structural unit shown, R in structural unit (a4-4) f21 The methyl group corresponding to One example is a structural unit in which a hydrogen atom has been replaced. TIFF2026066273000155.tif86160

[0189] If resin (A) contains structural units (a4), the content of these units is equal to the total structural units of resin (A). For this, 1 to 20 mol% is preferred, 2 to 15 mol% is more preferred, and 3 to 10 mol% That is even more preferable.

[0190] <Structural Unit (a5)> The non-leaved hydrocarbon groups possessed by structural unit (a5) include linear, branched, or cyclic hydrocarbons. Groups having a group are examples. In particular, structural unit (a5) has an alicyclic hydrocarbon group. The base is preferable. Examples of structural units (a5) include the structural unit represented by formula (a5-1). . TIFF2026066273000156.tif3554[In formula (a5-1), R 51 represents a hydrogen atom or a methyl group. R 52 This represents an alicyclic hydrocarbon group having 3 to 18 carbon atoms, and the water contained in this alicyclic hydrocarbon group The elementary atoms may be substituted with aliphatic hydrocarbon groups having 1 to 8 carbon atoms. L 55 This represents a single bond or a divalent saturated hydrocarbon group having 1 to 18 carbon atoms, and the saturated hydrocarbon group The -CH2- group contained in may be replaced by -O- or -CO-.

[0191] R 52 The alicyclic hydrocarbon group in this can be either monocyclic or polycyclic. Examples of alicyclic hydrocarbon groups include cyclopropyl group, cyclobutyl group, and cyclopene. Examples include chill groups and cyclohexyl groups. Examples of polycyclic alicyclic hydrocarbon groups include, for example, Examples include adamantyl groups and norbornyl groups. Aliphatic hydrocarbon groups with 1 to 8 carbon atoms include, for example, methyl, ethyl, propyl, and iso groups. Propyl group, butyl group, sec-butyl group, tert-butyl group, pentyl group, hexyl Examples include alkyl groups such as the octyl group and the 2-ethylhexyl group. Examples of alicyclic hydrocarbon groups with substituents include the 3-methyladamantyl group. ru. R 52 is preferably an unsubstituted alicyclic hydrocarbon group having 3 to 18 carbon atoms, and more preferably k is an adamantyl group, a norbornyl group, or a cyclohexyl group.

[0192] L 55 In this context, divalent saturated hydrocarbon groups include divalent chain saturated hydrocarbon groups and divalent lipids. Examples include cyclic saturated hydrocarbon groups, preferably divalent chain saturated hydrocarbon groups. Examples of divalent chain-type saturated hydrocarbon groups include methylene groups, ethylene groups, and propanedi groups. Examples include alkanediyl groups such as the yl group, butanediyl group, and pentanediyl group. The divalent alicyclic saturated hydrocarbon group may be monocyclic or polycyclic. Examples of saturated hydrocarbon groups include cyclopentanediyl groups and cyclohexanediyl groups. Examples include the roalkanediyl group. Examples of polycyclic divalent alicyclic saturated hydrocarbon groups include ada Examples include mantanediyl groups and norbornanediyl groups.

[0193] L 55 The -CH2- contained in the divalent saturated hydrocarbon group represented by can be replaced with -O- or -CO-. Examples of the replaced groups include those represented by formulas (L1-1) to (L1-4). In the following formula, * and ** represent bonding sites, respectively, with * representing the bonding site with the oxygen atom. TIFF2026066273000157.tif18165 formula (L1-1), X x1 This represents *-O-CO- or *-CO-O- (* is Lx1 (This represents the connection point with [another element].) . L x1 This represents a divalent aliphatic saturated hydrocarbon group having 1 to 16 carbon atoms. L x2 This 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 This represents a divalent aliphatic saturated hydrocarbon group with 1 to 17 carbon atoms. L x4 This 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 This represents a divalent aliphatic saturated hydrocarbon group with 1 to 15 carbon atoms. L x6 and L x7 Each of these independently consists of a single bond or a divalent aliphatic saturated carbon with 1 to 14 carbon atoms. It represents a hydrogen group. 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 This represents a single bond or a divalent aliphatic saturated hydrocarbon group having 1 to 12 carbon atoms. W x1 This represents a divalent alicyclic saturated hydrocarbon group with 3 to 15 carbon atoms. However, L x8 , L x9 and W x1 The total number of carbon atoms is 15 or less.

[0194] L x1 Preferably, a divalent aliphatic saturated hydrocarbon group having 1 to 8 carbon atoms, more preferably, It is a methylene group or an ethylene group. L x2 Preferably, a single bond or a divalent aliphatic saturated hydrocarbon group having 1 to 8 carbon atoms, more preferably It is a single bond. L x3 Preferably, it is a divalent aliphatic saturated hydrocarbon group having 1 to 8 carbon atoms. L x4 Preferably, it is a single bond or a divalent aliphatic saturated hydrocarbon group having 1 to 8 carbon atoms. L x5 Preferably, a divalent aliphatic saturated hydrocarbon group having 1 to 8 carbon atoms, more preferably, It is a methylene group or an ethylene group. L x6 Preferably, a single bond or a divalent aliphatic saturated hydrocarbon group having 1 to 8 carbon atoms, more preferably The group is either a methylene group or an ethylene group. L x7 Preferably, it is a single bond or a divalent aliphatic saturated hydrocarbon group having 1 to 8 carbon atoms. L x8 Preferably, a single bond or a divalent aliphatic saturated hydrocarbon group having 1 to 8 carbon atoms, more preferably A single bond or a methylene group is a single bond or a methylene group. L x9 Preferably, a single bond or a divalent aliphatic saturated hydrocarbon group having 1 to 8 carbon atoms, more preferably A single bond or a methylene group is a single bond or a methylene group. W x1 Preferably, a divalent alicyclic saturated hydrocarbon group having 3 to 10 carbon atoms, more preferably It is either a cyclohexanediyl group or an adamantanediyl group.

[0195] Examples of groups represented by formula (L1-1) include the divalent groups shown below. TIFF2026066273000158.tif53136

[0196] Examples of groups represented by formula (L1-2) include the divalent groups shown below. TIFF2026066273000159.tif23130

[0197] Examples of groups represented by formula (L1-3) include the divalent groups shown below. TIFF2026066273000160.tif16146

[0198] Examples of groups represented by formula (L1-4) include the divalent groups shown below. TIFF2026066273000161.tif26114

[0199] L 55 Preferably, it is a single bond or a group represented by formula (L1-1).

[0200] Structural units (a5-1) include the structural units shown below and the structural units within the following structural units ( a5-1) R 51 Examples of structural units in which the corresponding methyl group is replaced by a hydrogen atom include It can be done. TIFF2026066273000162.tif110150 If resin (A) contains structural unit (a5), its content is the total structural unit of resin (A). For this, 1 to 30 mol% is preferred, 2 to 20 mol% is more preferred, and 3 to 15 mol% That is even more preferable.

[0201] <Structural Unit (a6)> Structural unit (a6) is a structural unit having an -SO2- group, and has an -SO2- group in its side chain. It is preferable to do so. A structural unit having an -SO2- group may also have a linear structure having an -SO2- group. or it may have a branched structure having an -SO2- group, or a ring having an -SO2- group It may have a ring structure (monocyclic and polycyclic structures). Preferably, a ring having an -SO2- group. A structural unit having a cyclic structure, more preferably a cyclic structure containing -SO2-O- It is a structural unit that has a Ton ring.

[0202] As a sultone ring, the following equation (T 1 -1), formula (T 1 -2), formula (T 1 -3) and formula ( T 1 A ring represented by -4) is an example. The bonding site can be at any position. The sultone ring may be monocyclic, but is preferably polycyclic. This refers to a bridging ring containing -SO2-O- as the atomic group that makes up the ring, and is given by equation (T 1 -1 ) and formula (T 1 A ring represented by equation (T) is an example. A Sultone ring is given by equation (T 1 (-2) is expressed as Like a ring, in addition to -SO2-O-, there are also heteroatoms as atomic groups that make up the ring. It may also contain heteroatoms. Examples of heteroatoms include oxygen atoms, sulfur atoms, or nitrogen atoms. , preferably an oxygen atom. TIFF2026066273000163.tif3087

[0203] The sultone ring may have substituents, such as halogen atoms or hydroxyl groups. Alkyl groups with 1 to 12 carbon atoms, halogen atoms, hydroxyl groups, cyanoacrylate atoms may also be present. alkoxy groups with 1 to 12 carbon atoms, aryl groups with 6 to 12 carbon atoms, and aryl groups with 7 to 12 carbon atoms. Larkyl group, glycidyloxy group, alkoxycarbonyl group having 2 to 12 carbon atoms and carbon number Examples include 2-4 alkylcarbonyl groups.

[0204] Examples of halogen atoms include fluorine, chlorine, bromine, and iodine. . Alkyl groups include methyl, ethyl, propyl, butyl, pentyl, and hexyl groups. Examples include syl groups, octyl groups, and decyl groups, preferably alkyl groups having 1 to 6 carbon atoms. More preferably, it is a methyl group. Examples of alkyl groups having a halogen atom include trifluoromethyl and perfluoroethyl groups. Perfluoropropyl group, perfluoroisopropyl group, perfluorobutyl group, Perfluorosec-butyl group, perfluorotert-butyl group, perfluoropentyl chloromethyl group, perfluorohexyl group, trichloromethyl group, tribromomethyl group and triyomethyl group Examples include methyl groups, preferably trifluoromethyl groups. Examples of alkyl groups having a hydroxyl group include hydroxymethyl and 2-hydroxymethyl groups. Examples include hydroxyalkyl groups with a chill group. Examples of alkoxy groups include methoxy, ethoxy, propoxy, butoxy, and pentoxy groups. oxy group, hexyloxy group, heptyloxy group, octyloxy group, decyloxy group Examples include the dodecyloxy group. Examples of aryl groups include phenyl, naphthyl, anthryl, and p-methylphenyl groups. p-tert-butylphenyl group, p-adamantylphenyl group, tolyl group, xylyl group, cumyl group, mesityl group, biphenyl group, phenanthryl group, 2,6-diethylphenyl Examples include the 2-methyl-6-ethylphenyl group and the 2-methyl-6-ethylphenyl group. Examples of aralkyl groups include benzyl group, phenethyl group, phenylpropyl group, and naphthyl group. Examples include tyl groups and naphthyl ethyl groups. Examples of alkoxycarbonyl groups include methoxycarbonyl groups and ethoxycarbonyl groups. Examples include groups in which an alkoxy group and a carbonyl group are bonded, preferably having 6 or fewer carbon atoms. Examples include the coxycarbonyl group, and more preferably the methoxycarbonyl group. Examples of alkylcarbonyl groups include acetyl, propionyl, and butyryl groups. It can be done.

[0205] From the viewpoint of ease of manufacturing monomers that lead to structural unit (a6), substituents are not present. A sultone ring is preferred. As the sultone ring, the ring represented by the following formula (T1') is preferred. TIFF2026066273000164.tif3072[In formula (T1'), X 11 represents an oxygen atom, a sulfur atom, or a methylene group. R 41 This is an alkyl group having 1 to 12 carbon atoms, which may have a halogen atom or a hydroxyl group. C1-C12 alkoxy group, halogen atom, hydroxyl group, cyano group, C1-C12 alkoxy group, C1 6-12 aryl groups, 7-12 aralkyl groups, glycidyloxy groups, 2 carbon atoms This represents an alkoxycarbonyl group with up to 12 carbon atoms or an alkylcarbonyl group with 2 to 4 carbon atoms. ma represents an integer from 0 to 9. When ma is 2 or greater, multiple R 41 They are the same It's fine if it exists or not. The connection point can be any position. X 11 is preferably an oxygen atom or a methylene group, more preferably a methylene group. ru. R 41 Examples include substituents similar to those of a sultone ring, such as halogen atoms or hydrides C1 to C12 alkyl groups, which may have a roxy group, are preferred.

[0206] As a sultone ring, the ring represented by formula (T1) is more preferable. TIFF2026066273000165.tif3049[In formula (T1), R 8This is an alkyl group having 1 to 12 carbon atoms, which may have a halogen atom or a hydroxyl group. Groups, halogen atoms, hydroxyl groups, cyano groups, alkoxy groups with 1 to 12 carbon atoms, and 6 carbon atoms. ~12 aryl groups, aralkyl groups with 7-12 carbon atoms, glycidyloxy groups, 2- carbon atoms This represents 12 alkoxycarbonyl groups or alkylcarbonyl groups with 2 to 4 carbon atoms. m represents an integer from 0 to 9. When m is 2 or greater, multiple R 8 They are the same. They can also be different. The connection point can be any position.

[0207] R 8 R 41 Similar examples include the above. In formula (T1'), ma and in formula (T1), m are preferably 0 or 1. More preferably, it is 0.

[0208] The following are examples of rings represented by equation (T1') and equation (T1): The connection point can be at any position. TIFF2026066273000166.tif47144

[0209] The structural unit having a sultone ring preferably has the following group: * in the following group The symbol represents the bonding site. TIFF2026066273000167.tif45144

[0210] The structural unit having the -SO2- group preferably also has a group derived from a polymerizable group. The polymerizable groups include vinyl group, acryloyl group, methacryloyl group, and acryloyl Oxy group, methacryloyloxy group, acryloylamino group, methacryloylamino group, Examples include acryloylthio groups and methacryloylthio groups. In particular, the monomer that leads to the structural unit (a6) preferably has an ethylenically unsaturated bond. It is a monomer, and more preferably a (meth)acrylic monomer.

[0211] The structural unit (a6) is preferably a structural unit represented by formula (Ix). TIFF2026066273000168.tif4956[In formula (Ix), R x This is an alkyl group having 1 to 6 carbon atoms, which may have a halogen atom, and water Represents an elementary atom or a halogen atom. A xx is an oxygen atom, -N(R c )- or represents a sulfur atom. A x This represents a divalent saturated hydrocarbon group having 1 to 18 carbon atoms, and the saturated hydrocarbon group contains -CH2- is -O-, -CO-, or -N(R d )- may be replaced with this. X 11 represents an oxygen atom, a sulfur atom, or a methylene group. R 41 This is an alkyl group having 1 to 12 carbon atoms, which may have a halogen atom or a hydroxyl group. C1-C12 alkoxy group, halogen atom, hydroxyl group, cyano group, C1-C12 alkoxy group, C1 6-12 aryl groups, 7-12 aralkyl groups, glycidyloxy groups, 2 carbon atoms This represents an alkoxycarbonyl group with up to 12 carbon atoms or an alkylcarbonyl group with 2 to 4 carbon atoms. ma represents an integer from 0 to 9. When ma is 2 or greater, multiple R 41 They are the same It's fine if it exists or not. R c and R d Each of these independently represents either a hydrogen atom or an alkyl group having 1 to 6 carbon atoms.

[0212] R x Examples of halogen atoms include fluorine, chlorine, bromine, and iodine. It is possible. R x Examples of alkyl groups include methyl group, ethyl group, n-propyl group, isopropyl group. Pyr group, n-butyl group, sec-butyl group, tert-butyl group, n-pentyl group and n - Examples include hexyl groups, preferably alkyl groups having 1 to 4 carbon atoms, and more preferably This is either a methyl group or an ethyl group. R x Examples of alkyl groups having a halogen atom include trifluoromethyl group, pe Perfluoroethyl group, perfluoropropyl group, perfluoroisopropyl group, perfluoroethyl group Olobutyl group, perfluorosec-butyl group, perfluorotert-butyl group, per Fluoropentyl group, perfluorohexyl group, trichloromethyl group, tribromomethyl Examples include the triiodomethyl group and other similar groups. R x is preferably a hydrogen atom or an alkyl group having 1 to 4 carbon atoms, and more preferably water It is an elementary atom, a methyl group, or an ethyl group, and more preferably a hydrogen atom or a methyl group.

[0213] A x Examples of divalent saturated hydrocarbon groups include linear alkanediyl groups and branched alkanediyl groups. Examples include divalent alicyclic saturated hydrocarbon groups, monocyclic or polycyclic, and of these groups, 2 Combinations of more than one species are also acceptable. 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, do Decane-1,12-diyl group, tridecane-1,13-diyl group, tetradecane-1,1 4-diyl group, pentadecane-1,15-diyl group, hexadecane-1,16-diyl group heptadecane-1,17-diyl group, ethane-1,1-diyl group, propane-1,1- Linear alkanediyl groups such as diyl groups and propane-2,2-diyl groups; Butane-1,3-diyl group, 2-methylpropane-1,3-diyl group, 2-methylprop Pan-1,2-diyl group, pentane-1,4-diyl group, 2-methylbutane-1,4-diyl group Branched alkanediyl groups such as yl groups; Cyclobutane-1,3-diyl group, cyclopentane-1,3-diyl group, cyclohexa Cycloalkanediyl groups such as n-1,4-diyl group and cyclooctane-1,5-diyl group A monocyclic, divalent, alicyclic saturated hydrocarbon group; norbornane-1,4-diyl group, norbornane-2,5-diyl group, adamantane- Polycyclic divalent alicyclic saturated carbon such as 1,5-diyl group and adamantane-2,6-diyl group Examples include hydrogen groups.

[0214] R 41 , X 11 And ma can be the same as in equation (T1'). Examples of sultone rings include those mentioned above, and among them, those whose bonding positions have been identified are also noteworthy. It is preferable to do so.

[0215] The following are examples of structural units (a6): TIFF2026066273000169.tif93150

[0216] In particular, equations (a6-1), (a6-2), (a6-6), (a6-7), ( Structural units represented by formulas a6-8) and (a6-12) are preferred, and formulas (a6-1), ( a6-2), more preferably, structural units represented by formulas (a6-7) and (a6-8). If resin (A) has structural units (a6), the content of these units is the total structural unit content of resin (A). A percentage of the total volume is preferably 1 to 50 mol%, more preferably 2 to 40 mol%, and 3 to 30 mol%. A percentage is even more preferable.

[0217] <Structural Unit (II)> Resin (A) further decomposes upon exposure to generate acid, resulting in structural units (hereinafter referred to as "structural units") It may contain (II) (in some cases). Structural unit (II) may be specifically Examples include the structural unit described in Japanese Patent Publication No. 2016-79235, with a sulfonate side chain. A structural unit having a carboxylate group or a side chain with an organic cation, or a sulfonate group. It is preferable that the structural unit has an o group and an organic anion.

[0218] Structural units having a sulfonate group or carboxylate group and an organic cation in the side chain It is preferable that the structural unit is represented by formula (II-2-A'). TIFF2026066273000170.tif3089[In formula (II-2-A'), X III3 This represents a divalent saturated hydrocarbon group having 1 to 18 carbon atoms, and the saturated hydrocarbon group contains The -CH2- that is present may be replaced by -O-, -S-, or -CO-, and the saturated coal The hydrogen atoms contained in the hydrogen group are halogen atoms, and the number of carbon atoms that may contain halogen atoms. It may be replaced by alkyl groups or hydroxyl groups numbered 1 to 6. A x1 This represents an alkanediyl group having 1 to 8 carbon atoms, and the water contained in the alkanediyl group The elementary atoms may be substituted with fluorine atoms or perfluoroalkyl groups having 1 to 6 carbon atoms. stomach. RA - This represents a sulfonate group or a carboxylate group. R III3 This is a hydrogen atom, a halogen atom, or a C1 atom which may have a halogen atom. Represents alkyl groups up to 6. ZA + This represents an organic cation.

[0219] R III3 The halogen atoms represented include fluorine, chlorine, bromine, and yo Examples include porcini atoms. R III3 A C1-C6 alkyl group which may have a halogen atom represented by So, R a8 A C1-C6 alkyl group which may have a halogen atom represented by the same Some examples include the following. A x1 Examples of alkanediyl groups with 1 to 8 carbon atoms, represented by the methylene group and the ethylene group, are available. , propane-1,3-diyl group, butane-1,4-diyl group, pentane-1,5-diyl Group, hexane-1,6-diyl group, ethane-1,1-diyl group, propane-1,1-diyl group yl 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 Examples include the 1,4-diyl group, pentane-1,4-diyl group, and 2-methylbutane-1,4-diyl group. ru. A x1 Perfluoroalkyl groups having 1 to 6 carbon atoms that may be substituted include: , trifluoromethyl group, perfluoroethyl group, perfluoropropyl group, perfluoro Roisopropyl group, perfluorobutyl group, perfluorosec-butyl group, perfluorote Examples include rt-butyl groups, perfluoropentyl groups, and perfluorohexyl groups.

[0220] X III3 Divalent saturated hydrocarbon groups having 1 to 18 carbon atoms, as represented by , can be linear or branched. Examples include alkanediyl groups, monocyclic or polycyclic divalent alicyclic saturated hydrocarbon groups, and these These can be combined in any way. 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, do Linear alkanediyl groups such as decane-1,12-diyl groups; butane-1,3-diyl groups, 2-methylpropane-1,3-diyl group, 2-methylpropane-1,2-diyl group, pen Branched alkanedi such as tan-1,4-diyl group and 2-methylbutane-1,4-diyl group Lu group; Cyclobutane-1,3-diyl group, cyclopentane-1,3-diyl group, cyclohexane Cycloalkanediyl groups such as -1,4-diyl group and cyclooctane-1,5-diyl group. A divalent monocyclic or alicyclic saturated hydrocarbon group; norbornane-1,4-diyl group, norbornane-2,5-diyl group, adamantane-1 Divalent polycyclic alicyclic saturated hydrocarbons such as ,5-diyl groups and adamantane-2,6-diyl groups Examples include the foundation.

[0221] The -CH2- group in the saturated hydrocarbon group is replaced by -O-, -S-, or -CO-. Examples include the divalent groups represented by equations (X1) to (X53). However, Furthermore, the -CH2- group contained in the saturated hydrocarbon group is replaced by -O-, -S-, or -CO-. The number of carbon atoms in each preceding element is 17 or less. In the following formula, * and ** represent bonding sites. * is A x1 This represents the connection point. TIFF2026066273000171.tif145161

[0222] X 3 This represents a divalent saturated hydrocarbon group with 1 to 16 carbon atoms. X 4 This represents a divalent saturated hydrocarbon group with 1 to 15 carbon atoms. X 5 This represents a divalent saturated hydrocarbon group with 1 to 13 carbon atoms. X 6 This represents a divalent saturated hydrocarbon group with 1 to 14 carbon atoms. X 7 This represents a trivalent saturated hydrocarbon group with 1 to 14 carbon atoms. X 8 This represents a divalent saturated hydrocarbon group with 1 to 13 carbon atoms.

[0223] ZA + Examples of organic cations represented include organic onium cations and organic sulfonium cations. Thione, organic iodonium cation, organic ammonium cation, benzothiazolium cation Examples include thione and organic phosphonium cations. Among these, organic sulfonium Mucations and organiciodonium cations are preferred, and arylsulfonium cations are preferred. More preferable. Specifically, it can be expressed by any of the above formulas (b2-1) to (b2-4). The cation (hereinafter, depending on the formula number, it may be referred to as "cation (b2-1)," etc.) These are some examples.

[0224] The structural unit represented by formula (II-2-A') is the structural unit represented by formula (II-2-A) It is preferable that this be the case. JPEG2026066273000172.jpg37109[In formula (II-2-A), R III3 、X III3 and ZA + have the same meanings as described above. z represents an integer from 0 to 6. R III2 and R III4 each independently represents a hydrogen atom, a fluorine atom, or a perfluoroalkyl group having 1 to 6 carbon atoms. When z is 2 or more, a plurality of R III2 and R II I4 may be the same as or different from each other. Q a and Q b each independently represents a fluorine atom or a perfluoroalkyl group having 1 to 6 carbon atoms.] The perfluoroalkyl group having 1 to 6 carbon atoms represented by

[0225] R III2 、R III4 、Q a and Q b is the same as the perfluoroalkyl group having 1 to 6 carbon atoms represented by the aforementioned Q b1 b1 [[ID=SI]]

[0226] The structural unit represented by formula (II-2-A) is preferably the structural unit represented by formula (II-2-A-1). TIFF2026066273000173.tif5576[In formula (II-2-A-1), R III2 [[ID=SI]] III3 、R III4 、Q a 、Q b 、z and ZA + have the same meanings as described above. R III5 represents a saturated hydrocarbon group having 1 to 12 carbon atoms. X[[ID=SS]] I2 ​represents a divalent saturated hydrocarbon group having 1 to 11 carbon atoms, and the -CH2- contained in the saturated hydrocarbon group may be replaced by -O-, -S- or -CO-, and the hydrogen atoms contained in the saturated hydrocarbon group may be replaced by a halogen atom or a hydroxy group.]

[0227] R III5 Examples of the saturated hydrocarbon group having 1 to 12 carbon atoms represented by include linear or branched alkyl groups such as methyl group, ethyl group, propyl group, isopropyl group, butyl group, sec-butyl group, tert-butyl group, pentyl group, hexyl group, heptyl group, octyl group, nonyl group, decyl group, undecyl group and dodecyl group. I2 Examples of the divalent saturated hydrocarbon group represented by X III3 include the same ones as the divalent saturated hydrocarbon group represented by X described above.

[0228] As the structural unit represented by the formula (II-2-A-1), the structural unit represented by the formula (II-2-A-2) is preferable. TIFF2026066273000174.tif5288[In the formula (II-2-A-2), R III3 and R III5 and ZA + represent the same meanings as described above. mA and nA each independently represent 1 or 2.]

[0229] Examples of the structural unit represented by the formula (II-2-A') include, for example, the following structural units, and a group corresponding to the methyl group of R III3 [[ID= forty-nine ]]The group corresponding to the methyl group of is a hydrogen atom, a halogen atom (for example, a fluorine atom) or a halogen An alkyl group having 1 to 6 carbon atoms which may have an atom (for example, a trifluoromethyl group, etc. ) and the structural units described in WO2012 / 050015 It can be listed. ZA + This represents an organic cation. TIFF2026066273000175.tif86163

[0230] A structural unit having a sulfonio group and an organic anion in its side chain is represented by formula (II-1-1). It is preferable that the structural unit is such that it can be formed. TIFF2026066273000176.tif3689 [In formula (II-1-1), A II1 This represents a single bond or a divalent linking group. R II1 This represents a divalent aromatic hydrocarbon group with 6 to 18 carbon atoms. R II2 and R II3 Each of these independently represents a hydrocarbon group with 1 to 18 carbon atoms, and R II2 and R II3 They bond to each other, forming a ring with the sulfur atoms to which they are bonded. That's fine. R II4 This is a hydrogen atom, a halogen atom, or a C1-C2 atom which may have a halogen atom. This represents an alkyl group of 6. A - This represents an organic anion. R II1 As a divalent aromatic hydrocarbon group having 6 to 18 carbon atoms, the phenylene group is an example. Examples include naphthylene groups, etc. R II2 and R II3 Examples of hydrocarbon groups represented include alkyl groups and alicyclic hydrocarbon groups. Examples include aromatic hydrocarbon groups and groups formed by combining them. Examples of alkyl groups and alicyclic hydrocarbon groups are the same as those described above. Aromatic hydrocarbon groups include phenyl group, naphthyl group, anthryl group, biphenyl group, Examples include aryl groups such as phenanthryl groups. The combined groups include those that combine the alkyl group and alicyclic hydrocarbon group mentioned above. , aralkyl groups such as benzyl groups, aromatic hydrocarbon groups having alkyl groups (p-methylphenyl Nyl group, p-tert-butylphenyl group, tolyl group, xylyl group, coumenyl group, mesityl (e.g., 2,6-diethylphenyl group, 2-methyl-6-ethylphenyl group), alicyclic carbon Aromatic hydrocarbon groups having a hydrogenated group (p-cyclohexylphenyl group, p-adamantyl group) Examples include phenyl groups, phenylcyclohexyl groups, and other aryl-cycloalkyl groups. It can be done. R II4 The halogen atoms represented include fluorine, chlorine, bromine, and iodine. Examples include elementary atoms. R II4 A C1-C6 alkyl group which may have a halogen atom represented by R a8 The same as an alkyl group having 1 to 6 carbon atoms which may have a halogen atom represented by Some examples can be listed. A II1 Examples of divalent linking groups represented by include divalent saturated carbons with 1 to 18 carbon atoms. A hydrogen group is one example, and the -CH2- contained in the divalent saturated hydrocarbon group is -O-, -S- or It may be replaced with -CO-. Specifically, X III3 Represented by 1 to 1 carbon atoms Examples include the same divalent saturated hydrocarbon group as in 8.

[0231] The structural units containing cations in formula (II-1-1) are the structural units represented below, R II4 The group corresponding to the methyl group is a hydrogen atom, a halogen atom (for example, a fluorine atom) or A C1-C6 alkyl group which may have a halogen atom (for example, trifluoromethyl Examples include structural units that have been replaced by groups such as the 'L' group. TIFF2026066273000177.tif85130

[0232] A - Examples of organic anions represented by this include sulfonic acid anions and sulfonylimido anions. Examples include sulfonylmethide anions and carboxylic acid anions. - It is represented The organic anion is preferably a sulfonate anion, and as for the sulfonate anion, as mentioned above. Examples include anions similar to those found in the salt represented by formula (B1). A - Examples of sulfonylimid anions represented by the formula include the following: Examples of sulfonylmethide anions include the following: Examples of carboxylic acid anions include the following: TIFF2026066273000180.tif44156

[0233] Examples of structural units represented by formula (II-1-1) include the following structural units. It is possible. TIFF2026066273000181.tif88149

[0234] When resin (A) contains structural unit (II), the content of structural unit (II) is: The amount is preferably 1 to 20 mol%, and more preferably 2 to 1 mol%, relative to the total structural units of fat (A). The percentage is 15 mol%, and more preferably 3 to 10 mol%.

[0235] The resin (A) may contain structural units other than those described above, and such structural units In terms of rank, well-known structural units in this field can be cited.

[0236] The resin (A) is preferably a resin consisting of structural unit (a1) and structural unit (s), In other words, it is a copolymer of monomer (a1) and monomer (s). The structural unit (a1) is preferably structural unit (a1-0), structural unit (a1-1) and structural unit (a1-0) Manufacturing unit (a1-2) (preferably having a cyclohexyl group or a cyclopentyl group) At least one, more preferably at least two, selected from the group consisting of (production units). More preferably, a group consisting of structural unit (a1-1) and structural unit (a1-2). It consists of at least two types selected from the following. The structural unit (s) is preferably from the group consisting of structural unit (a2) and structural unit (a3). It is at least one selected. The structural unit (a2) is preferably represented by formula (a2-1). It is a structural unit represented by formula (a2-A). The structural unit (a3) ​​is preferred Alternatively, structural units represented by formula (a3-1), structural units represented by formula (a3-2), and formula ( It is at least one selected from the group consisting of structural units represented in a3-4).

[0237] Each structural unit constituting resin (A) may be used individually or in combination of two or more types. Furthermore, using monomers that derive these structural units, known polymerization methods (e.g., radical polymerization) can be used. Therefore, it can be manufactured. The content of each structural unit in resin (A) is used in polymerization. This can be adjusted by controlling the amount of monomer used. The weight-average molecular weight of resin (A) is preferably 2,000 or more (more preferably 2,5 00 or more, more preferably 3,000 or more), 50,000 or less (more preferably 30 (less than 15,000, more preferably less than 15,000). In this specification, weight average fraction The amount of molecules was determined by gel permeation chromatography under the conditions described in the examples. That is the case.

[0238] <Resins other than resin (A)> The resist composition of the present invention may contain resins other than resin (A). Examples of resins other than resin (A) include structural unit (a4) or structural unit (a5). Examples include resins (hereinafter sometimes referred to as resin(X)).

[0239] Among the resins (X), resins containing structural units (a4) are preferred. In resin (X), the content of structural unit (a4) is equal to the sum of all structural units in resin (X). In contrast, it is preferable that the amount be 30 mol% or more, and more preferably 40 mol% or more. Furthermore, it is more preferable that the amount be 45 mol% or more. The structural units that resin (X) may further possess include structural unit (a2) and structural unit (a3) and other structural units derived from known monomers are examples. Among them, resin ( X) is preferably a resin consisting only of structural unit (a4) and / or structural unit (a5). It is more preferable that the resin consists solely of structural units (a4). Each structural unit constituting the resin (X) may be used individually or in combination of two or more types. These monomers that induce structural units can be used in known polymerization methods (e.g., radical polymerization). Therefore, it can be manufactured. The content of each structural unit in resin (X) is used in polymerization. This can be adjusted by controlling the amount of monomer used. The weight-average molecular weight of resin (X) is preferably 6,000 or more (more preferably 7,000). The value is 0 or greater, and 80,000 or less (more preferably 60,000 or less). The method for measuring the weight-average molecular weight is the same as in the case of resin (A). If the resist composition contains resin (X), its content is as follows: per 100 parts by mass of resin (A) Preferably, it is 1 to 60 parts by mass, more preferably 1 to 50 parts by mass, and further Preferably 1 to 40 parts by mass, more preferably 1 to 30 parts by mass, and even more preferably 1 The layer is preferably 1 to 8 parts by mass.

[0240] The content of resin (A) in the resist composition is 8 in relation to the solid content of the resist composition. Preferably, it is 0% by mass or more and 99% by mass or less, and preferably 90% by mass or more and 99% by mass or less. It is preferable. Also, if it contains resins other than resin (A), then resin (A) and resins other than resin (A) The total content of the resin is 80% by mass or more and 99% by mass or less relative to the solid content of the resist composition. It is preferable that the amount be less than 90% by mass or more and more than 99% by mass or less. Furthermore, "solid content of the resist composition" refers to the amount of solvent (E) described later, calculated from the total amount of the resist composition. This refers to the total of the components excluding ). Solid content of the resist composition and the resin content thereof. The rate is measured by known analytical means such as liquid chromatography or gas chromatography. It is possible.

[0241] <Solvent (E)> The solvent (E) content is typically 90% by mass or more and 99.9% by mass or less in the resist composition. Yes, preferably 92% by mass or more and 99% by mass or less, and more preferably 94% by mass or more. The content of solvent (E) is 99% by mass or less. The content of solvent (E) is determined, for example, by liquid chromatography or gas chromatography. It can be measured using known analytical methods such as chromatography. The solvent (E) includes ethyl cellosolve acetate, methyl cellosolve acetate, and Glycol ether esters such as propylene glycol monomethyl ether acetate ; Glycol ethers such as propylene glycol monomethyl ether; Esters such as ethyl lactate, butyl acetate, amyl acetate and ethyl pyruvate; Ketones such as acetone, methyl isobutyl ketone, 2-heptanone and cyclohexanone; Cyclic esters such as γ-butyrolactone; etc. can be mentioned. One kind of the solvent (E) may be used alone, or two or more kinds may be used.

[0242] <Quencher (C)> As the quencher (C), salts that generate an acid having a lower acidity than the acid generated from the acid generator (B), and basic nitrogen-containing organic compounds are mentioned. The content of the quencher (C) is preferably about 0.01 to 15% by mass, more preferably about 0.01 to 10% by mass, still more preferably about 0.1 to 8% by mass based on the solid content of the resist composition, and even more preferably about 0.1 to 7% by mass.

[0243] <Salt that generates an acid having a lower acidity than the acid generated from the acid generator> The acidity in the salt that generates an acid having a lower acidity than the acid generated from the acid generator (B) is indicated by the acid dissociation constant (pKa). The salt that generates an acid having a lower acidity than the acid generated from the acid generator (B) is a salt in which the acid dissociation constant of the acid generated from the salt is usually -3 < pKa, preferably a salt of -1 < pKa < 7, and more preferably a salt of 0 < pKa < 5. Examples of the salt that generates an acid having a lower acidity than the acid generated from the acid generator (B) include salts represented by the following formula, salts represented by formula (D) described in JP-A-2015-147926 (hereinafter, " ​​It is sometimes referred to as "weak acid intramolecular salt (D)" (as also mentioned in Japanese Patent Publication No. 2012-229206). Japanese Patent Publication No. 2012-6908, Japanese Patent Publication No. 2012-72109, Japanese Patent Publication No. 2011-3 Examples include salts described in Japanese Patent Publication No. 9502 and Japanese Patent Application Publication No. 2011-191745. Acid generators (B) is used as the salt that generates an acid with a lower acidity than the acid generated from (B), preferably an acid generator. (B) produces a salt (carboxylic acid anion) that generates a carboxylic acid with a lower acidity than the acid produced from (B). A salt having (D), more preferably a weak acid intramolecular salt (D), even more preferably Among the intramolecular salts of weak acids (D), diphenyl containing a phenyl group substituted with a carboxylate anion. It is a ruiodonium salt. TIFF2026066273000182.tif116167

[0244] As a weak acid intramolecular salt (D), there is an iodonium cation with two phenyl groups bonded to it, At least one of the two phenyl groups bonded to the iodonium cation It is preferable that the diphenyliodonium salt has a substituted carboxylic acid anion. More specifically, the following salts can be cited. TIFF2026066273000183.tif2362[In formula (D), R D1 and R D2 These are, independently, hydrocarbon groups with 1 to 12 carbon atoms and aluminum groups with 1 to 6 carbon atoms. Coxy group, acyl group with 2-7 carbon atoms, acyloxy group with 2-7 carbon atoms, acyloxy group with 2-7 carbon atoms This represents a lucoxycarbonyl group, a nitro group, or a halogen atom. m' and n' each independently represent an integer from 0 to 4, and when m' is 2 or greater... In combination, multiple R D1 They may be the same or different, and if n' is 2 or more, there may be multiple R D2 is the same It may be one or different. R D1 and R D2 Examples of hydrocarbon groups include chain hydrocarbon groups, alicyclic hydrocarbon groups, and aromatic carbon groups. Examples include hydrogen groups and groups formed by combining them. Examples of chain hydrocarbon groups include methyl, ethyl, propyl, isopropyl, and butyl groups. Alkyl groups such as isobutyl group, tert-butyl group, pentyl group, hexyl group, and nonyl group. One example is the ru group. The alicyclic hydrocarbon group may be monocyclic or polycyclic, and can be saturated or unsaturated. Any misalignment is acceptable. Cyclopropyl group, cyclobutyl group, cyclopentyl group, cyclohexyl Cycloalkyl groups such as cyclononyl groups and cyclododecyl groups, norbonyl groups, adamant Examples include chill groups. Examples of aromatic hydrocarbon groups include phenyl group, 1-naphthyl group, 2-naphthyl group, and 2-methyl group. methylphenyl group, 3-methylphenyl group, 4-methylphenyl group, 4-ethylphenyl group, 4-propylphenyl group, 4-isopropylphenyl group, 4-butylphenyl group, 4-t -Butylphenyl group, 4-hexylphenyl group, 4-cyclohexylphenyl group, ant Lyl group, p-adamantylphenyl group, tolyl group, xylyl group, cumenyl group, mesityl group , biphenyl group, phenanthryl group, 2,6-diethylphenyl group, 2-methyl-6- Examples include aryl groups such as ethylphenyl groups. The groups formed by combining these include alkyl-cycloalkyl groups. , cycloalkyl-alkyl groups, aralkyl groups (e.g., phenylmethyl group, 1-phenyl ethyl group, 2-phenylethyl group, 1-phenyl-1-propyl group, 1-phenyl-2 -propyl group, 2-phenyl-2-propyl group, 3-phenyl-1-propyl group, 4-propyl Phenyl-1-butyl group, 5-phenyl-1-pentyl group, 6-phenyl-1-hexyl group Examples include: Examples of alkoxy groups include methoxy groups and ethoxy groups. Examples of acyl groups include acetyl, propanoyl, benzoyl, and cyclohexanecal. Examples include the bonyl group. Examples of acyloxy groups include groups in which an oxy group (-O-) is bonded to the above-mentioned acyl group. It can be done. As an alkoxycarbonyl group, a carbonyl group (-CO-) is bonded to the above alkoxy group. Examples include combined bases, etc. Examples of halogen atoms include fluorine, chlorine, and bromine atoms. R D1 and R D2 These are, independently, alkyl groups with 1 to 8 carbon atoms and sicq groups with 3 to 10 carbon atoms. alkoxy groups with 1 to 6 carbon atoms, acyl groups with 2 to 4 carbon atoms, and groups with 2 to 4 carbon atoms. Acyloxy group, alkoxycarbonyl group with 2-4 carbon atoms, nitro group, or halogen atom preferable. m' and n' are each preferably independent integers between 0 and 2. It is more preferable that m' is 2 or more, D1 Even if they are the same, they are different Also, if n' is 2 or greater, multiple R D2 They may be the same or different.

[0245] More specifically, the following salts are examples: TIFF2026066273000184.tif72165

[0246] Basic nitrogen-containing organic compounds include amines and ammonium salts. Examples include aliphatic amines and aromatic amines. Aliphatic amines include primary amines. Examples include amines, secondary amines, and tertiary amines. Examples of amines include 1-naphthylamine, 2-naphthylamine, aniline, and diisopropylamine. Ruaniline, 2-,3- or 4-methylaniline, 4-nitroaniline, N-methylaniline Phosphorus, N,N-dimethylaniline, diphenylamine, hexylamine, heptylamine Octylamine, nonylamine, decylamine, dibutylamine, dipentylamine, Dihexylamine, diheptylamine, dioctylamine, dinonylamine, didecylamine mine, triethylamine, trimethylamine, tripropylamine, tributylamine, tripentylamine, trihexylamine, triheptylamine, trioctylamine, Trinonylamine, tridecylamine, methyldibutylamine, methyldipentylamine methyldihexylamine, methyldicyclohexylamine, methyldiheptylamine, Methyldioctylamine, methyldinonylamine, methylddecylamine, ethyl dibuty Luamine, ethyldipentylamine, ethyldihexylamine, ethyldiheptylamine Ethyl dioctylamine, ethyl dinonylamine, ethyl didecylamine, dicyclo Xylmethylamine, Tris[2-(2-methoxyethoxy)ethyl]amine, Triiso Propanolamine, ethylenediamine, tetramethylenediamine, hexamethylenediamine Mine, 4,4'-diamino-1,2-diphenylethane, 4,4'-diamino-3,3' -dimethyldiphenylmethane, 4,4'-diamino-3,3'-diethyldiphenylmeth , 2,2'-methylenebisaniline, imidazole, 4-methylimidazole, pyridazole 4-methylpyridine, 1,2-di(2-pyridyl)ethane, 1,2-di(4-pyridyl (Lu)ethane, 1,2-di(2-pyridyl)ethene, 1,2-di(4-pyridyl)ethene, 1,3-di(4-pyridyl)propane, 1,2-di(4-pyridyloxy)ethane, di( 2-Pyridyl)ketone, 4,4'-dipyridylsulfide, 4,4'-dipyridyldisulfide Examples include phyto, 2,2'-dipyridylamine, 2,2'-dipicolylamine, and bipyridine. Aromatic amines such as diisopropylaniline are preferred, and more preferably One example is 2,6-diisopropylaniline. Examples of ammonium salts include tetramethylammonium hydroxide and tetraisopropylammonium Ammonium hydroxide, tetrabutylammonium hydroxide, tetrahexyl Ammonium hydroxide, tetraoctylammonium hydroxide, phenyl trim Tylammonium hydroxide, 3-(trifluoromethyl)phenyltrimethylammonium Examples include nium hydroxide, tetra-n-butylammonium salicylate, and choline. It is possible.

[0247] <Other ingredients> The resist composition of the present invention may optionally include components other than those described above (hereinafter referred to as "other components"). It may be referred to as "F (F)". It may contain other components (F) in particular. There are no known additives in the resist field, such as sensitizers, dissolution inhibitors, surfactants, and stabilizers. Agents, dyes, etc. can be used.

[0248] <Preparation of resist composition> The resist composition of the present invention comprises a salt (I) and a resin (A), and, if necessary, an acid generator. Agent (B), resins other than resin (A), solvent (E), quencher (C) and other components ( It can be prepared by mixing F). The mixing order is arbitrary and not particularly limited. It is not. The temperature when mixing should be between 10 and 40°C, depending on the type of resin, etc. and the solvent used in the resin, etc. An appropriate temperature can be selected depending on the solubility of E). The mixing time depends on the mixing temperature. Depending on the situation, an appropriate time can be selected from 0.5 to 24 hours. Furthermore, a special mixing method is also available. There are no restrictions, and stirring and mixing can be used. After mixing each component, filter the mixture using a filter with a pore size of approximately 0.003 to 0.2 μm. It is preferable to do so.

[0249] <Method for manufacturing resist patterns> The method for manufacturing a resist pattern of the present invention is: (1) A step of applying the resist composition of the present invention onto a substrate, (2) A step of drying the applied composition to form a composition layer, (3) A step of exposing the composition layer, (4) A step of heating the composition layer after exposure, (5) Includes a step of developing the composition layer after heating. To coat the resist composition onto the substrate, a commonly used device such as a spin coater is used. This can be done. The substrate can be an inorganic substrate such as a silicon wafer, with a resist on the surface. An example is an organic substrate on which a film has been formed. Before applying the resist composition, the substrate is cleaned. Alternatively, an anti-reflective coating or the like may be formed on the substrate. By drying the applied composition, the solvent is removed and a composition layer is formed. Drying is performed. For example, evaporating a solvent using a heating device such as a hot plate (so-called private heating) This is done by (k) or by using a vacuum device. The heating temperature is 50-200°C. It is preferable that the heating time be 10 to 180 seconds. Also, vacuum drying The pressure used during this process is 1 to 1.0 × 10 5 It is preferable that the pressure be around Pa. The resulting composition layer is typically exposed using an exposure machine. The exposure machine is an immersion exposure machine. This is also good. As exposure light sources, KrF excimer laser (wavelength 248nm), ArF excimer Ultraviolet lasers such as lasers (wavelength 193nm) and F2 excimer lasers (wavelength 157nm) Laser light is emitted from solid-state laser sources (such as YAG or semiconductor lasers). These devices emit high-harmonic laser light in the far-ultraviolet or vacuum-ultraviolet region by wavelength conversion, such as electron beams and ultra-high-frequency lasers. Various methods can be used, such as those that irradiate with ultraviolet light (EUV). In some cases, the act of irradiating with these radiations is collectively referred to as "exposure." Typically, exposure is performed through a mask corresponding to the desired pattern. The exposure light source is electron In the case of lines, exposure may be performed by direct drawing without using a mask. The composition layer after exposure is heat-treated to promote the deprotection reaction at the acid-unstable groups. Perform a loose post-exposure bake. The heating temperature is usually around 50-200°C, or as preferred. The temperature is approximately 70-150°C. The hydrophilicity or hydrophobicity of the resin on the surface of the composition after heating. Chemical treatments (silylation) may be performed to adjust the properties. Also, before developing, the post-exposure components may be combined. The process of coating, drying, exposure, and heating of the resist composition may be repeated on the resulting layer. The heated composition layer is typically developed using a developing device and a developing solution. Examples include the dipping method, paddle method, spray method, and dynamic dispensing method. The development temperature is preferably, for example, 5 to 60°C, and the development time is, for example, 5 It is preferable that the developing time is ~300 seconds. By selecting the type of developer as follows: Positive-type resist patterns or negative-type resist patterns can be manufactured. When producing a positive-type resist pattern from the resist composition of the present invention, the developer is used as follows: An alkaline developer is used. The alkaline developer is a type of alkaline water used in this field. Any solution will do. For example, tetramethylammonium hydroxide or (2-hydroxy Examples include aqueous solutions of ethyl)trimethylammonium hydroxide (commonly known as choline). Alkaline developers may contain surfactants. After development, the resist pattern is washed with ultrapure water, and then the water remaining on the substrate and pattern is washed away. It is preferable to remove it. When manufacturing a negative-type resist pattern from the resist composition of the present invention, the developer is used as A developer containing an organic solvent (hereinafter sometimes referred to as "organic developer") is used. Organic solvents contained in organic developers include ketosols such as 2-hexanone and 2-heptanone. Solvents; glycol ethers such as propylene glycol monomethyl ether acetate Sterling solvents; ester solvents such as butyl acetate; propylene glycol monomethyl ether, etc. Glycol ether solvents; amide solvents such as N,N-dimethylacetamide; anisole Examples include aromatic hydrocarbon solvents such as the like. In organic developer solutions, the content of organic solvents is preferably 90% by mass or more and 100% by mass or less. It is more preferable that the concentration be 95% by mass or more and 100% by mass or less, and that it be substantially composed of only organic solvents. It is preferable. Among organic developers, those containing butyl acetate and / or 2-heptanone are Preferred. The total content of butyl acetate and 2-heptanone in the organic developer is 50% by mass. Preferably, the amount is 100% by mass or less, and more preferably 90% by mass or more and 100% by mass or less. It is even more preferable that the composition consists solely of butyl acetate and / or 2-heptanone. Organic developers may contain surfactants. Also, organic developers may contain trace amounts of surfactants. It may contain moisture. During development, by substituting a different type of solvent than the organic developer, development can be stopped. That's good too. It is preferable to wash the resist pattern with a rinsing solution after development. The rinsing solution can be: There are no particular restrictions as long as it does not dissolve the resist pattern, including general organic solvents. A liquid can be used, preferably an alcohol solvent or an ester solvent. After cleaning, it is preferable to remove any remaining rinse solution from the substrate and patterns.

[0250] <Application> The resist composition of the present invention is a resist composition for KrF excimer laser exposure, and ArF Resist compositions for Kishima laser exposure, resist compositions for electron beam (EB) exposure, or EU Resist compositions for V exposure, particularly resist compositions for electron beam (EB) exposure or EUV exposure It is suitable as a resist composition for use and is useful for semiconductor microfabrication. [Examples]

[0251] The present invention will be described in more detail with reference to examples. In the examples, the content or amount used is expressed Unless otherwise specified, "%" and "parts" refer to mass. The weight-average molecular weight is a value obtained by gel permuration chromatography. The analytical conditions for gel permuration chromatography are as follows: Column: TSKgel Multipore HXL-M x 3 + guard column (manufactured by Tosoh Corporation) Eluent: Tetrahydrofuran Flow rate: 1.0mL / min Detector: RI detector Column temperature: 40℃ Injection volume: 100μl Molecular weight standard: Standard polystyrene (manufactured by Tosoh Corporation) The compound structure was determined by mass spectrometry (LC: Agilent 1100, MASS: Agil This was confirmed by measuring molecular ion peaks using an ent LC / MSD (manufactured by ent). In the examples, the value of this molecular ion peak is indicated by "MASS".

[0252] Example 1: Synthesis of the salt represented by formula (I-1) Mix 4.38 parts of the salt represented by formula (I-1-a) and 30 parts of chloroform, and at 23°C. After stirring for 30 minutes, add 1.62 parts of the compound represented by formula (I-1-b) and heat to 60°C. After raising the temperature, the mixture was stirred at 60°C for 2 hours. The resulting reaction mixture was then mixed with the compound represented by formula (I-1-c). 2.78 parts of the compound were added, and the mixture was stirred at 60°C for 3 hours, then cooled to 23°C. Add 10 parts of a 5% oxalic acid aqueous solution to the mixture, stir at 23°C for 30 minutes, then separate the liquid and extract the solution. The organic layer was removed. 10 parts of deionized water were added to the obtained organic layer and stirred at 23°C for 30 minutes. Afterward, the organic layer was separated by liquid-liquid extraction. This washing procedure was repeated five times. The resulting organic layer After concentration, 30 parts of tert-butyl methyl ether are added to the concentrated residue and stirred, then... The clarified liquid was removed. The resulting residue was dissolved in acetonitrile and concentrated to obtain the compound (I 6.24 parts of the salt represented by (-1) were obtained. MASS(ESI(+)Spectrum):M + 263.1 MASS(ESI(-)Spectrum): M - 435.0

[0253] Example 2: Synthesis of the salt represented by formula (I-2) Mix 4.38 parts of the salt represented by formula (I-1-a) and 30 parts of chloroform, and at 23°C. After stirring for 30 minutes, add 1.62 parts of the compound represented by formula (I-1-b) and heat to 60°C. After raising the temperature, the mixture was stirred at 60°C for 2 hours. The resulting reaction mixture was then mixed with the compound represented by formula (I-2-c). 4.04 parts of the compound were added, and the mixture was stirred at 60°C for 3 hours, then cooled to 23°C. Add 10 parts of a 5% oxalic acid aqueous solution to the mixture, stir at 23°C for 30 minutes, then separate the liquid and extract the solution. The organic layer was removed. 10 parts of deionized water were added to the obtained organic layer and stirred at 23°C for 30 minutes. Afterward, the organic layer was separated by liquid-liquid extraction. This washing procedure was repeated five times. The resulting organic layer After concentration, add 3 parts acetonitrile and 30 parts tert-butyl methyl ether to the concentration residue. After adding and stirring, the supernatant was removed. The resulting residue was dissolved in acetonitrile and concentrated. By doing so, 7.12 parts of the salt represented by formula (I-2) were obtained. MASS(ESI(+)Spectrum):M + 263.1 MASS(ESI(-)Spectrum): M - 560.9

[0254] Example 3: Synthesis of the salt represented by formula (I-3) Mix 4.38 parts of the salt represented by formula (I-1-a) and 30 parts of chloroform, and at 23°C. After stirring for 30 minutes, add 1.62 parts of the compound represented by formula (I-1-b) and heat to 60°C. After raising the temperature, the mixture was stirred at 60°C for 2 hours. The resulting reaction mixture was then mixed with the compound represented by formula (I-3-c). 2.94 parts of the compound were added, and the mixture was stirred at 60°C for 3 hours, then cooled to 23°C. Add 10 parts of a 5% oxalic acid aqueous solution to the mixture, stir at 23°C for 30 minutes, then separate the liquid and extract the solution. The organic layer was removed. 10 parts of deionized water were added to the obtained organic layer and stirred at 23°C for 30 minutes. Afterward, the organic layer was separated by liquid-liquid extraction. This washing procedure was repeated five times. The resulting organic layer After concentration, add 1 part acetonitrile and 30 parts tert-butyl methyl ether to the concentration residue. After adding and stirring, the supernatant was removed. The resulting residue was dissolved in acetonitrile and concentrated. By doing so, 5.98 parts of the salt represented by formula (I-3) were obtained. MASS(ESI(+)Spectrum):M + 263.1 MASS(ESI(-)Spectrum): M - 451.0

[0255] Example 4: Synthesis of the salt represented by formula (I-201) Mix 7.00 parts of a salt represented by formula 41152 (I-201-a) and 30 parts of chloroform, 23 After stirring at °C for 30 minutes, add 1.62 parts of the compound represented by formula (I-1-b) and 60 After raising the temperature to °C, the mixture was stirred at 60 °C for 2 hours. The resulting reaction mixture was then treated with the formula (I-3-c). 2.94 parts of the compound were added, stirred at 60°C for 3 hours, and then cooled to 23°C. To the mixture, add 10 parts of a 5% oxalic acid aqueous solution, stir at 23°C for 30 minutes, and then separate the liquids. Then the organic layer was removed. 10 parts of dehydrated water were added to the obtained organic layer and stirred at 23°C for 30 minutes. After mixing, the organic layer was separated by liquid-liquid extraction. This washing procedure was repeated five times. The resulting organic layer was then separated. After concentrating the layer, add 1 part acetonitrile and 3 parts tert-butyl methyl ether to the concentrated residue. After adding 0 parts and stirring, the supernatant was removed. The resulting residue was dissolved in acetonitrile. By concentration, 7.88 parts of the salt represented by formula (I-201) were obtained. MASS(ESI(+)Spectrum):M + 525.0 MASS(ESI(-)Spectrum): M - 451.0

[0256] Example 5: Synthesis of the salt represented by formula (I-4) Mix 3.06 parts of the compound represented by formula (I-4-c) and 30 parts of chloroform, 23 After stirring at °C for 30 minutes, add 1.62 parts of the compound represented by formula (I-1-b) and 60 After raising the temperature to °C, the mixture was stirred at 60 °C for 2 hours. The resulting reaction mixture was treated with the compound represented by formula (I-4-a). 4.24 parts of salt were added, and the mixture was stirred at 60°C for 3 hours, then cooled to 23°C. Add 10 parts of a 5% oxalic acid aqueous solution to the mixture, stir at 23°C for 30 minutes, then separate the liquid and extract the solution. The organic layer was removed. 10 parts of deionized water were added to the obtained organic layer and stirred at 23°C for 30 minutes. Afterward, the organic layer was separated by liquid-liquid extraction. This washing procedure was repeated five times. The resulting organic layer After concentration, 30 parts of tert-butyl methyl ether are added to the concentrated residue and stirred, then... The clarified liquid was removed. The resulting residue was dissolved in acetonitrile and concentrated to obtain the compound (I 6.38 parts of the salt represented by (-4) were obtained. MASS(ESI(+)Spectrum):M + 263.1 MASS(ESI(-)Spectrum): M - 449.0

[0257] Example 6: Synthesis of the salt represented by formula (I-184) Mix 3.06 parts of the compound represented by formula (I-4-c) and 30 parts of chloroform, 23 After stirring at °C for 30 minutes, add 1.62 parts of the compound represented by formula (I-1-b) and 60 After raising the temperature to °C, the mixture was stirred at 60°C for 2 hours. The resulting reaction mixture was then treated with formula (I-184-a). Add 4.78 parts of the indicated salt, stir at 60°C for 3 hours, and then cool to 23°C. To the mixture, add 10 parts of a 5% oxalic acid aqueous solution, stir at 23°C for 30 minutes, and then separate the liquids. Then the organic layer was removed. 10 parts of dehydrated water were added to the obtained organic layer and stirred at 23°C for 30 minutes. After mixing, the organic layer was separated by liquid-liquid extraction. This washing procedure was repeated five times. The resulting organic layer was then separated. After concentrating the layer, add 30 parts of tert-butyl methyl ether to the concentrated residue and stir. The supernatant was removed. The resulting residue was dissolved in acetonitrile and concentrated to obtain the formula. 6.73 parts of the salt represented by (I-184) were obtained. MASS(ESI(+)Spectrum):M + 317.0 MASS(ESI(-)Spectrum): M - 449.0

[0258] Example 7: Synthesis of the salt represented by formula (I-202) Mix 3.06 parts of the compound represented by formula (I-4-c) and 30 parts of chloroform, 23 After stirring at °C for 30 minutes, add 1.62 parts of the compound represented by formula (I-1-b) and 60 After raising the temperature to °C, the mixture was stirred at 60°C for 2 hours. The resulting reaction mixture was then treated with formula (I-202-a). Add 6.86 parts of the indicated salt, stir at 60°C for 3 hours, and then cool to 23°C. To the mixture, add 10 parts of a 5% oxalic acid aqueous solution, stir at 23°C for 30 minutes, and then separate the liquids. Then the organic layer was removed. 10 parts of dehydrated water were added to the obtained organic layer and stirred at 23°C for 30 minutes. After mixing, the organic layer was separated by liquid-liquid extraction. This washing procedure was repeated five times. The resulting organic layer was then separated. After concentrating the layer, add 30 parts of tert-butyl methyl ether to the concentrated residue and stir. The supernatant was removed. The resulting residue was dissolved in acetonitrile and concentrated to obtain the formula. 7.92 parts of the salt represented by (I-202) were obtained. MASS(ESI(+)Spectrum):M + 525.0 MASS(ESI(-)Spectrum): M - 449.0

[0259] Example 8: Synthesis of the salt represented by formula (I-220) Mix 3.06 parts of the compound represented by formula (I-4-c) and 30 parts of chloroform, 23 After stirring at °C for 30 minutes, add 1.62 parts of the compound represented by formula (I-1-b) and 60 After raising the temperature to °C, the mixture was stirred at 60°C for 2 hours. The resulting reaction mixture was then treated with formula (I-220-a). Add 6.42 parts of the indicated salt, stir at 60°C for 3 hours, and then cool to 23°C. To the mixture, add 10 parts of a 5% oxalic acid aqueous solution, stir at 23°C for 30 minutes, and then separate the liquids. Then the organic layer was removed. 10 parts of dehydrated water were added to the obtained organic layer and stirred at 23°C for 30 minutes. After mixing, the organic layer was separated by liquid-liquid extraction. This washing procedure was repeated five times. The resulting organic layer was then separated. After concentrating the layer, add 30 parts of tert-butyl methyl ether to the concentrated residue and stir. The supernatant was removed. The resulting residue was dissolved in acetonitrile and concentrated to obtain the formula. 7.66 parts of the salt represented by (I-220) were obtained. MASS(ESI(+)Spectrum):M + 481.0 MASS(ESI(-)Spectrum): M - 449.0

[0260] Example 9: Synthesis of the salt represented by formula (I-394) Mix 3.06 parts of the compound represented by formula (I-4-c) and 30 parts of chloroform, 23 After stirring at °C for 30 minutes, add 1.62 parts of the compound represented by formula (I-1-b) and 60 After raising the temperature to °C, the mixture was stirred at 60 °C for 2 hours. The resulting reaction mixture was then treated with formula (I-394-a). Add 6.40 parts of the indicated salt, stir at 60°C for 3 hours, and then cool to 23°C. To the mixture, add 10 parts of a 5% oxalic acid aqueous solution, stir at 23°C for 30 minutes, and then separate the liquids. Then the organic layer was removed. 10 parts of dehydrated water were added to the obtained organic layer and stirred at 23°C for 30 minutes. After mixing, the organic layer was separated by liquid-liquid extraction. This washing procedure was repeated five times. The resulting organic layer was then separated. After concentrating the layer, add 30 parts of tert-butyl methyl ether to the concentrated residue and stir. The supernatant was removed. The resulting residue was dissolved in acetonitrile and concentrated to obtain the formula. 7.60 parts of the salt represented by (I-394) were obtained. MASS(ESI(+)Spectrum):M + 479.0 MASS(ESI(-)Spectrum): M - 449.0

[0261] Example 10: Synthesis of the salt represented by formula (I-372) Mix 7.00 parts of the salt represented by formula (I-201-a) and 30 parts of chloroform, 23 After stirring at °C for 30 minutes, add 1.62 parts of the compound represented by formula (I-1-b) and 60 After raising the temperature to °C, the mixture was stirred at 60°C for 2 hours. The resulting reaction mixture was then treated with formula (I-372-c). 4.62 parts of the compound shown were added, stirred at 60°C for 3 hours, and then cooled to 23°C. To the resulting mixture, add 10 parts of a 5% oxalic acid aqueous solution and stir at 23°C for 30 minutes, then... The organic layer was separated by saturation. 10 parts of deionized water were added to the obtained organic layer and incubated at 23°C for 30 minutes. After stirring, the organic layer was separated by liquid-liquid extraction. This washing procedure was repeated five times. After concentrating the organic layer, add 3 parts acetonitrile and tert-butylmethyl ether to the concentrated residue. After adding 30 parts of rubbing acid and stirring, the supernatant was removed. The resulting residue was dissolved in acetonitrile. By concentrating the solution, 9.52 parts of the salt represented by formula (I-372) were obtained. MASS(ESI(+)Spectrum):M + 525.0 MASS(ESI(-)Spectrum): M - 618.9

[0262] Example 11: Synthesis of the salt represented by formula (I-374) Mix 7.00 parts of the salt represented by formula (I-201-a) and 30 parts of chloroform, 23 After stirring at °C for 30 minutes, add 1.62 parts of the compound represented by formula (I-1-b) and 60 After raising the temperature to °C, the mixture was stirred at 60 °C for 2 hours. The resulting reaction mixture was then treated with formula (I-374-c). 3.98 parts of the compound shown were added, stirred at 60°C for 3 hours, and then cooled to 23°C. To the resulting mixture, add 10 parts of a 5% oxalic acid aqueous solution and stir at 23°C for 30 minutes, then... The organic layer was separated by saturation. 10 parts of deionized water were added to the obtained organic layer and incubated at 23°C for 30 minutes. After stirring, the organic layer was separated by liquid-liquid extraction. This washing procedure was repeated five times. After concentrating the organic layer, add 30 parts of tert-butyl methyl ether to the concentration residue and stir. The supernatant was then removed. The resulting residue was dissolved in acetonitrile and concentrated. 9.18 parts of the salt represented by formula (I-374) were obtained. MASS(ESI(+)Spectrum):M + 525.0 MASS(ESI(-)Spectrum): M - 555.0

[0263] Example 12: Synthesis of the salt represented by formula (I-1073) Mix 6.87 parts of the salt represented by formula (I-202-a) and 30 parts of chloroform, 23 After stirring at °C for 30 minutes, add 1.62 parts of the compound represented by formula (I-1-b) and 60 After raising the temperature to °C, the mixture was stirred at 60 °C for 2 hours. Formula (I-1073-c) was added to the resulting reaction mixture. 5.58 parts of the compound represented by [formula] were added, stirred at 60°C for 3 hours, and then cooled to 23°C. To the resulting mixture, add 10 parts of a 5% oxalic acid aqueous solution and stir at 23°C for 30 minutes, The organic layer was separated by liquid-liquid separation. 10 parts of deionized water were added to the obtained organic layer and incubated at 23°C for 30 minutes. After stirring for several minutes, the organic layer was separated and removed. This washing procedure was repeated five times. After concentrating the organic layer, 30 parts of tert-butyl methyl ether were added to the concentrated residue and stirred. Afterward, the supernatant was removed. The resulting residue was dissolved in acetonitrile and concentrated. Then, 10.18 parts of the salt represented by formula (I-1073) were obtained. MASS(ESI(+)Spectrum):M + 525.0 MASS(ESI(-)Spectrum): M - 700.9

[0264] Resin synthesis The compounds (monomers) used in the synthesis of resin (A) are shown below. These are referred to as "monomers (a1-2-6)" etc., according to their formula numbers. TIFF2026066273000197.tif36168

[0265] Synthesis Example 1 [Synthesis of Resin A1] As monomers, monomer (a1-2-6), monomer (a2-1-3), monomer ( Using a3-4-2) and monomer (a1-4-2), the molar ratio [monomer (a1-2 -6): Monomer (a2-1-3): Monomer (a3-4-2): Monomer (a1-4- 2) Mix the monomers in a ratio of 53:3:12:32, and further mix this monomer mixture The substance is mixed with methyl isobutyl ketone in an amount equal to 1.5 times the total mass of all monomers. The resulting mixture was then mixed with azobisisobutyronitrile and azobis(2,4) as initiators. (dimethylvaleronitrile) is added at 1.2 mol% and 3.6 mol% respectively relative to the total amount of monomer. The mixture was added in ol% and heated at 73°C for approximately 5 hours. Afterward, the polymerization reaction solution was mixed with the total monomer. For the total mass, add 2.0 times the mass of p-toluenesulfonic acid aqueous solution (2.5% by weight). In addition, after stirring for 12 hours, the mixture was separated. The recovered organic layer was poured into a large amount of n-heptane. By precipitating the resin and then filtering and recovering it, the weight-average molecular weight is approximately 5.3 × 10⁻⁶. 3 That is Resin A1 was obtained with a yield of 88%. This resin A1 has the following structural units. TIFF2026066273000198.tif37129

[0266] Synthesis Example 2 [Synthesis of Resin A2] As monomers, monomer (a1-2-6), monomer (a2-1-3), monomer ( Using a3-4-2) and monomer (a1-4-13), the molar ratio [monomer (a1- 2-6): Monomer (a2-1-3): Monomer (a3-4-2): Monomer (a1-4 Mix the monomers in the ratio of -13) to 53:3:12:32, and further, this monomer To the mixture, add methyl isobutyl ketone in an amount equal to 1.5 times the total mass of all monomers. Combined. To the resulting mixture, azobisisobutyronitrile and azobis(2) were added as initiators. ,4-dimethylvaleronitrile) is added at 1.2 mol% and 3 mol% respectively relative to the total amount of monomer. 6 mol% was added, and these were heated at 73°C for approximately 5 hours. After that, the entire monopolymer was added to the polymerization reaction solution. A p-toluenesulfonic acid aqueous solution (2.5% by weight) is added in an amount equal to 2.0 times the total mass of the ingredients. ) was added, stirred for 12 hours, and then separated. The recovered organic layer was converted to a large amount of n-heptane. By allowing the pouring resin to precipitate, then filtering and recovering it, the weight-average molecular weight is approximately 5.1 × 10⁻⁶. 3 in A resin A2 was obtained in a yield of 79%. This resin A2 has the following structural units. . TIFF2026066273000199.tif38129

[0267] Synthesis Example 3 [Synthesis of Resin A3] As monomers, monomer (a1-1-3), monomer (a1-2-6), monomer ( Using a2-1-3), monomer (a3-4-2) and monomer (a1-4-2), Molar ratio [Monomer (a1-1-3):Monomer (a1-2-6):Monomer (a2-1- 3): Monomer (a3-4-2): Monomer (a1-4-2) is in a ratio of 20:35:3:1 Mix in a ratio of 5:27, and further, add the total amount of all monomers to this monomer mixture. Methyl isobutyl ketone was mixed in an amount 1.5 times its mass relative to the mass. As initiators, azobisisobutyronitrile and azobis(2,4-dimethylvaleronitrile) Add 1.2 mol% and 3.6 mol% of the total monomer amount, respectively, and then It was heated at 73°C for about 5 hours. After that, 2 of the total mass of the monomers was added to the polymerization reaction solution. Add 0.0 times the mass of p-toluenesulfonic acid aqueous solution (2.5% by weight) and stir for 12 hours. Next, the mixture was separated. The recovered organic layer was poured into a large amount of n-heptane to precipitate the resin, and then filtered. By recovering the material, the weight-average molecular weight becomes approximately 5.3 × 10⁻⁶. 3 Resin A3 is produced with a yield of 63% Obtained. This resin A3 has the following structural units. TIFF2026066273000200.tif37154

[0268] Synthesis Example 4 [Synthesis of Resin A4] As monomers, monomer (a1-2-6), monomer (a2-1-3), monomer ( Using a3-4-2) and monomer (a1-4-19), the molar ratio [monomer (a1- 2-6): Monomer (a2-1-3): Monomer (a3-4-2): Monomer (a1-4 Mix the monomers in the ratio of -19) to 53:3:12:32, and further, this monomer To the mixture, add methyl isobutyl ketone in an amount equal to 1.5 times the total mass of all monomers. Combined. To the resulting mixture, azobisisobutyronitrile and azobis(2) were added as initiators. ,4-dimethylvaleronitrile) is added at 1.2 mol% and 3 mol% respectively relative to the total amount of monomer. 6 mol% was added, and these were heated at 73°C for approximately 5 hours. After that, the entire monopolymer was added to the polymerization reaction solution. A p-toluenesulfonic acid aqueous solution (2.5 by weight) is added in an amount equal to 2.0 times the total mass of the amount of Mer. (%) was added, and after stirring for 12 hours, liquid separation was performed. The recovered organic layer was poured into a large amount of n-heptane to precipitate the resin, and by filtration and recovery, resin A4 having a weight average molecular weight of about 5.5×10 3 was obtained in a yield of 74%. This resin A4 has the following structural units . TIFF2026066273000201.tif37128

[0269] Synthesis Example 5 [Synthesis of Resin A5] As monomers, monomer (a1-2-6), monomer (a2-1-3), monomer ( a3-4-2) and monomer (a1-4-20) were used, and their molar ratio [monomer (a1- 2-6): monomer (a2-1-3): monomer (a3-4-2): monomer (a1-4 -20)] was mixed so as to be in a ratio of 53:3:12:32. Further, 1.5 mass times of methyl isobutyl ketone was mixed with this monomer mixture based on the total mass of all monomers. To the obtained mixture, azobisisobutyronitrile and azobis(2 ,4-dimethylvaleronitrile) were added at 1.2 mol% and 3. 6 mol% respectively based on the total amount of all monomers, and these were heated at 73 °C for about 5 hours. Then, to the polymerization reaction solution, 2.0 mass times of an aqueous p-toluenesulfonic acid solution (2.5 wt %) was added based on the total mass of the total amount of all monomers, and after stirring for 12 hours, liquid separation was performed. The recovered organic layer was poured into a large amount of n-heptane to precipitate the resin, and by filtration and recovery, resin A5 having a weight average molecular weight of about 5.2×10 was obtained in a yield of 66%. This resin A5 has the following structural units 3 is.

[0270] TIFF2026066273000202.tif37128

[0270] <Preparation of the resist composition> As shown in Table 2, the following components were mixed, and the resulting mixture contained fluorine with a pore size of 0.2 μm. The resist composition was prepared by filtering through a resin filter. [Table 2]

[0271] <Resin> A1~A5: Resin A1~Resin A5 <Salt (I)> I-1: Salt represented by formula (I-1) I-2: Salt represented by formula (I-2) I-3: Salt represented by formula (I-3) I-4: Salt represented by formula (I-4) I-184: Salt represented by formula (I-184) I-201: Salt represented by formula (I-201) I-202: Salt represented by formula (I-202) I-220: Salt represented by formula (I-220) I-394: Salt represented by formula (I-394) I-372: Salt represented by formula (I-372) I-374: Salt represented by formula (I-374) I-1073: Salt represented by formula (I-1073) <Acid Generator> IX-1 IX-2 TIFF2026066273000204.tif33137<Quencher(C)> C1: Synthesized by the method described in Japanese Patent Publication No. 2011-39502 TIFF2026066273000205.tif4355<solvent> Propylene glycol monomethyl ether acetate, 400 units Propylene glycol monomethyl ether, 100 parts γ-Butyrolactone 5 parts

[0272] (Electron Beam Exposure Evaluation of Resist Composition) A 6-inch silicon wafer was treated on a direct hot plate with hexamethyldisilazane at 90 °C for 60 seconds. The resist composition was spin-coated onto this silicon wafer so that the film thickness of the composition layer was 0.04 μm. Then, it was pre-baked for 60 seconds at the temperature shown in the "PB" column of Table 2 on a direct hot plate to form a composition layer. On the composition layer formed on the wafer, a contact hole pattern (hole pitch 40 nm / hole diameter 17 nm) was directly drawn using an electron beam lithography machine ["ELS-F1 25 125 keV" manufactured by Elionix, Inc.] while changing the exposure dose step by step. After exposure, post-exposure baking was performed for 60 seconds at the temperature shown in the "PEB" column of Table 2 on a hot plate. Next, the composition layer on this silicon wafer was developed at 23 °C for 20 seconds by the dynamic dispense method using butyl acetate (manufactured by Tokyo Chemical Industry Co., Ltd.) as the developer to obtain a resist pattern. In the resist pattern obtained after development, the exposure dose at which the formed hole diameter became 17 nm was defined as the effective sensitivity. <CD Uniformity (CDU) Evaluation> At the effective sensitivity, the hole diameter of the pattern formed with a hole diameter of 17 nm was measured 24 times for each hole, and the average value was taken as the average hole diameter of one hole. The average hole diameter of the patterns formed with a hole diameter of 17 nm within the same wafer was measured at 400 locations and used as the population to calculate the standard deviation. The results are shown in Table 3. The numerical values in the table indicate the standard deviation (nm).

Table 3

[0273] N

[0274] ​​​​​​​​​​​ Compared to comparative compositions 1 and 2, compositions 1-18 have a smaller standard deviation and higher CD uniformity (C DU) The evaluation was good. [Industrial applicability]

[0275] The salt of the present invention and the resist composition containing the salt have good CD uniformity (CDU). It is useful for the microfabrication of semiconductors.

Claims

1. An acid generator containing a salt represented by formula (I). [In formula (I), Q 1 and Q 2 Each of these independently represents either a fluorine atom or a perfluoroalkyl group having 1 to 6 carbon atoms. R 11 and R 12 Each of these independently represents a hydrogen atom, a fluorine atom, or a perfluoroalkyl group having 1 to 6 carbon atoms. z represents an integer from 0 to 6, and when z is 2 or greater, multiple R 11 and R 12 They may be identical or different from one another. X 1 represents *-CO-O-, *-O-CO-, *-O-CO-O- or *-O-, where * represents a bonding site with C(R 11 )(R 12 ), or C(Q 1 )(Q 2 ). L 1 This represents a hydrocarbon group having 1 to 60 carbon atoms, which may have single bonds or substituents, and the hydrocarbon group contains -CH 2 - is -O-, -S-, -SO 2 It may be replaced with - or -CO-. R 10 This represents a group represented by formula (R10-1) or formula (R10-2). L 1 When it is a single bond, R 10 This is a group represented by formula (R10-1). Z + This represents an organic cation. [In formulas (R10-1) and (R10-2), Ring W represents an alicyclic hydrocarbon group having 3 to 36 carbon atoms. R 1 Each of these independently represents a halogen atom, a hydroxyl group, a C1-C12 haloalkyl group, a C1-C12 alkyl group, a C3-C18 alicyclic hydrocarbon group, or a group formed from a combination thereof, and the haloalkyl group, the alkyl group, and the alicyclic hydrocarbon group contain -CH 2 The dash may be replaced by -O- or -CO-. m1 represents an integer from 0 to 6, and when m1 is 2 or greater, multiple R 1 They may be identical or different from one another. m² represents an integer between 1 and 6. * is L 1 This represents the connection point with [the other element].

2. An acid generator containing a salt represented by formula (I). [In formula (I), Q 1 and Q 2 Each of these independently represents either a fluorine atom or a perfluoroalkyl group having 1 to 6 carbon atoms. R 11 and R 12 Each of these independently represents a hydrogen atom, a fluorine atom, or a perfluoroalkyl group having 1 to 6 carbon atoms. z represents an integer from 0 to 6, and when z is 2 or greater, multiple R 11 and R 12 They may be identical or different from one another. X 1 * represents *-CO-O-, *-O-CO-, *-O-CO-O-, or *-O-, where * is C(R 11 ) (Caution 12 ) or C (Q 1 ) (Q 2 This represents the connection point with ). L 1 This represents a hydrocarbon group having 1 to 60 carbon atoms, which may have single bonds or substituents, and the hydrocarbon group contains -CH 2 - is -O-, -S-, -SO 2 It may be replaced with - or -CO-. R 10 This represents a group represented by formula (R10-1) or formula (R10-2). L 1 When it is a single bond, R 10 This is a group represented by formula (R10-1). Z + This represents an organic cation. [In formulas (R10-1) and (R10-2), Ring W represents an alicyclic hydrocarbon group having 6 to 36 carbon atoms, and the alicyclic hydrocarbon group contains -CH 2 - stands for -O-, -S-, -CO-, or -SO 2 It may be replaced with -. R 1 Each of these independently represents a halogen atom, a hydroxyl group, a C1-C12 haloalkyl group, a C1-C12 alkyl group, a C3-C18 alicyclic hydrocarbon group, or a group formed from a combination thereof, and the haloalkyl group, the alkyl group, and the alicyclic hydrocarbon group contain -CH 2 The dash may be replaced by -O- or -CO-. m1 represents an integer from 0 to 6, and when m1 is 2 or greater, multiple R 1 They may be identical or different from one another. m² represents an integer between 1 and 6. * is L 1 This represents the connection point with [the other element].

3. L 1 However, a chain hydrocarbon group having 1 to 10 carbon atoms may have single bonds or substituents (provided that the chain hydrocarbon group contains -CH 2 - may be replaced by -O- or -CO-.), a cyclic hydrocarbon group having 3 to 24 carbon atoms which may have substituents (however, the cyclic hydrocarbon group may contain -CH 2 - stands for -O-, -S-, -CO-, or -SO 2 A group formed by combining a chain hydrocarbon group having 1 to 8 carbon atoms that may have substituents and a cyclic hydrocarbon group having 3 to 24 carbon atoms that may have substituents (however, the chain hydrocarbon group may contain -CH 2 The - may be replaced by -O- or -CO-, and the -CH contained in the cyclic hydrocarbon group 2 - is -O-, -S-, -SO 2 The acid generator according to claim 1 or 2, wherein it may be replaced with - or -CO-.

4. *-L 1 -R 10 The acid generator according to any one of claims 1 to 3, wherein the group is represented by any one of formulas (L1-0) to (L1-5). [In formulas (L1-0) to (L1-5), Ring W, R 1 m1 and m2 have the same meaning as above. L 2 This represents a chain hydrocarbon group having 1 to 10 carbon atoms which may have substituents, a cyclic hydrocarbon group having 3 to 24 carbon atoms which may have substituents, or a group formed by combining a cyclic hydrocarbon group having 3 to 24 carbon atoms which may have substituents and a chain hydrocarbon group having 1 to 8 carbon atoms which may have substituents, and the cyclic hydrocarbon group contains -CH 2 - stands for -O-, -S-, -CO-, or -SO 2 - may be replaced by -CH contained in the chain hydrocarbon group. 2 The dash may be replaced by -O- or -CO-. L 3 and L 4 Each of these independently represents a chain hydrocarbon group having 1 to 8 carbon atoms, which may have single bonds or substituents, and the chain hydrocarbon group contains -CH 2 The dash may be replaced by -O- or -CO-. L 5 and L 6 Each of these independently represents a chain-like hydrocarbon group having 1 to 10 carbon atoms, which may have single bonds or substituents, and the chain-like hydrocarbon group contains -CH 2 The dash may be replaced by -O- or -CO-. Ring W3 represents a cyclic hydrocarbon group having 3 to 24 carbon atoms, which may have substituents, and the cyclic hydrocarbon group contains -CH 2 - stands for -O-, -S-, -CO-, or -SO 2 It may be replaced with -. Rings W4 and W5 each independently represent a cyclic hydrocarbon group having 3 to 18 carbon atoms, which may have substituents, and the cyclic hydrocarbon group contains -CH 2 - stands for -O-, -S-, -CO-, or -SO 2 It may be replaced with -. X 3 This represents **-CO-O-, **-O-CO-, **-O-CO-O-, or **-O-. X a and X b These represent either -O- or -S- independently. X 01 represents a hydrocarbon group having 1 to 40 carbon atoms, which may have substituents, and the hydrocarbon group contains -CH 2 - stands for -O-, -S-, -CO-, or -SO 2 It may be replaced with -. R 21 and R 22 Each of these independently represents a halogen atom, a hydroxyl group, a C1-C12 haloalkyl group, a C1-C12 alkyl group, a C3-C18 alicyclic hydrocarbon group, or a group formed from a combination thereof, and the haloalkyl group, the alkyl group, and the alicyclic hydrocarbon group contain -CH 2 The dash may be replaced by -O- or -CO-. m21 represents an integer from 0 to 6, and when m21 is 2 or greater, multiple R 21 They may be identical or different from one another. m22 represents an integer from 0 to 6, and when m22 is 2 or greater, multiple R 22 They may be identical or different from one another. * is X 1 This represents the connection point with L. ** indicates L 2 This represents the connection point with [the other element].

5. X 01 However, equation (X 1 -1), formula (X 1 -3) and formula (X 1 -5) ~Formula (X 1 The acid generator according to claim 4, wherein the group is represented by any of the following (-7). [Formula (X 1 -1), Formula (X 1 -3) and Formula (X 1 -5) to Formula (X 1 -7), among L 11 This represents a hydrocarbon group having 1 to 18 carbon atoms, which may have single bonds or substituents, and the hydrocarbon group contains -CH 2 - is -O-, -S-, -SO 2 It may be replaced with - or -CO-. * indicates a bonding site.

6. The acid generator according to any one of claims 1 to 5, wherein ring W is a group derived from a ring represented by formula (w1-1), a group derived from a ring represented by formula (w1-2), a group derived from a ring represented by formula (w1-3), a group derived from a ring represented by formula (w1-6), or a group derived from a ring represented by formula (w1-15). [In formulas (w1-1), (w1-2), (w1-3), (w1-6), and (w1-15), -CH contained in the group 2 - may be replaced by -O-, -S-, -CO- or -SO 2 -. The bonding site may be at any position.]

7. The acid generator according to any one of claims 1 to 6, wherein m2 is 1 or 2.

8. A resist composition comprising an acid generator according to any one of claims 1 to 7 and a resin having an acid-unstable group.

9. The resist composition according to claim 8, wherein the resin having an acid-unstable group comprises 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), and a structural unit represented by formula (a1-2). [In formulas (a1-0), (a1-1), and (a1-2), L a01 , L a1 and L a2 These are, independently, -O- or *-O- (CH 2 ) k1 This represents -CO-O-, where k1 is an integer from 1 to 7, and * represents the bonding site with -CO-. R a01 , R a4 and R a5 Each of these independently represents a hydrogen atom, a halogen atom, or a C1-C6 alkyl group which may have a halogen atom. R a02 , R a03 and R a04 Each of these 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 group combining these. R a6 and R a7 Each of these 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 a combination of these. m1 represents an integer between 0 and 14. n1 represents an integer between 0 and 10. n1' represents an integer between 0 and 3.

10. The resist composition according to claim 8 or 9, wherein the resin having an acid-unstable group comprises a structural unit represented by formula (a2-A). [In formula (a2-A), R a50 This represents a hydrogen atom, a halogen atom, or an alkyl group having 1 to 6 carbon atoms that may contain a halogen atom. R a51 This represents a halogen atom, a hydroxyl group, a C1-C6 alkyl group, a C1-C6 alkoxy group, a C2-C12 alkoxyalkyl group, a C2-C12 alkoxyalkoxy group, a C2-C4 alkylcarbonyl group, a C2-C4 alkylcarbonyloxy group, an acryloyloxy group, or a methacryloyloxy group. A a50 This is a single bond or *-X a51 - (A a52 -X a52 ) nb - represents -R a50 This represents the bonding site with the carbon atom to which it is bonded. A a52 This represents an alkanediyl group with 1 to 6 carbon atoms. X a51 and X a52 These represent, independently, -O-, -CO-O-, or -O-CO-. nb represents either 0 or 1. mb represents an integer between 0 and 4. If mb is an integer greater than or equal to 2, then multiple R a51 They may be the same or different from each other.

11. The resist composition according to any one of claims 8 to 10, further comprising a salt that generates an acid with a lower acidity than the acid generated from the acid generator.

12. (1) A step of applying the resist composition according to any one of claims 8 to 11 onto a substrate, (2) A step of drying the coated composition to form a composition layer, (3) Exposure step of the composition layer, (4) A step of heating the composition layer after exposure, (5) A step of developing the composition layer after heating, A method for manufacturing a resist pattern that includes a resist pattern.

13. A salt represented by formula (I). [In formula (I), Q 1 and Q 2 Each of these independently represents either a fluorine atom or a perfluoroalkyl group having 1 to 6 carbon atoms. R 11 and R 12 Each of these independently represents a hydrogen atom, a fluorine atom, or a perfluoroalkyl group having 1 to 6 carbon atoms. z represents an integer from 0 to 6, and when z is 2 or greater, multiple R 11 and R 12 They may be identical or different from one another. X 1 * represents *-CO-O-, *-O-CO-, *-O-CO-O-, or *-O-, where * is C(R 11 ) (Caution 12 ) or C (Q 1 ) (Q 2 This represents the connection point with ). L 1 This represents a hydrocarbon group having 1 to 60 carbon atoms, which may have single bonds or substituents, and the hydrocarbon group contains -CH 2 - is -O-, -S-, -SO 2 It may be replaced with - or -CO-. R 10 This represents a group represented by formula (R10-1) or formula (R10-2). L 1 When it is a single bond, R 10 This is a group represented by formula (R10-1). Z + This represents an organic cation. [In formulas (R10-1) and (R10-2), Ring W represents an alicyclic hydrocarbon group having 3 to 36 carbon atoms. R 1 Each of these independently represents a halogen atom, a hydroxyl group, a C1-C12 haloalkyl group, a C1-C12 alkyl group, a C3-C18 alicyclic hydrocarbon group, or a group formed from a combination thereof, and the haloalkyl group, the alkyl group, and the alicyclic hydrocarbon group contain -CH 2 The dash may be replaced by -O- or -CO-. m1 represents an integer from 0 to 6, and when m1 is 2 or greater, multiple R 1 They may be identical or different from one another. m² represents an integer between 1 and 6. * is L 1 This represents the connection point with [the other element].

14. A salt represented by formula (I). [In formula (I), Q 1 and Q 2 Each of these independently represents either a fluorine atom or a perfluoroalkyl group having 1 to 6 carbon atoms. R 11 and R 12 Each of these independently represents a hydrogen atom, a fluorine atom, or a perfluoroalkyl group having 1 to 6 carbon atoms. z represents an integer from 0 to 6, and when z is 2 or greater, multiple R 11 and R 12 They may be identical or different from one another. X 1 * represents *-CO-O-, *-O-CO-, *-O-CO-O-, or *-O-, where * is C(R 11 ) (Caution 12 ) or C (Q 1 ) (Q 2 This represents the connection point with ). L 1 This represents a hydrocarbon group having 1 to 60 carbon atoms, which may have single bonds or substituents, and the hydrocarbon group contains -CH 2 - is -O-, -S-, -SO 2 It may be replaced with - or -CO-. R 10 This represents a group represented by formula (R10-1) or formula (R10-2). L 1 When it is a single bond, R 10 This is a group represented by formula (R10-1). Z + This represents an organic cation. [In formulas (R10-1) and (R10-2), Ring W represents an alicyclic hydrocarbon group having 6 to 36 carbon atoms, and the alicyclic hydrocarbon group contains -CH 2 - stands for -O-, -S-, -CO-, or -SO 2 It may be replaced with -. R 1 Each of these independently represents a halogen atom, a hydroxyl group, a C1-C12 haloalkyl group, a C1-C12 alkyl group, a C3-C18 alicyclic hydrocarbon group, or a group formed from a combination thereof, and the haloalkyl group, the alkyl group, and the alicyclic hydrocarbon group contain -CH 2 The dash may be replaced by -O- or -CO-. m1 represents an integer from 0 to 6, and when m1 is 2 or greater, multiple R 1 They may be identical or different from one another. m² represents an integer between 1 and 6. * is L 1 This represents the connection point with [the other element].

15. L 1 However, a chain hydrocarbon group having 1 to 10 carbon atoms may have single bonds or substituents (provided that the chain hydrocarbon group contains -CH 2 - may be replaced by -O- or -CO-.), a cyclic hydrocarbon group having 3 to 24 carbon atoms which may have substituents (however, the cyclic hydrocarbon group may contain -CH 2 - stands for -O-, -S-, -CO-, or -SO 2 A group formed by combining a chain hydrocarbon group having 1 to 8 carbon atoms that may have substituents and a cyclic hydrocarbon group having 3 to 24 carbon atoms that may have substituents (however, the chain hydrocarbon group may contain -CH 2 The - may be replaced by -O- or -CO-, and the -CH contained in the cyclic hydrocarbon group 2 - is -O-, -S-, -SO 2 The salt according to claim 13 or 14, wherein - or -CO- may be substituted.

16. *-L 1 -R 10 The salt according to any one of claims 13 to 15, wherein the group is represented by any one of formulas (L1-0) to (L1-5). [In formulas (L1-0) to (L1-5), Ring W, R 1 m1 and m2 have the same meaning as above. L 2 This represents a chain hydrocarbon group having 1 to 10 carbon atoms which may have substituents, a cyclic hydrocarbon group having 3 to 24 carbon atoms which may have substituents, or a group formed by combining a cyclic hydrocarbon group having 3 to 24 carbon atoms which may have substituents and a chain hydrocarbon group having 1 to 8 carbon atoms which may have substituents, and the cyclic hydrocarbon group contains -CH 2 - stands for -O-, -S-, -CO-, or -SO 2 - may be replaced by -CH contained in the chain hydrocarbon group. 2 The dash may be replaced by -O- or -CO-. L 3 and L 4 Each of these independently represents a chain hydrocarbon group having 1 to 8 carbon atoms, which may have single bonds or substituents, and the chain hydrocarbon group contains -CH 2 The dash may be replaced by -O- or -CO-. L 5 and L 6 Each of these independently represents a chain-like hydrocarbon group having 1 to 10 carbon atoms, which may have single bonds or substituents, and the chain-like hydrocarbon group contains -CH 2 The dash may be replaced by -O- or -CO-. Ring W3 represents a cyclic hydrocarbon group having 3 to 24 carbon atoms, which may have substituents, and the cyclic hydrocarbon group contains -CH 2 - stands for -O-, -S-, -CO-, or -SO 2 It may be replaced with -. Rings W4 and W5 each independently represent a cyclic hydrocarbon group having 3 to 18 carbon atoms, which may have substituents, and the cyclic hydrocarbon group contains -CH 2 - stands for -O-, -S-, -CO-, or -SO 2 It may be replaced with -. X 3 This represents **-CO-O-, **-O-CO-, **-O-CO-O-, or **-O-. X a and X b These represent either -O- or -S- independently. X 01 represents a hydrocarbon group having 1 to 40 carbon atoms, which may have substituents, and the hydrocarbon group contains -CH 2 - stands for -O-, -S-, -CO-, or -SO 2 It may be replaced with -. R 21 and R 22 Each of these independently represents a halogen atom, a hydroxyl group, a C1-C12 haloalkyl group, a C1-C12 alkyl group, a C3-C18 alicyclic hydrocarbon group, or a group formed from a combination thereof, and the haloalkyl group, the alkyl group, and the alicyclic hydrocarbon group contain -CH 2 The dash may be replaced by -O- or -CO-. m21 represents an integer from 0 to 6, and when m21 is 2 or greater, multiple R 21 They may be identical or different from one another. m22 represents an integer from 0 to 6, and when m22 is 2 or greater, multiple R 22 They may be identical or different from one another. * is X 1 This represents the connection point with L. ** indicates L 2 This represents the connection point with [the other element].

17. X 01 However, equation (X 1 -1), formula (X 1 -3) and formula (X 1 -5) ~Formula (X 1 The salt according to claim 16, wherein the group is represented by any of (-7). [Formula (X 1 -1), formula (X 1 -3) and formula (X 1 -5) ~Formula (X 1 -7) Middle, L 11 This represents a hydrocarbon group having 1 to 18 carbon atoms, which may have single bonds or substituents, and the hydrocarbon group contains -CH 2 - is -O-, -S-, -SO 2 It may be replaced with - or -CO-. * indicates a bonding site.

18. The salt according to any one of claims 13 to 17, wherein ring W is a group derived from a ring represented by formula (w1-1), a group derived from a ring represented by formula (w1-2), a group derived from a ring represented by formula (w1-3), a group derived from a ring represented by formula (w1-6), or a group derived from a ring represented by formula (w1-15). [In formulas (w1-1), (w1-2), (w1-3), (w1-6), and (w1-15), -CH contained in the group 2 - stands for -O-, -S-, -CO-, or -SO 2 It may be replaced by -. The connection point is at any position.

19. The salt according to any one of claims 13 to 18, wherein m2 is 1 or 2.

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