Method for dyeing keratinous materials comprising the use of an organosilicon compound, a hydroxycarboxylic acid ester, a diol and a coloring compound - Patent Application 20070122999

The sequential application of organosilicon compounds, hydroxycarboxylic acid esters, and sealing agents in hair dyeing optimizes polymerization for even, long-lasting, and ammonia-free coloration on keratinous materials.

JP7772699B2Active Publication Date: 2025-11-18HENKEL KGAA
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Patent Information

Application Number
JP2022536740
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Priority Date
2019-12-16
Filing Date
2020-10-16
Publication Date
2025-11-18
Estimated Expiration
2040-10-16

AI Technical Summary

Technical Problem

Existing hair dyeing methods using organosilicon compounds face challenges with high reactivity leading to premature polymerization, uneven application, and damage to hair due to ammonia odor and chemical incompatibilities, limiting long-lasting and uniform coloration.

Method used

A method involving the sequential application of two agents, one containing organosilicon compounds, hydroxycarboxylic acid esters, and diols, and the other a sealing agent, to optimize polymerization rate and durability, ensuring even and long-lasting color on keratinous materials.

Benefits of technology

The method achieves highly stable, wash-resistant, and uniform colorations on keratinous materials by optimizing the polymerization rate, reducing hair damage, and eliminating ammonia odor.

✦ Generated by Eureka AI based on patent content.

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Abstract

The subject of the present invention is a method for producing a method comprising the steps of: applying an agent (a) to the keratinous material, wherein said agent (a) comprises: (a1) at least one organosilicon compound selected from the group consisting of silanes having one, two, or three silicon atoms; and (a2) at least one hydroxycarboxylic acid ester; (a3) at least one diol; applying an agent (b) to the keratinous material, wherein the agent (b) comprises: (b1) at least one sealing reagent; wherein at least one of the agents (a) and (b) further comprises at least one coloring compound selected from the group consisting of pigments and / or direct dyes.
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Description

[Technical Field]

[0001] The subject matter of the present application relates to a method for treating keratinous materials, in particular human hair, which method comprises the application of two agents (a) and (b). Agent (a) is characterized by its content of at least one organosilicon compound (a1), at least one hydroxycarboxylic acid ester (a2), and at least one diol (a3). Agent (b) contains at least one sealing agent (b1). Furthermore, either agent (a) or agent (b), or both agents (a) and (b), contain at least one coloring compound selected from the group consisting of pigments and / or direct dyes.

[0002] A further subject of the present application is a multi-component package unit (kit of parts) for dyeing keratinous materials, in particular human hair, which comprises at least three separately prepared agents (a'), (a'') and (b). Agents (a') and (a'') can be used to prepare agent (a) used in the above-mentioned method.

[0003] Yet another subject of the present application is a multi-component package unit (kit of parts) for dyeing keratinous materials, in particular human hair, which comprises at least four separately assembled agents (a'), (a'', (a''') and (b). Agents (a'), (a'') and (a''') can be used to prepare agent (a) used in the method described above.

[0004] A further subject of the present application is a multi-component package unit (kit of parts) for dyeing keratinous materials, in particular human hair, which comprises at least five separately prepared agents (a'), (a''), (a'''), (b') and (b''). From agents (a'), (a'') and (a'''), agent (a) can be prepared for use in the above-described method, and from agents (b') and (b''), agent (b) can be prepared for use in the above-described method. [Background technology]

[0005] Changing the shape and color of keratinous fibers, especially hair, is an important area of ​​modern cosmetics. To change hair color, experts know a variety of coloring systems depending on the coloring requirements. For permanent, intense dyeing with good fastness properties and good gray coverage, oxidation dyes are usually used. Such dyeings usually contain oxidation dye precursors, so-called developer components and coupler components, which form the actual dye under the influence of an oxidizing agent such as hydrogen peroxide. Oxidation dyes are characterized by very long-lasting coloring results.

[0006] When using direct dyes, the dye already formed migrates from the colorant into the hair fiber. Compared to oxidative dyes, the stain obtained with direct dyes is less colorfast and washes out quickly. The stain with direct dyes usually remains on the hair for 5 to 20 washes.

[0007] It is known to use color pigments for short-term color changes in hair and / or skin.Color pigments are generally understood to be insoluble color-imparting substances.They exist in the dye formulation in the form of small particles in an undissolved state, and are simply deposited on the outer surface of hair fibers and / or skin surfaces.Therefore, they can usually be removed without residue by rinsing several times with a detergent containing a surfactant.Various products of this type are available on the market under the name of hair mascara.

[0008] When users want particularly long-lasting coloring, the only option has been to use oxidative coloring agents. However, despite multiple optimization attempts, the unpleasant ammonia or amine odor during oxidative coloring cannot be completely avoided. In addition, the damage to hair that is still associated with the use of oxidative dyes also has a detrimental effect on the user's hair.

[0009] EP 2168633B1 addresses the problem of producing long-lasting pigmented hair coloring. This document teaches that when a combination of pigment, organosilicon compound, film-forming polymer and solvent is used on hair, it is possible to produce a coloring that is particularly durable, especially against wear and / or washing. [Prior art documents] [Patent documents]

[0010] [Patent Document 1] European Patent No. 2168633B1 Summary of the Invention [Problem to be solved by the invention]

[0011] The great advantage of the dyeing principle based on organosilicon compounds is that due to the high reactivity of this kind of compound, it can be processed very quickly.This means that after a very short application time of only a few minutes, it can achieve very good coloring results.But in addition to these advantages, the high reactivity of alkoxysilane also has some disadvantages.

[0012] Due to their high reactivity, the organosilicon compounds used cannot be prepared with large amounts of water, as excessive water will initiate immediate hydrolysis and subsequent polymerization. Polymerization that occurs during storage of organosilicon compounds in aqueous formulations manifests as thickening or gelling of the aqueous formulation. This causes the formulation to become very viscous, gel-like, or gel-like, making it no longer possible to apply it evenly to keratinous materials. Furthermore, storage of organosilicon compounds used in the presence of large amounts of water is associated with a loss of their reactivity, making it no longer possible to form a durable coating on keratinous materials.

[0013] For these reasons, it is necessary to store organosilicon compounds in anhydrous or low-water environment, and prepare corresponding preparations in separate containers.Due to their high reactivity, organosilicon compounds can not only react with water, but also with other cosmetic ingredients.Therefore, in order to avoid any undesired reaction, the preparation that contains organosilicon compounds preferably does not contain other ingredients, or only contains selected ingredients that are known to be chemically inert to said organosilicon compounds.Therefore, the concentration of organosilicon compounds in preparations is preferably selected to be relatively high.The low-water preparation that contains organosilicon compounds at a relatively high concentration that is used can also be called "silane blend".

[0014] For application to keratinous materials, the user must convert this relatively concentrated silane blend into a ready-to-use mixture in which, on the one hand, the concentration of organosilicon compound is reduced, and, on the other hand, the application mixture also contains a high proportion of water (or alternative components) that causes polymerization to result in the coating.

[0015] It has proven very difficult to adapt the polymerization rate, i.e. the rate at which the coating is formed on the keratinous materials, to the application conditions.

[0016] For example, when applied to human hair, if the polymerization rate is too fast, polymerization will be completed before all hair areas have been treated. Therefore, if the polymerization rate is too fast, it will be impossible to treat the entire head. In the coloring process, excessively fast polymerization will result in uneven coloring, and the last treated hair parts will be insufficiently colored.

[0017] It is necessary to provide a pigmented hair dye, which has high washing fastness and rubbing fastness on the one hand, and does not adversely affect hair properties such as handling and feel on the other hand.For this purpose, it would be desirable to be able to adapt the polymerization rate of the organosilicon compound used to application conditions, especially the general conditions when applied to human head.In other words, there is a need for a process in which the organosilicon compound used has a sufficiently long reactivity, so that it can be applied to the whole head without unduly extending the application period. [Means for solving the problem]

[0018] Surprisingly, it has been found that the above-mentioned problems can be solved effectively when keratinous materials, particularly human hair, are colored by a method in which at least two agents (a) and (b) are applied to the keratinous material (hair). The first agent (a) contains at least one organosilicon compound selected from the group consisting of silanes having one, two, or three silicon atoms, at least one hydroxycarboxylic acid ester (a2), and at least one diol (a3). The second agent (b) contains at least one sealing agent (b1).

[0019] Surprisingly, when the two agents (a) and (b) are used in the dyeing process, the reactivity of the organosilicon compound (a1) is optimally adapted to the application conditions typical for whole head hair dyeing processes. Using this process, even more complex or time-consuming dyeing techniques can be realized. When the two agents (a) and (b) are used in the dyeing process of keratinous materials, especially human hair, dyeings with particularly high uniformity, rub fastness, and wash fastness can be produced. DETAILED DESCRIPTION OF THE INVENTION

[0020] A first subject of the present invention is a method for coloring keratinous materials, in particular human hair, comprising the following steps: applying an agent (a) to the keratinous material, wherein said agent (a) is: (a1) at least one organosilicon compound selected from the group consisting of silanes containing one, two or three silicon atoms; (a2) at least one hydroxycarboxylic acid ester; (a3) at least one diol and and applying an agent (b) to the keratinous material, wherein said agent (b) is one of the following: (b1) at least one sealing reagent Including, wherein at least one of the agents (a) and (b) further comprises at least one coloring compound selected from the group consisting of pigments and / or direct dyes.

[0021] In the research leading to the present invention, it was found that the preferential sequential application of agents (a) and (b) allows the production of highly stable, wash-resistant colorings on keratinous materials. When the organosilicon compound (a1) is applied, a particularly durable film is formed on the keratinous materials. Without being limited to any particular theory, it is believed that the joint application of the organosilicon compound (a1) and the hydroxycarboxylic acid ester (a2) results in the formation of a particularly durable film on the keratinous materials. The application of the second agent (b) seals the film applied to the keratinous materials, making them more resistant to washing and / or abrasion. A colored film can be obtained by incorporating at least one coloring compound selected from the group consisting of pigments and / or direct dyes into at least one of agents (a) and (b).

[0022] In this way, the coloring compounds can be permanently fixed to the keratinous materials, resulting in very wash-resistant colorations that are resistant to wear and / or shampooing.

[0023] With the aid of the hydroxycarboxylic acid esters (a2) and diols (a3), it was also possible to optimally adapt, in particular, the rate of oligomerization and polymerization of the organosilicon compounds (a1), i.e., the rate of formation of the silane film on the keratin substrate, to the application conditions.

[0024] <Keratinous substances> Keratinous materials refer to hair, skin, nails (e.g., fingernails and / or toenails). Additionally, wool, fur, and feathers are also included within the definition of keratinous materials.

[0025] Preferably, keratinous materials are understood to mean human hair, human skin and human nails, in particular fingernails and toenails. Most preferably, keratinous materials are understood to mean human hair.

[0026] <Agents (a) and (b)> In the described method, agents (a) and (b) are applied to keratinous material, in particular human hair. The two agents (a) and (b) are different from each other.

[0027] In other words, the first subject of the present invention is a method for producing a method comprising the following steps: applying an agent (a) to the keratinous material, wherein said agent (a) comprises: (a1) at least one organosilicon compound selected from the group consisting of silanes containing one, two or three silicon atoms; (a2) at least one hydroxycarboxylic acid ester; (a3) at least one diol; and applying an agent (b) to the keratinous material, wherein said agent (b) comprises: (b1) at least one sealing reagent; wherein at least one of the agents (a) and (b) further comprises at least one coloring compound selected from the group consisting of pigments and / or direct dyes.

[0028] <Agent (a)> The agent (a) contains the components (a1), (a2) and (a3) ​​essential to the present invention.

[0029] Agent (a) comprises the three components (a1), (a2) and (a3) ​​in a cosmetic carrier, particularly preferably an aqueous or aqueous-alcoholic cosmetic carrier. This cosmetic carrier may be in the form of a liquid, gel or cream. Pasty, solid or powdery cosmetic carriers can also be used to prepare agent (a). For hair treatment, especially hair coloring, such carriers are, for example, creams, emulsions, gels or surfactant-containing foaming solutions, such as shampoos, aerosol foams, foam formulations or other preparations suitable for application to hair.

[0030] Preferably, the cosmetic carrier contains at least 2% by weight of water, based on its weight. More preferably, the water content is greater than 10% by weight, even more preferably greater than 20% by weight, and particularly preferably greater than 40% by weight. The cosmetic carrier may also be hydroalcoholic. For the purposes of the present invention, an aqueous / alcoholic solution is one that contains 2 to 70% by weight of C 1- It is understood to mean an aqueous solution containing a C4 alcohol, in particular ethanol or isopropanol.

[0031] Alternatively, agent (a) may be anhydrous or have a low water content. In this embodiment, agent (a) contains a maximum of 5% by weight of water based on its weight. More preferably, the water content of agent (a) is less than 3% by weight, even more preferably less than 2% by weight, and particularly preferably less than 1% by weight.

[0032] <Organosilicon compounds from the group of silanes (a1)> As essential component (a1) of the present invention, composition (a) comprises at least one organosilicon compound selected from the group of silanes containing one, two or three silicon atoms.

[0033] Particularly preferably, the agent (a) comprises at least one organosilicon compound (a1) selected from silanes containing one, two or three silicon atoms, which organosilicon compound contains one or more hydroxyl and / or hydrolyzable groups per molecule.

[0034] Such organosilicon compounds (a1) or organosilanes contained in the agent (a) are reactive compounds.

[0035] Organosilicon compounds, also known as organosilicon compounds, are compounds that have either a direct silicon-carbon (Si-C) bond or carbon bonded to a silicon atom via an oxygen, nitrogen, or sulfur atom.The organosilicon compounds of the present invention are compounds containing 1 to 3 silicon atoms.Particularly preferably, the organosilicon compounds contain 1 or 2 silicon atoms.

[0036] According to IUPAC rules, the term silane refers to a group of compounds based on the structure of silicon and hydrogen. In organosilanes, the hydrogen atoms are replaced in whole or in part by organic groups, such as (substituted) alkyl and / or alkoxy groups. In organosilanes, some hydrogen atoms may be replaced by hydroxy groups.

[0037] In a particularly preferred embodiment, the method comprises applying an agent (a) to the keratinous material, said agent (a) comprising at least one organosilicon compound (a1) selected from silanes containing one, two or three silicon atoms, said organosilicon compound further comprising one or more hydroxyl or hydrolyzable groups per molecule.

[0038] In a very particularly preferred embodiment, the method is characterized in that an agent (a) is applied to the keratinous material, said agent (a) comprising at least one organosilicon compound (a1) selected from silanes containing one, two or three silicon atoms, which organosilicon compound further comprises one or more basic chemical functions and one or more hydroxyl or hydrolyzable groups per molecule.

[0039] The basic group or basic chemical functionality may be, for example, an amino group, an alkylamino group, a dialkylamino group, or a trialkylamino group, which is preferably linked to the silicon atom via a linker. Preferably, the basic group is an amino group, C 1- C6 alkylamino group or di(C 1- C6) An alkylamino group.

[0040] The hydrolyzable group is preferably C 1- It is a C6 alkoxy group, particularly an ethoxy group or a methoxy group. The hydrolyzable group is preferably directly bonded to the silicon atom. For example, when the hydrolyzable group is an ethoxy group, the organosilicon compound preferably comprises the structural unit R'R''R'''Si-O-CH2-CH3. The groups R', R'' and R''' represent the remaining three valences not used to bond to the silicon atom.

[0041] A very particularly preferred method is characterized in that agent (a) comprises at least one organosilicon compound selected from silanes having one, two or three silicon atoms, which organosilicon compound preferably contains one or more basic chemical functions and one or more hydroxyl or hydrolyzable groups per molecule.

[0042] Particularly good results have been obtained when the agent (a) comprises at least one organosilicon compound (a1) of formula (I) and / or (II).

[0043] The compounds of formulas (I) and (II) are organosilicon compounds selected from silanes having one, two, or three silicon atoms, and the organosilicon compounds contain one or more hydroxyl and / or hydrolyzable groups per molecule.

[0044] In another very particularly preferred embodiment, the method is characterized in that an agent is applied to the keratinous material (or human hair), said agent (a) being of formula (I) and / or (II): [ka] [During the ceremony, R1 and R2 are independently a hydrogen atom or C 1- represents a C6 alkyl group, L is a linear or branched divalent C 1- C 20 is an alkylene group, R3 is a hydrogen atom or C 1- represents a C6 alkyl group, R4 is C 1- represents a C6 alkyl group, a represents an integer from 1 to 3, and ·b represents an integer equal to 3-a. , [ka] [During the ceremony, R5, R5', and R5'' are independently a hydrogen atom or C 1- represents a C6 alkyl group, R6, R6' and R6'' are independently C 1- represents a C6 alkyl group, A, A', A'', A''', and A'''' are independently linear or branched C 1- C 20 represents a divalent alkylene group, R7 and R8 are independently a hydrogen atom, C 1- C6 alkyl group, hydroxy C 1- C6 alkyl group, C 2- C6 alkenyl group, amino C 1-C6 alkyl group or formula (III): [ka] [·c represents an integer from 1 to 3, d represents an integer equal to 3-c, c' represents an integer from 1 to 3, d' represents an integer equal to 3-c', c'' represents an integer from 1 to 3, d'' represents an integer equal to 3-c'', e represents 0 or 1, f represents 0 or 1, g represents 0 or 1, ·h represents 0 or 1, However, at least one subscript among e, f, g, and h is different from 0. represents a group represented by the formula: The present invention is characterized in that it contains at least one organosilicon compound (a) of the above formula.

[0045] Examples of substituents R1, R2, R3, R4, R5, R5', R5'', R6, R6', R6'', R7, R8, L, A, A', A'', A''' and A'''' in compounds of formula (I) and (II) are shown below. C 1- Examples of C6 alkyl groups include methyl, ethyl, propyl, isopropyl, n-butyl, s-butyl and t-butyl, n-pentyl and n-hexyl groups. Propyl, ethyl and methyl are preferred alkyl groups. C 2- Examples of C6 alkenyl groups are vinyl, allyl, but-2-enyl, but-3-enyl, and isobutenyl, with preferred C 2- C6 alkenyl groups are vinyl and allyl. Hydroxy C 1- Preferred examples of C6 alkyl groups include hydroxymethyl, 2-hydroxyethyl, 2-hydroxypropyl, 3-hydroxypropyl, 4-hydroxybutyl, 5-hydroxypentyl and 6-hydroxyhexyl groups; the 2-hydroxyethyl group is particularly preferred. 1-Examples of C6 alkyl groups are aminomethyl, 2-aminoethyl, and 3-aminopropyl. The 2-aminoethyl group is particularly preferred. 1- C 20 Examples of alkylene groups include methylene (-CH), ethylene (-CH-CH-), propylene (-CH-CH-CH-) and butylene (-CH-CH-CH-CH-). The propylene group (-CH-CH-CH-) is particularly preferred. Furthermore, due to the chain length of three C atoms, the divalent alkylene group may be branched. Branched divalent C 3- C 20 Alkylene groups are (-CH2-CH(CH3)-) and (-CH2-CH(CH3)-CH2-).

[0046] Formula (I): [ka] In the organosilicon compound, R1 and R2 are independently a hydrogen atom or C 1- It represents a C6 alkyl group. Highly preferably, R1 and R2 both represent a hydrogen atom.

[0047] The central part of the organosilicon compound is a linear or branched divalent C 1- C 20 A structural unit or linker -L- representing an alkylene group.

[0048] Divalent C 1- C 20 The alkylene group may be a divalent or divalent C 1- C 20 Sometimes referred to as an alkylene group, it is intended that each L group may form two bonds: one bond from the amino group R1R2N to the linker L, and the second bond between the linker L and the silicon atom.

[0049] Preferably, -L- is a linear divalent C 1- C 20More preferably, -L- represents a linear divalent alkylene group. 1- It represents a C alkylene group. Particularly preferably, -L- represents a methylene group (-CH2-), an ethylene group (-CH2-CH2-), a propylene group (-CH2-CH2-CH2-) or a butylene group (-CH2-CH2-CH2-CH2-). Very preferably, L represents a propylene group (-CH2-CH2-CH2-).

[0050] The linear propylene group (-CH2-CH2-CH2-) is alternatively called a propane-1,3-diyl group.

[0051] Formula (I): [ka] The organosilicon compounds have a silicon-containing group -Si(OR3) at one end. a (R4) b Each of them has:

[0052] Terminal structural unit - Si(OR3) a (R4) b In the formula, R3 is a hydrogen atom or C 1- represents a C6 alkyl group, and R4 is C 1- It is particularly preferred that R3 and R4 independently represent a methyl group or an ethyl group.

[0053] Here, a represents an integer between 1 and 3, and b represents an integer 3-a. If a represents the number 3, b is 0. If a represents the number 2, b is 1. If a represents the number 1, b is 2.

[0054] Particularly resistant coatings can be produced if agent (a) contains at least one organosilicon compound of formula (I) in which the radicals R3, R4 independently of one another represent a methyl or ethyl radical.

[0055] When using the method for dyeing keratinous materials, dyeings with the best wash-off fastness can be obtained if agent (a) contains at least one organosilicon compound of formula (I) in which the residues R3, R4 independently represent methyl or ethyl groups.

[0056] Furthermore, dyeings with the best wash-off fastness can be obtained if agent (a) contains at least one organosilicon compound of formula (I) in which the residue a has the value 3. In this case, the remaining b has the value 0.

[0057] In a further preferred embodiment, the agent (a) used according to the invention is characterized in that it comprises at least one organosilicon compound (a1) of formula (I), in which ·R 3、 R4 each independently represents a methyl group or an ethyl group; a represents the number 3, ·b represents the number 0.

[0058] In another preferred embodiment, the method comprises the step of: [ka] [where: Both R1 and R2 represent hydrogen atoms. L is a linear divalent C 1- a C6 alkylene group, preferably a propylene group (-CH2-CH2-CH2-) or an ethylene group (-CH2-CH2-), R3 represents a hydrogen atom, an ethyl group, or a methyl group; R4 represents a methyl group or an ethyl group, a represents the number 3, and ·b represents the number 0] The present invention is characterized in that it contains at least one organosilicon compound (a1) of the above formula.

[0059] Organosilicon compounds of formula (I) that are particularly suitable for solving the problems of the present invention are (3-aminopropyl)triethoxysilane [ka] (3-aminopropyl)trimethoxysilane [ka] 1-(3-aminopropyl)silanetriol [ka] (2-aminoethyl)triethoxysilane [ka] (2-aminoethyl)trimethoxysilane [ka] 1-(2-aminoethyl)silanetriol [ka] (3-Dimethylaminopropyl)triethoxysilane [ka] (3-Dimethylaminopropyl)trimethoxysilane [ka] 1-(3-dimethylaminopropyl)silanetriol [ka] (2-Dimethylaminoethyl)triethoxysilane [ka] (2-dimethylaminoethyl)trimethoxysilane, and / or [ka] 1-(2-dimethylaminoethyl)silanetriol [ka] is.

[0060] In a further preferred embodiment, the method comprises the step of: (3-aminopropyl)triethoxysilane (3-aminopropyl)trimethoxysilane 1-(3-aminopropyl)silanetriol (2-aminoethyl)triethoxysilane (2-aminoethyl)trimethoxysilane 1-(2-aminoethyl)silanetriol (3-Dimethylaminopropyl)triethoxysilane (3-Dimethylaminopropyl)trimethoxysilane 1-(3-dimethylaminopropyl)silanetriol (2-dimethylaminoethyl)triethoxysilane, (2-dimethylaminoethyl)trimethoxysilane, and / or 1-(2-dimethylaminoethyl)silanetriol The composition is characterized by containing at least one organosilicon compound (a1) selected from the group consisting of:

[0061] The organosilicon compounds of formula (I) above are commercially available. (3-aminopropyl)trimethoxysilane can be purchased, for example, from Sigma-Aldrich. (3-aminopropyl)triethoxysilane is also commercially available from Sigma-Aldrich.

[0062] In a further embodiment, the composition comprises a compound of formula (II): [ka] The compound (a1) contains at least one organosilicon compound.

[0063] The organosilicon compounds of formula (II) each contain a silicon-containing group (RO) c (R6) d Si- and -Si(R6') d’ (OR5') c’ at both ends.

[0064] The central portion of the molecule of formula (II) contains -(A) e -group and -[NR7-(A')] f -group and -[O-(A'')] g -group and -[NR8-(A''')] h - group is present, wherein each of the residues e, f, g, and h can independently represent the number 0 or 1, provided that at least one of the residues e, f, g, and h is other than 0. In other words, the organosilicon compound of formula (II) comprises at least one group selected from the group consisting of -(A)- and -[NR7-(A')]- and -[O-(A'')]- and -[NR8-(A''')]-.

[0065] Two terminal structural units (RO) c (R6) d Si- and -Si(R6') d’ (OR5') c’ In the formula, the residues R5, R5', and R5'' independently represent a hydrogen atom or a C1-C6 alkyl group. The R6, R6', and R6'' groups independently represent C 1- Represents a C6 alkyl group.

[0066] Here, c represents an integer between 1 and 3, and d represents an integer between 3 and c. If c represents the number 3, then d is 0. If c represents the number 2, then d is equal to 1. If c represents the number 1, then d is equal to 2.

[0067] Similarly, c' represents an integer between 1 and 3, and d' represents an integer between 3 and c'. If c' represents the number 3, then d' is equal to 0. If c' represents the number 2, then d' is equal to 1. If c' represents the number 1, then d' is equal to 2.

[0068] The most stable, or best wash-resistant, coloration was obtained when residues c and c' both had the value 3. In this case, d and d' both had the value 0.

[0069] In another preferred embodiment, the method comprises the step of: [ka] [In the formula, R5 and R5' independently represent a methyl group or an ethyl group; c and c' together represent the number 3, · d and d' both represent the number 0] The present invention is characterized in that it contains at least one organosilicon compound (a1) of the above formula.

[0070] When c and c' are both 3 and d and d' are both 0, the organosilicon compound according to the present invention has the formula (IIa): [ka] It is expressed as:

[0071] The groups e, f, g and h can independently represent the numbers 0 or 1, with at least one of e, f, g and h being different from 0. Thus, the abbreviations e, f, g and h refer to -(A) e - and -[NR7-(A')] f - and -[O-(A'')] g - and -[NR8-(A''')] h - is located in the central portion of the organosilicon compound of formula (II).

[0072] In this context, the presence of certain groups has been found to be particularly beneficial in terms of improving washing fastness. Particularly satisfactory results can be obtained when at least two of the residues e, f, g and h represent the value 1. Highly preferably, e and f both represent the value 1. Furthermore, g and h both represent the value 0.

[0073] When e and f are both 1 and g and h are both 0, the organosilicon compound according to the present invention has the formula (IIb): [ka] It is expressed as:

[0074] The groups A, A', A'', A''', and A'''' are independently straight-chain or branched divalent C1-C 20 Preferably, A, A', A'', A''', and A'''' are independently a straight-chain divalent C 1- C 20 More preferably, A, A', A'', A''', and A'''' are independently a straight-chain divalent C 1- It represents a C alkylene group. Particularly preferably, the groups A, A', A'', A''' and A'''' independently represent a methylene group (-CH2-), an ethylene group (-CH2-CH2-), a propylene group (-CH2-CH2-CH2-) or a butylene group (-CH2-CH2-CH2-CH2-). Very preferably, the groups A, A', A'', A''' and A'''' represent a propylene group (-CH2-CH2-CH2-).

[0075] Divalent C 1- C 20 The alkylene group may be a divalent or divalent C 1- C 20 They may also be referred to as alkylene groups, which means that each of the A, A', A'', A''' and A'''' groups may form two bonds.

[0076] The linear propylene group (-CH2-CH2-CH2-) may also be referred to as a propane-1,3-diyl group.

[0077] When the residue f represents the number 1, the organosilicon compound of formula (II) comprises the structural group -[NR7-(A')]-.

[0078] When the residue h represents the number 1, the organosilicon compound of formula (II) comprises the structural group -[NR8-(A''')]-.

[0079] In the formula, R7 and R8 independently represent a hydrogen atom, a C1-C6 alkyl group, a hydroxy C1-C6 alkyl group, a C2-C6 alkenyl group, an amino C1-C6 alkyl group, or a group represented by formula (III): [ka] represents a group of

[0080] Highly preferably, R7 and R8 independently represent a hydrogen atom, a methyl group, a 2-hydroxyethyl group, a 2-alkenyl group, a 2-aminoethyl group or a group of formula (III).

[0081] When the residue f represents the number 1 and the residue h represents the number 0, the organosilicon compound contains the group [NR7-(A')] but does not contain the group -[NR8-(A''')]. When the group R7 represents a group of formula (III), the agent (a) contains an organosilicon compound having three reactive silane groups.

[0082] In another preferred embodiment, the method comprises administering to said patient a compound of formula (II): [ka] [In the ceremony e and f both represent the number 1, g and h both represent the number 0, A and A' are each independently a linear divalent C 1- represents a C6 alkylene group, and R7 represents a hydrogen atom, a methyl group, a 2-hydroxyethyl group, a 2-alkenyl group, a 2-aminoethyl group or a group of formula (III) The present invention is characterized in that it contains at least one organosilicon compound (a1) of the above formula.

[0083] In a further preferred embodiment, the method is characterized in that the agent (a) comprises at least one organosilicon compound of formula (II), wherein e and f both represent the number 1, g and h both represent the number 0, A and A' independently represent a methylene group (-CH2-), an ethylene group (-CH2-CH2-) or a propylene group (-CH2-CH2-CH2), R7 represents a hydrogen atom, a methyl group, a 2-hydroxyethyl group, a 2-alkenyl group, a 2-aminoethyl group or a group of formula (III).

[0084] Organosilicon compounds of formula (II) that are well suited to solving the problem according to the invention are: 3-(Trimethoxysilyl)-N-[3-(trimethoxysilyl)propyl]-1-propanamine [ka] 3-(triethoxysilyl)-N-[3-(triethoxysilyl)propyl]-1-propanamine [ka] N-methyl-3-(trimethoxysilyl)-N-[3-(trimethoxysilyl)propyl]-1-propanamine [ka] N-methyl-3-(triethoxysilyl)-N-[3-(triethoxysilyl)propyl]-1-propanamine [ka] 2-[bis[3-(trimethoxysilyl)propyl]amino]-ethanol [ka] 2-[bis[3-(triethoxysilyl)propyl]amino]-ethanol [ka] 3-(Trimethoxysilyl)-N,N-bis[3-(trimethoxysilyl)propyl]-1-propanamine [ka] 3-(triethoxysilyl)-N,N-bis[3-(triethoxysilyl)propyl]-1-propanamine [ka] N1,N1-bis[3-(trimethoxysilyl)propyl]-1,2-ethanediamine, [ka] N1,N1-bis[3-(triethoxysilyl)propyl]-1,2-ethanediamine, [ka] N,N-bis[3-(trimethoxysilyl)propyl]-2-propen-1-amine [ka] N,N-bis[3-(triethoxysilyl)propyl]-2-propen-1-amine [ka] is.

[0085] The organosilicon compounds of formula (II) above are commercially available.

[0086] Bis(trimethoxysilylpropyl)amine, which has the CAS number 82985-35-1, can be purchased, for example, from Sigma-Aldrich.

[0087] Bis[3-(triethoxysilyl)propyl]amine, which has the CAS number 13497-18-2, can be purchased, for example, from Sigma-Aldrich.

[0088] N-methyl-3-(trimethoxysilyl)-N-[3-(trimethoxysilyl)propyl]-1-propanamine, alternatively known as bis(3-trimethoxysilylpropyl)-N-methylamine, can be purchased commercially from Sigma-Aldrich or Fluorochem.

[0089] 3-(triethoxysilyl)-N,N-bis[3-(triethoxysilyl)propyl]-1-propanamine, which has the CAS number 18784-74-2, can be purchased, for example, from Fluorochem or Sigma-Aldrich.

[0090] In a further preferred embodiment, the method is characterized in that the agent (a) comprises at least one organosilicon compound (a1) selected from the group consisting of: 3-(Trimethoxysilyl)-N-[3-(trimethoxysilyl)propyl]-1-propanamine 3-(triethoxysilyl)-N-[3-(triethoxysilyl)propyl]-1-propanamine N-methyl-3-(trimethoxysilyl)-N-[3-(trimethoxysilyl)propyl]-1-propanamine N-methyl-3-(triethoxysilyl)-N-[3-(triethoxysilyl)propyl]-1-propanamine 2-[bis[3-(trimethoxysilyl)propyl]amino]-ethanol 2-[bis[3-(triethoxysilyl)propyl]amino]-ethanol 3-(Trimethoxysilyl)-N,N-bis[3-(trimethoxysilyl)propyl]-1-propanamine 3-(triethoxysilyl)-N,N-bis[3-(triethoxysilyl)propyl]-1-propanamine N1,N1-bis[3-(trimethoxysilyl)propyl]-1,2-ethanediamine, N1,N1-bis[3-(triethoxysilyl)propyl]-1,2-ethanediamine, N,N-bis[3-(trimethoxysilyl)propyl]-2-propen-1-amine and / or ·N,N-Bis[3-(triethoxysilyl)propyl]-2-propen-1-amine.

[0091] In a further test (in particular a dyeing test), the agent (a) applied to the keratinous material in the method is of formula (IV): [ka] It has been found to be particularly advantageous if the composition contains at least one organosilicon compound of the formula:

[0092] The compound of formula (IV) is an organosilicon compound selected from silanes having one, two or three silicon atoms, which organosilicon compound contains one or more hydroxyl and / or hydrolyzable groups per molecule.

[0093] Formula (IV): [ka] [In the formula, ·R9 is C 1- C 18 represents an alkyl group, ·R 10 is a hydrogen atom or C 1- represents a C6 alkyl group, ·R 11 is C 1- represents a C6 alkyl group, k is an integer from 1 to 3, and ·m represents an integer 3-k] The organosilicon compounds may also be referred to as silanes of the alkyl-alkoxy-silane type or of the alkyl-hydroxy-silane type.

[0094] In a further preferred embodiment, the method comprises the step of: [ka] [In the formula, ·R9 is C 1- C 18 represents an alkyl group, ·R 10 is a hydrogen atom or C 1- represents a C6 alkyl group, ·R 11 is C 1- represents a C6 alkyl group, k is an integer from 1 to 3, and ·m represents an integer 3-k] The present invention is characterized in that it contains at least one organosilicon compound (a1) of the above formula.

[0095] In a further preferred embodiment, the method comprises the step of: (a) comprising, in addition to the organosilicon compound of formula (I), an organosilicon compound of formula (IV): [ka] [In the formula, ·R9 is C 1- C 18 represents an alkyl group, ·R 10 is a hydrogen atom or C 1- represents a C6 alkyl group, ·R 11 is C 1- represents a C6 alkyl group, k is an integer from 1 to 3, and ·m represents an integer 3-k] and wherein the organosilicon compound is at least one of the following:

[0096] In a further preferred embodiment, the method comprises the step of: (a) comprising, in addition to the organosilicon compound of formula (II), an organosilicon compound of formula (IV): [ka] [In the formula, ·R9 is C 1- C 18 represents an alkyl group, ·R 10 is a hydrogen atom or C1- represents a C6 alkyl group, ·R 11 is C 1- represents a C6 alkyl group, k is an integer from 1 to 3, and ·m represents an integer 3-k] and wherein the organosilicon compound is at least one of the following:

[0097] In a further preferred embodiment, the method comprises the step of: (a) comprising, in addition to the organosilicon compounds of formula (I) and / or formula (II), a compound of formula (IV): [ka] [In the formula, ·R9 is C 1- C 18 represents an alkyl group, ·R 10 is a hydrogen atom or C 1- represents a C6 alkyl group, ·R 11 is C 1- represents a C6 alkyl group, k is an integer from 1 to 3, and ·m represents an integer 3-k] and wherein the organosilicon compound is at least one of the following:

[0098] In the organosilicon compound of formula (IV), the R group is C 1- C 18 This C represents an alkyl group. 1- C 18 The alkyl group is saturated and can be linear or branched. Preferably, R is a linear C 1- C 18 R represents an alkyl group. Preferably, R represents a methyl group, an ethyl group, an n-propyl group, an n-butyl group, an n-pentyl group, an n-hexyl group, an n-octyl group, an n-dodecyl group, or an n-octadecyl group. Particularly preferably, R represents a methyl group, an ethyl group, an n-hexyl group, or an n-octyl group.

[0099] In the organosilicon compound of formula (IV), R 10 The group is a hydrogen atom or C 1- It represents a C6 alkyl group. Particularly preferably, R 10 represents a methyl group or an ethyl group.

[0100] In the organosilicon compound of formula (IV), R 11 The base is C 1- It represents a C6 alkyl group. Particularly preferably, R 11 represents a methyl group or an ethyl group.

[0101] Furthermore, k represents an integer between 1 and 3, and m represents an integer between 3 and k. When k represents the number 3, m is 0. When k represents the number 2, m is equal to 1. When k represents the number 1, m is equal to 2.

[0102] Particularly suitable coatings, i.e. dyeings with particularly good washfastness, can be obtained when an agent (a) containing at least one organosilicon compound (a1) corresponding to formula (IV) (wherein the residue k has the value 3) is used in the process, in which case the remaining m has the value 0.

[0103] Organosilicon compounds of formula (IV) which are particularly suitable for solving the problem according to the invention are: Methyltrimethoxysilane [ka] Methyltriethoxysilane [ka] Ethyltrimethoxysilane [ka] Ethyltriethoxysilane [ka] n-Hexyltrimethoxysilane [ka] n-Hexyltriethoxysilane [ka] n-Octyltrimethoxysilane [ka] n-Octyltriethoxysilane [ka] n-Dodecyltrimethoxysilane [ka] n-Dodecyltriethoxysilane [ka] and octadecyltrimethoxysilane and / or octadecyltriethoxysilane.

[0104] In another preferred embodiment, the method is characterized in that the agent (a) comprises at least one organosilicon compound (a1) of formula (IV) selected from the group consisting of: Methyltrimethoxysilane Methyltriethoxysilane Ethyltrimethoxysilane Ethyltriethoxysilane Propyltrimethoxysilane Propyltriethoxysilane Hexyltrimethoxysilane Hexyltriethoxysilane Octyltrimethoxysilane Octyltriethoxysilane Dodecyltrimethoxysilane, Dodecyltriethoxysilane, Octadecyltrimethoxysilane, and / or Octadecyltriethoxysilane.

[0105] The above-mentioned organosilicon compounds are reactive compounds. In this regard, it has been found to be advantageous if agent (a) contains one or more organosilicon compounds (a1) in a total amount of 0.1 to 20% by weight, preferably 1 to 15% by weight, particularly preferably 2 to 8% by weight, based on the total weight of agent (a).

[0106] In a further preferred embodiment, the method is characterized in that the agent (a) contains one or more organosilicon compounds (a1) in a total amount of 0.1 to 20% by weight, preferably 1 to 15% by weight, particularly preferably 2 to 8% by weight, based on the total weight of the agent (a).

[0107] To achieve particularly good dyeing results, it is particularly advantageous to use the organosilicon compounds of formula (I) and / or (II) in agent (a) in amounts within a specific range. Particularly preferably, agent (a) contains one or more organosilicon compounds of formula (I) and / or (II) in a total amount of 0.1 to 10% by weight, preferably 0.5 to 5% by weight, particularly preferably 0.5 to 3% by weight, based on the total weight of agent (a).

[0108] In a further preferred embodiment, the method is characterized in that agent (a) comprises one or more organosilicon compounds of formula (I) and / or (II) in a total amount of 0.1 to 10% by weight, preferably 0.5 to 5% by weight, particularly preferably 0.5 to 3% by weight, based on the total weight of agent (a).

[0109] Furthermore, it has been found to be particularly advantageous if the organosilicon compound of formula (IV) is also present in agent (a) in a specific range of amount. Particularly preferably, agent (a) contains one or more organosilicon compounds of formula (IV) in a total amount of 0.1 to 20% by weight, preferably 2 to 15% by weight, particularly preferably 4 to 9% by weight, based on the total weight of agent (a).

[0110] In a further preferred embodiment, the method is characterized in that agent (a) contains one or more organosilicon compounds of formula (IV) in a total amount of 0.1 to 20% by weight, preferably 2 to 15% by weight, particularly preferably 3.2 to 10% by weight, based on the total weight of agent (a).

[0111] In the course of the research leading to the present invention, it was found that even when agent (a) contains two structurally different organosilicon compounds, it is possible to obtain a particularly stable and homogeneous coating on keratinous materials.

[0112] In another preferred embodiment, the method is characterized in that agent (a) comprises at least two structurally different organosilicon compounds.

[0113] In a preferred embodiment, the method is characterized in that an agent (a) comprising at least one organosilicon compound of formula (I) and at least one organosilicon compound of formula (IV) is applied to the keratinous material.

[0114] In one obviously very particularly preferred embodiment, the method is characterized in that an agent (a) is applied to the keratinous material, comprising at least one organosilicon compound of formula (I) selected from the group consisting of (3-aminopropyl)triethoxysilane and (3-aminopropyl)trimethoxysilane, and additionally comprising at least one organosilicon compound of formula (IV) selected from the group consisting of methyltrimethoxysilane, methyltriethoxysilane, ethyltrimethoxysilane, ethyltriethoxysilane, propyltrimethoxysilane, propyltriethoxysilane, hexyltrimethoxysilane and hexyltriethoxysilane.

[0115] In a further preferred embodiment, the method comprises the step of: 0.5 to 5% by weight of at least one first organosilicon compound (a1) selected from the group consisting of (3-aminopropyl)trimethoxysilane, (3-aminopropyl)triethoxysilane, (2-aminoethyl)trimethoxysilane, (2-aminoethyl)triethoxysilane, (3-dimethylaminopropyl)trimethoxysilane, (3-dimethylaminopropyl)triethoxysilane, (2-dimethylaminoethyl)trimethoxysilane and (2-dimethylaminoethyl)triethoxysilane, and 3.2 to 10 wt. % of at least one second organosilicon compound (a1) selected from the group consisting of methyltrimethoxysilane, methyltriethoxysilane, ethyltrimethoxysilane, ethyltriethoxysilane, propyltrimethoxysilane, propyltriethoxysilane, hexyltrimethoxysilane, hexyltriethoxysilane, octyltrimethoxysilane, octyltriethoxysilane, dodecyltrimethoxysilane, dodecyltriethoxysilane, octadecyltrimethoxysilane, and octadecyltriethoxysilane. The present invention is characterized by comprising:

[0116] In this embodiment, agent (a) comprises one or more organosilicon compounds of a first group in a total amount of 0.5 to 3 wt.%, wherein the organosilicon compounds of the first group are selected from the group consisting of (3-aminopropyl)trimethoxysilane, (3-aminopropyl)triethoxysilane, (2-aminoethyl)trimethoxysilane, (2-aminoethyl)triethoxysilane, (3-dimethylaminopropyl)trimethoxysilane, (3-dimethylaminopropyl)triethoxysilane, (2-dimethylaminoethyl)trimethoxysilane, and / or (2-dimethylaminoethyl)triethoxysilane.

[0117] In this embodiment, agent (a) contains one or more organosilicon compounds of a second group in a total amount of 3.2 to 10 wt % selected from the group consisting of methyltrimethoxysilane, methyltriethoxysilane, ethyltrimethoxysilane, ethyltriethoxysilane, propyltrimethoxysilane, propyltriethoxysilane, hexyltrimethoxysilane, hexyltriethoxysilane, octyltrimethoxysilane, octyltriethoxysilane, dodecyltrimethoxysilane, dodecyltriethoxysilane, octadecyltrimethoxysilane, and octadecyltriethoxysilane.

[0118] Even the addition of a small amount of water will result in the hydrolysis of the organosilicon compound having at least one hydrolyzable group.The hydrolysis product and / or the organosilicon compound having at least one hydroxyl group can react with each other in a condensation reaction.Therefore, both the organosilicon compound having at least one hydrolyzable group and its hydrolysis and / or condensation product can be present in agent (a).When an organosilicon compound having at least one hydroxyl group is used, both the organosilicon compound having at least one hydroxyl group and their condensation product can be present in agent (a).

[0119] Condensation product is understood to be the product formed by the reaction of at least two organosilicon compounds with at least one hydroxyl group or hydrolyzable group per molecule, accompanied by the elimination of water and / or alkanol.Condensation product can be, for example, a dimer, but can also be a trimer or oligomer, and condensation product is in equilibrium with monomer.Depending on the amount of water used or consumed in hydrolysis, the equilibrium shifts from the organosilicon compound of monomer to condensation product.

[0120] Particularly good results have been obtained when organosilicon compounds of formula (I) and / or (II) are used in the method. As already mentioned above, hydrolysis / condensation begins even at traces of water, so hydrolysis and / or condensation products of organosilicon compounds (I) and / or (II) are also included in this embodiment.

[0121] <Hydroxycarboxylic acid ester (a2)> When applying agent (a) to keratinous materials, the organosilicon compound (a1), which preferably contains one or more hydroxyl or hydrolyzable groups per molecule, is first hydrolyzed and oligomerized or polymerized in the presence of water. The hydrolysis product or oligomer thus formed has a particularly high affinity for the surface of keratinous materials. If hydroxycarboxylic acid esters (a2) are also present in agent (a), they are incorporated into the resulting oligomer or polymer. If agent (a) further contains at least one coloring compound, the film formed on the keratinous materials is a colored film. Following the application of agent (a), agent (b) is applied, whereby the sealing agent contained in agent (b) seals the film, which may be colored. If agent (b) further comprises at least one coloring compound, then depending on the coloring compound used, the uncolored film produced in the first step is either sealed and colored, or the color impression of the colored film produced in the first step is enhanced or modified, or the color impression of the first film is enhanced or modified by forming a second colored film on the first colored film. If agent (b) does not comprise a coloring compound, the colored film prepared in the first step is sealed. Successive application of agents (a) and (b) produces a coloration that is particularly resistant to external influences.

[0122] As component (a2) essential to the present invention, the agent (a) used in the dyeing process contains at least one hydroxycarboxylic acid ester.

[0123] It has been shown that hydroxycarboxylic acid esters have adhesion-promoting properties with respect to at least one coloring compound and therefore make it possible to obtain particularly stable colorations.

[0124] Hydroxycarboxylic acids are carboxylic acids that contain both at least one carboxy group and one or more hydroxy groups. Hydroxycarboxylic acids are organic substances that are widespread in nature.

[0125] Suitable hydroxycarboxylic acids include, for example, α-hydroxycarboxylic acids and / or β-hydroxycarboxylic acids. Particularly suitable hydroxycarboxylic acids are selected from the group consisting of citric acid, malic acid, tartaric acid, lactic acid, gluconic acid, glycolic acid, tartronic acid, mandelic acid, salicylic acid, glyceric acid, and mixtures thereof. Particularly preferred are hydroxycarboxylic acids selected from the group consisting of citric acid, malic acid, tartaric acid, lactic acid, and mixtures thereof. Particularly preferred is the hydroxycarboxylic acid citric acid.

[0126] Thus, in a preferred embodiment, the method is characterized in that the agent (a) comprises at least one hydroxycarboxylic acid ester (a2) selected from the group consisting of citrates, malates, tartarates, lactates, gluconates, glycolates, tartronates, mandelates, salicylates, glycerates and mixtures thereof.

[0127] In a more preferred embodiment, the method is characterized in that the agent (a) comprises at least one hydroxycarboxylic acid ester (a2) selected from the group consisting of citrate esters, malate esters, tartrate esters, lactate esters and mixtures thereof.

[0128] In a highly preferred embodiment, the method is characterized in that the agent (a) comprises at least one hydroxycarboxylic acid ester (a2) selected from the group consisting of citrate esters.

[0129] Hydroxycarboxylic acid esters are esters of hydroxycarboxylic acids with aliphatic alcohols. The aliphatic alcohols are, in particular, linear or branched, saturated or unsaturated alcohols having 1 to 22 carbon atoms and 0, 1, 2, or 3 double bonds. Typical examples are, for example, methanol, ethanol, n-propanol, isopropanol, n-butanol, sec-butanol, tert-butanol, n-pentanol, capric alcohol, capryl alcohol, 2-ethylhexanol, capric alcohol, myristyl alcohol, lauryl alcohol, cetyl alcohol, palmitoleic alcohol, stearyl alcohol, oleyl alcohol, elaidyl alcohol, petroselinyl alcohol, linoleyl alcohol, linolenyl alcohol, behenyl alcohol, or erucyl alcohol. Preferably, the aliphatic alcohol is a linear or branched saturated alcohol having 1 to 6 carbon atoms, preferably selected from the group consisting of ethanol, n-propanol, isopropanol, n-butanol, sec-butanol, tert-butanol, and mixtures thereof. Highly preferably, the aliphatic alcohol is ethanol.

[0130] Thus, in a preferred embodiment, the method is characterized in that the agent (a) comprises at least one hydroxycarboxylic acid ester (a2) selected from the group consisting of citric acid triethyl ester (triethyl citrate), malic acid diethyl ester (diethyl maleate), tartaric acid diethyl ester (diethyl tartrate), lactic acid ethyl ester (ethyl lactate) and mixtures thereof.

[0131] In a preferred embodiment, the method is characterized in that the agent (a) contains at least one hydroxycarboxylic acid ester (a2) comprising citric acid triethyl ester.

[0132] Particularly good results have been obtained when agent (a) contains one or more hydroxycarboxylic acid esters (a2) in an amount of 1 to 50% by weight, preferably 5 to 35% by weight, very preferably 10 to 25% by weight, based on the total weight of agent (a).

[0133] <Diol (a3)> As essential component (a3) ​​of the present invention, the agent (a) used in the dyeing process comprises at least one diol.

[0134] Diols are compounds that contain two hydroxyl groups (-OH groups). Aliphatic diols are also known as glycols.

[0135] Preferred diols are C diols with two hydroxyl groups 2- The agent (a) is a C9 alkanol and a polyethylene glycol having 3 to 20 ethylene oxide units. The agent (a) is a C9 alkanol having at least one C 2- C9 alkanol, or at least one water-soluble polyethylene glycol having 3 to 20 ethylene oxide units, or at least one C 2- It comprises a mixture of a C9 alkanol and at least one water-soluble polyethylene glycol having 3 to 20 ethylene oxide units.

[0136] Preferably, C having two hydroxyl groups 2-The C9 alkanol is selected from ethylene glycol, 1,2-propylene glycol, 1,3-propylene glycol, 2-methyl-1,3-propanediol, 1,2-butylene glycol, 1,3-butylene glycol, 1,4-butylene glycol, 1,2-pentanediol, 1,5-pentanediol, 1,2-hexanediol, 1,6-hexanediol, 1,2-octanediol, 1,8-octanediol, cis-1,4-dimethylolcyclohexane, trans-1,4-dimethylolcyclohexane, any isomeric mixture of cis- and trans-1,4-dimethylolcyclohexane, and mixtures of these diols. Also suitable diols are diethylene glycol, dipropylene glycol, and / or PPG-10 butanediol (INCI). Suitable water-soluble polyethylene glycols are selected from PEG-3, PEG-4, PEG-6, PEG-7, PEG-8, PEG-9, PEG-10, PEG-12, PEG-14, PEG-16, PEG-18 and PEG-20, and mixtures thereof.

[0137] Among the diols, agent (a) preferably contains at least one diol selected from the group consisting of ethylene glycol, 1,2-propylene glycol, 1,3-propylene glycol, 1,2-butylene glycol, 1,3-butylene glycol, 1,4-butylene glycol, 1,2-pentanediol, 1,5-pentanediol, 1,2-hexanediol, 1,6-hexanediol, PEG-8, PEG-32 and PPG-10 butanediol (INCI).

[0138] In a highly preferred embodiment, the method is characterized in that the agent (a) comprises at least one diol (a3) ​​selected from the group consisting of ethylene glycol, 1,2-propylene glycol, and 1,3-propylene glycol.

[0139] Particularly good results have been obtained when agent (a) contains one or more diols (a3) ​​in a total amount of 1 to 50% by weight, preferably 2 to 35% by weight, very preferably 5 to 25% by weight, based on the total weight of agent (a).

[0140] <pH value of agent (a)> It has been found to be preferable if agent (a) is prepared in the form of a water-containing agent adjusted to alkaline pH, i.e., if the water content is 5% by weight or more, based on the total weight of agent (a).

[0141] To adjust the pH, agent (a) may contain at least one alkalizing agent.

[0142] Therefore, agent (a) may also contain at least one alkalizing agent to adjust the desired pH. The pH values ​​for the purposes of the present invention are those measured at a temperature of 22°C.

[0143] As alkalizing agents, agent (a) may contain, for example, ammonia, alkanolamines and / or basic amino acids.

[0144] The alkanolamines that can be used in the composition are preferably selected from primary amines having a C2-C6 alkyl parent and at least one hydroxyl group. Preferred alkanolamines are selected from the group formed by 2-aminoethan-1-ol (monoethanolamine), 3-aminopropan-1-ol, 4-aminobutan-1-ol, 5-aminopentan-1-ol, 1-aminopropan-2-ol, 1-aminobutan-2-ol, 1-aminopentan-2-ol, 1-aminopentan-3-ol, 1-aminopentan-4-ol, 3-amino-2-methylpropan-1-ol, 1-amino-2-methylpropan-2-ol, 3-aminopropane-1,2-diol, and 2-amino-2-methylpropane-1,3-diol.

[0145] Particularly preferred alkanolamines are selected from 2-aminoethan-1-ol and / or 2-amino-2-methylpropan-1-ol. Thus, one particularly preferred embodiment is characterized in that the agent comprises an alkanolamine selected from 2-aminoethan-1-ol and / or 2-amino-2-methylpropan-1-ol as alkalizing agent.

[0146] For the purposes of the present invention, an amino acid is an organic compound containing at least one protonatable amino group and at least one -COOH or one -SOH group in its structure. Preferred amino acids are aminocarboxylic acids, in particular α-(alpha)-aminocarboxylic acids and ω-aminocarboxylic acids, with α-aminocarboxylic acids being particularly preferred.

[0147] Basic amino acids are those amino acids that have an isoelectric point pI greater than 7.

[0148] The basic α-aminocarboxylic acid contains at least one asymmetric carbon atom. In the context of the present invention, both possible enantiomers can be used equally as specific compounds or as mixtures thereof, especially as racemates. However, it is particularly advantageous to use the naturally occurring preferred isomeric form, usually the L-form.

[0149] The basic amino acid is preferably selected from the group formed by arginine, lysine, ornithine and histidine, particularly preferably arginine and lysine. Thus, in a further particularly preferred embodiment, the agent is characterized in that the alkalizing agent is a basic amino acid selected from the group consisting of arginine, lysine, ornithine and / or histidine.

[0150] The agent may also contain further alkalizing agents, in particular inorganic alkalizing agents, which may be used according to the invention and are preferably selected from the group consisting of sodium hydroxide, potassium hydroxide, calcium hydroxide, barium hydroxide, sodium phosphate, potassium phosphate, sodium silicate, sodium metasilicate, potassium silicate, sodium carbonate and potassium carbonate.

[0151] Very particularly preferred alkalizing agents are ammonia, 2-aminoethan-1-ol (monoethanolamine), 3-aminopropan-1-ol, 4-aminobutan-1-ol, 5-aminopentan-1-ol, 1-aminopropan-2-ol, 1-aminobutan-2-ol, 1-aminopentan-2-ol, 1-aminopentan-3-ol, 1-aminopentan-4-ol, 3-amino-2-methylpropan-1-ol, 1-amino-2-methylpropan-2-ol, 3-aminopropane-1,2-diol, 2-amino-2-methylpropane-1,3-diol, arginine, lysine, ornithine, histidine, sodium hydroxide, potassium hydroxide, calcium hydroxide, barium hydroxide, sodium phosphate, potassium phosphate, sodium silicate, sodium metasilicate, potassium silicate, sodium carbonate and potassium carbonate.

[0152] Agent (a) is preferably adjusted to a pH value in the alkaline range, although in principle it may also be necessary to use small amounts of an acidifying agent to fine-tune the desired pH value. Suitable acidifying agents according to the invention are, for example, citric acid, lactic acid, acetic acid or also dilute mineral acids (e.g., hydrochloric acid, sulfuric acid, phosphoric acid).

[0153] However, in the course of research leading to the present invention, it was found that the presence of an alkalizing agent or adjustment to alkaline pH is essential for the formation of a durable film on keratinous materials. The presence of an excessive amount of acid can have a negative effect on the strength of the film. For this reason, it was found to be preferable to keep the amount of acid used in agent (a) as low as possible. For this reason, it is advantageous if the total amount of organic and / or inorganic acid contained in agent (a) does not exceed a certain value.

[0154] In a further preferred embodiment, the method is characterized in that the total amount of organic acids from the group consisting of citric acid, tartaric acid, malic acid and lactic acid contained in agent (a) is less than 1 wt.-%, preferably less than 0.7 wt.-%, more preferably less than 0.5 wt.-%, even more preferably less than 0.1 wt.-%, and most preferably less than 0.01 wt.-%.

[0155] In a further preferred embodiment, the method is characterized in that the total amount of inorganic acids from the group consisting of hydrochloric acid, sulfuric acid and phosphoric acid contained in agent (a) is less than 1% by weight, preferably less than 0.7% by weight, more preferably less than 0.5% by weight, even more preferably less than 0.1% by weight, very particularly preferably less than 0.01% by weight.

[0156] The maximum total amount of acid contained in agent (a) given above is always based on the total weight of agent (a).

[0157] <Agent (b)> The method for treating keratinous materials comprises, in addition to the application of agent (a), the application of agent (b), characterized in that agent (b) contains at least one sealing agent (b1).

[0158] The agent (b) is a post-treatment agent, and its application to the keratinous material treated with the agent (a) has the effect of making the coloring obtained by the method more durable. In particular, the use of the agent (b) can improve the washfastness and rubfastness of the dyeing obtained by the method.

[0159] The sealing reagent preferably comprises a compound selected from the group consisting of a film-forming polymer, an alkalizing agent, an acidifying agent and mixtures thereof.

[0160] It may be preferred that the sealing reagent comprises a film-forming polymer.

[0161] Polymer is understood to be a macromolecule that has a molecular weight of at least 1000 g / mol, preferably at least 2500 g / mol, particularly preferably at least 5000 g / mol, and is composed of identical repeating organic units.The polymer of the present invention can be a synthetically produced polymer, which is produced by polymerizing one type of monomer, or by polymerizing different types of monomers that are structurally different from each other.When a polymer is produced by polymerizing one type of monomer, it is called a homopolymer.When structurally different monomer types are used in polymerization, the resulting polymer is called a copolymer.

[0162] The maximum molecular weight of the polymer depends on the degree of polymerization (number of polymerized monomers) and the batch size, which is determined in part by the polymerization method. In the context of the present invention, the maximum molecular weight of the film-forming polymer as sealing agent (b1) is 10 7 g / mol or less, preferably 10 6 g / mol or less, particularly preferably 10 5 It is preferably g / mol or less.

[0163] For the purposes of the present invention, a film-forming polymer is a polymer capable of forming a film on a substrate, such as a keratinous substance or keratinous fiber. Film formation can be demonstrated, for example, by viewing the keratinous substance treated with the polymer under a microscope.

[0164] The film-forming polymer (b1) in the agent (b) may be hydrophilic or hydrophobic.

[0165] In the first embodiment, it may be preferable to use at least one hydrophobic film-forming polymer in agent (b).

[0166] A hydrophobic polymer is defined as a polymer that has a solubility in water of less than 1% by weight at 25° C. (760 mmHg).

[0167] For example, the solubility of a film-forming hydrophobic polymer in water can be measured as follows: Place 1 g of polymer in a beaker. Add water until the total weight reaches 100 g. Add a stir bar and heat the mixture to 25°C while stirring with a magnetic stirrer. Allow to stir for 60 minutes. Then, visually evaluate the aqueous mixture. If the polymer-water mixture cannot be visually evaluated due to high turbidity of the mixture, filter the mixture. If a percentage of undissolved polymer remains on the filter paper, the solubility of the polymer is less than 1% by weight.

[0168] Mention may in particular be made of polymers of acrylic acid type, polyurethanes, polyesters, polyamides, polyureas, cellulose polymers, nitrocellulose polymers, silicone polymers, acrylamide type polymers and polyisoprene.

[0169] Particularly suitable film-forming hydrophobic polymers are, for example, polymers from the group of copolymers of acrylic acid, copolymers of methacrylic acid, homopolymers or copolymers of acrylic acid esters, homopolymers or copolymers of methacrylic acid esters, homopolymers or copolymers of acrylic acid amides, homopolymers or copolymers of methacrylic acid amides, copolymers of vinylpyrrolidone, copolymers of vinyl alcohol, copolymers of vinyl acetate, homopolymers or copolymers of ethylene, homopolymers or copolymers of propylene, homopolymers or copolymers of styrene, polyurethanes, polyesters and / or polyamides.

[0170] In a further preferred embodiment, the composition (b) is characterized in that it comprises as sealing agent (b1) at least one film-forming hydrophobic polymer (b1) selected from the group consisting of copolymers of acrylic acid, copolymers of methacrylic acid, homopolymers or copolymers of acrylic acid esters, homopolymers or copolymers of methacrylic acid esters, homopolymers or copolymers of acrylic acid amides, homopolymers or copolymers of methacrylic acid amides, copolymers of vinylpyrrolidone, copolymers of vinyl alcohol, copolymers of vinyl acetate, homopolymers or copolymers of ethylene, homopolymers or copolymers of propylene, homopolymers or copolymers of styrene, polyurethanes, polyesters and / or polyamides.

[0171] Film-forming hydrophobic polymers selected from the group of synthetic polymers, polymers obtainable by free-radical polymerization or natural polymers have been found to be particularly suitable for solving the problem according to the invention.

[0172] Other particularly suitable film-forming hydrophobic polymers are olefins, such as cycloolefins, butadiene, isoprene or styrene, vinyl ethers, vinyl amides, at least one C-C 20 Alkyl group, aryl group or C2-C 10 It can be selected from homopolymers or copolymers of esters or amides of (meth)acrylic acid having hydroxyalkyl groups.

[0173] Other film-forming hydrophobic polymers may be selected from homopolymers or copolymers of isooctyl (meth)acrylate, isononyl (meth)acrylate, 2-ethylhexyl (meth)acrylate, lauryl (meth)acrylate, isopentyl (meth)acrylate, n-butyl (meth)acrylate, isobutyl (meth)acrylate, ethyl (meth)acrylate, methyl (meth)acrylate, tert-butyl (meth)acrylate, stearyl (meth)acrylate, hydroxyethyl (meth)acrylate, 2-hydroxypropyl (meth)acrylate, 3-hydroxypropyl (meth)acrylate and / or mixtures thereof.

[0174] Further film-forming hydrophobic polymers include (meth)acrylamides, N-alkyl(meth)acrylamides, and in particular C 2- C 18 Those having alkyl groups, such as N-ethylacrylamide, N-tert-butylacrylamide, N-octylacrylamide, N-di(C 1- C4) It can be selected from homopolymers or copolymers of alkyl (meth)acrylamides.

[0175] Other preferred anionic copolymers are, for example, copolymers of acrylic acid, methacrylic acid, or their C1-C6 alkyl esters, which are sold under the INCI Declaration "Acrylate Copolymer." A suitable commercial product is, for example, Aculyn® 33 from Rohm & Haas. However, copolymers of acrylic acid, methacrylic acid, or their C1-C6 alkyl esters and esters of ethylenically unsaturated acids with alkoxylated fatty alcohols are also preferred. Suitable ethylenically unsaturated acids are, in particular, acrylic acid, methacrylic acid, and itaconic acid; suitable alkoxylated fatty alcohols are, in particular, steareth-20 or ceteth-20.

[0176] Very particularly preferred commercially available polymers are, for example, Aculyn® 22 (acrylates / steareth-20 methacrylate copolymer), Aculyn® 28 (acrylates / beheneth-25 methacrylate copolymer), Structure 2001® (acrylates / steareth-20 itaconate copolymer), Structure 3001® (acrylates / ceteth-20 itaconate copolymer), Structure Plus® (acrylates / aminoacrylate C 10-30 Alkyl PEG-20 Itaconate Copolymer), Carbopol® 1342, 1382, Ultrez 20, Ultrez 21 (Acrylates / C 10-30 alkyl acrylate crosslinked polymer), Synthalen W 2000® (acrylate / Palmes-25 acrylate copolymer) or the commercially available Soltex OPT (acrylate / C copolymer) from Rohme und Haas. 12-22 Alkyl methacrylate copolymer).

[0177] Suitable polymers based on vinyl monomers include, for example, N-vinylpyrrolidone, vinylcaprolactam, vinyl-(C 1- C6) Homopolymers and copolymers of alkylpyrrole, vinyloxazole, vinylthiazole, vinylpyrimidine or vinylimidazole are mentioned.

[0178] Also particularly suitable are copolymers octylacrylamide / acrylates / butylaminoethyl methacrylate copolymers, such as those sold under the trade names AMPHOMER® or LOVOCRYL® 47 by NATIONAL STARCH, or the acrylates / octylacrylamide copolymers sold under the trade names DERMACRYL® LT and DERMACRYL® 79 by NATIONAL STARCH.

[0179] Suitable olefin-based polymers include, for example, homopolymers and copolymers of ethylene, propylene, butene, isoprene, and butadiene.

[0180] In another embodiment, the film-forming hydrophobic polymer may be a block copolymer containing at least one block of styrene or a styrene derivative. Such a block copolymer may be a copolymer containing one or more blocks in addition to the styrene block, such as styrene / ethylene, styrene / ethylene / butylene, styrene / butylene, styrene / isoprene, or styrene / butadiene. Corresponding polymers are commercially available from BASF under the trade name "Luvitol HSB."

[0181] Surprisingly, it has been found that particularly intense and wash-fast colorations are obtained when agent (b) comprises as sealing agent (b1) at least one film-forming polymer selected from the group consisting of homopolymers and copolymers of acrylic acid, homopolymers and copolymers of methacrylic acid, homopolymers and copolymers of acrylic acid esters, homopolymers and copolymers of methacrylic acid esters, homopolymers and copolymers of acrylic acid amides, homopolymers and copolymers of methacrylic acid amides, homopolymers and copolymers of vinylpyrrolidone, homopolymers and copolymers of vinyl alcohol, homopolymers and copolymers of vinyl acetate, homopolymers and copolymers of ethylene, homopolymers and copolymers of propylene, homopolymers and copolymers of styrene, polyurethanes, polyesters and polyamides.

[0182] In a further preferred embodiment, the method is characterized in that the agent (b) comprises as sealant (b1) at least one film-forming polymer selected from the group consisting of homopolymers and copolymers of acrylic acid, homopolymers and copolymers of methacrylic acid, homopolymers and copolymers of acrylic acid esters, homopolymers and copolymers of methacrylic acid esters, homopolymers and copolymers of acrylic acid amides, homopolymers and copolymers of methacrylic acid amides, homopolymers and copolymers of vinylpyrrolidone, homopolymers and copolymers of vinyl alcohol, homopolymers and copolymers of vinyl acetate, homopolymers and copolymers of ethylene, homopolymers and copolymers of propylene, homopolymers and copolymers of styrene, polyurethanes, polyesters and polyamides.

[0183] In a further embodiment, it may be preferred to use at least one hydrophilic film-forming polymer as sealing reagent (b1) in agent (b).

[0184] By hydrophilic polymer is meant a polymer that has a solubility in water at 25° C. (760 mmHg) of greater than 1% by weight, preferably greater than 2% by weight.

[0185] The solubility of a film-forming hydrophilic polymer in water can be measured, for example, as follows: Place 1 g of polymer in a beaker. Add water until the total weight reaches 100 g. Add a stir bar and heat the mixture to 25°C while stirring with a magnetic stirrer. Stir for 60 minutes. The aqueous mixture is then visually evaluated. A completely dissolved polymer will appear homogeneous to the naked eye. If the polymer-water mixture cannot be visually evaluated due to high turbidity of the mixture, filter the mixture. If no undissolved polymer remains on the filter paper, the solubility of the polymer is greater than 1% by weight.

[0186] Nonionic, anionic and cationic polymers can be used as film-forming hydrophilic polymers.

[0187] Suitable film-forming hydrophilic polymers may, for example, be selected from the group consisting of polyvinylpyrrolidone (co)polymers, polyvinyl alcohol (co)polymers, vinyl acetate (co)polymers, carboxyvinyl (co)polymers, acrylic acid (co)polymers, methacrylic acid (co)polymers, natural gums, polysaccharides and / or acrylamide (co)polymers.

[0188] Furthermore, it is particularly preferred to use polyvinylpyrrolidone (PVP) and / or vinylpyrrolidone-containing copolymers as the film-forming hydrophilic polymer.

[0189] In another very particularly preferred embodiment, agent (b) is characterized in that it comprises at least one film-forming hydrophilic polymer selected from the group consisting of polyvinylpyrrolidone (PVP) and copolymers of polyvinylpyrrolidone.

[0190] It is further preferred if the agent comprises polyvinylpyrrolidone (PVP) as the film-forming hydrophilic polymer. Surprisingly, the washfastness of the colorations obtained with the PVP-containing agent (b) was also very good.

[0191] Particularly suitable polyvinylpyrrolidones are available, for example, under the name Luviskol® K from BASF SE, in particular Luviskol® K 90 or Luviskol® K 85 from BASF SE.

[0192] Another obviously very suitable polyvinylpyrrolidone (PVP) is the polymer PVP K 30 sold by Ashland (ISP, POI Chemical). PVP K 30 is a polyvinylpyrrolidone that is highly soluble in cold water and has the CAS number 9003-39-8. The molecular weight of PVP K 30 is approximately 40,000 g / mol.

[0193] Other well-suited polyvinylpyrrolidones are the substances known under the trade names LUVITEC K 17, LUVITEC K 30, LUVITEC K 60, LUVITEC K 80, LUVITEC K 85, LUVITEC K 90 and LUVITEC K 115, available from BASF.

[0194] The use of film-forming hydrophilic polymers (b1) from the group of polyvinylpyrrolidone copolymers also gave particularly good and wash-fast coloring results.

[0195] In this regard, vinylpyrrolidone-vinyl ester copolymers, such as those sold under the trademark Luviskol® (BASF), may be mentioned as particularly suitable film-forming hydrophilic polymers. Luviskol® VA 64 and Luviskol® VA 73 are each vinylpyrrolidone / vinyl acetate copolymers and are particularly preferred nonionic polymers.

[0196] Of the vinylpyrrolidone-containing copolymers, styrene / VP copolymer and / or vinylpyrrolidone-vinyl acetate copolymer and / or VP / DMAPA acrylate copolymer and / or VP / vinylcaprolactam / DMAPA acrylate copolymer are very preferably used in the cosmetic composition.

[0197] Vinylpyrrolidone-vinyl acetate copolymers are sold by BASF SE under the name Luviskol® VA. For example, VP / vinylcaprolactam / DMAPA acrylate copolymers are sold by Ashland Inc. under the trade name Aquaflex® SF-40. For example, VP / DMAPA acrylate copolymers are sold by Ashland as Styleze CC-10, which is a highly preferred vinylpyrrolidone-containing copolymer.

[0198] Other suitable copolymers of polyvinylpyrrolidone may also be obtained by reacting N-vinylpyrrolidone with at least one further monomer from the group consisting of N-vinylformamide, vinyl acetate, ethylene, propylene, acrylamide, vinylcaprolactam, vinylcaprolactone and / or vinyl alcohol.

[0199] In another very particularly preferred embodiment, the agent (b) is characterized in that it comprises at least one film-forming hydrophilic polymer (b1) selected from the group consisting of polyvinylpyrrolidone (PVP), vinylpyrrolidone / vinyl acetate copolymer, vinylpyrrolidone / styrene copolymer, vinylpyrrolidone / ethylene copolymer, vinylpyrrolidone / propylene copolymer, vinylpyrrolidone / vinylcaprolactam copolymer, vinylpyrrolidone / vinylformamide copolymer and / or vinylpyrrolidone / vinyl alcohol copolymer.

[0200] Another suitable copolymer of vinylpyrrolidone is the polymer known by the INCI name Maltodextrin / VP Copolymer.

[0201] Furthermore, when non-ionic film-forming hydrophilic polymers were used as film-forming hydrophilic polymers, it was possible to obtain intensely colored keratinous materials, especially hair, with very good washfastness.

[0202] In another embodiment, the agent (b) may comprise at least one non-ionic film-forming hydrophilic polymer (b1).

[0203] According to the present invention, a nonionic polymer is a polymer that, under standard conditions in a protic solvent, such as water, does not contain structural units with permanent cationic or anionic groups that must be compensated by counterions, and remains electron-neutral. Cationic groups include, for example, quaternized ammonium groups, but do not include protonated amines. Anionic groups include, for example, carboxylic acid groups and sulfonic acid groups.

[0204] As a non-ionic film-forming hydrophilic polymer, Polyvinylpyrrolidone, Copolymers of N-vinylpyrrolidone with vinyl esters of carboxylic acids containing 2 to 18 carbon atoms, in particular copolymers of N-vinylpyrrolidone with vinyl acetate, Copolymer of N-vinylpyrrolidone, N-vinylimidazole and methacrylamide, Copolymer of N-vinylpyrrolidone, N-vinylimidazole and acrylamide, Copolymers of N,N-di(C1-C4)-alkylamino-(C2-C4)-alkylacrylamide and N-vinylpyrrolidone, Particularly preferred are agents containing at least one polymer selected from the group consisting of:

[0205] When copolymers of N-vinylpyrrolidone and vinyl acetate are used, it is again preferred if the molar ratio of structural units of the N-vinylpyrrolidone monomer to structural units of the polymer of the vinyl acetate monomer is in the range of 20:80 to 80:20, in particular 30:70 to 60:40. Suitable copolymers of vinylpyrrolidone and vinyl acetate are available, for example, from BASF SE under the trademarks Luviskol® VA37, Luviskol® VA55, Luviskol® VA64 and Luviskol® VA73.

[0206] Another particularly preferred polymer is selected from polymers having the INCI designation VP / methacrylamide / vinylimidazole copolymer, which is available, for example, from BASF SE under the trade name Luviset Clear.

[0207] Another particularly preferred non-ionic film-forming hydrophilic polymer is a copolymer of N-vinylpyrrolidone and N,N-dimethylaminiopropylmethacrylamide, which is sold, for example, by ISP under the INCI designation VP / DMAPA acrylate copolymer, e.g., under the trade name Styleze® CC 10.

[0208] The cationic polymer is a copolymer of N-vinylpyrrolidone, N-vinylcaprolactam, N-(3-dimethylaminopropyl) methacrylamide and 3-(methacryloylamino)propyl-lauryl-dimethylammonium chloride (INCI name: Polyquaternium-69), which is sold, for example, by the company ISP under the trade name AquaStyle® 300 (28-32% by weight of active substance in an ethanol-water mixture, molecular weight 350,000).

[0209] Other suitable film-forming hydrophilic polymers include: Vinylpyrrolidone-vinylimidazolium methchloride copolymers, offered under the names Luviquat FC370, FC550 and INCI names Polyquaternium-16 and FC905 and HM552, vinylpyrrolidone-vinylcaprolactam-acrylate terpolymers, such as those which have acrylic esters and acrylic amides as the third monomer building block and are commercially available, for example, under the name Aquaflex® SF40; Examples include:

[0210] Polyquaternium-11 is a reaction product of diethyl sulfate with a copolymer of vinylpyrrolidone and dimethylaminoethyl methacrylate. Suitable commercial products are available, for example, from BASF SE under the names Dehyquart® CC11 and Luviquat® PQ11PN, or from Ashland Inc. under the names Gafquat 440, Gafquat 734, Gafquat 755, or Gafquat 755N.

[0211] Polyquaternium-46 is a reaction product of vinylcaprolactam and vinylpyrrolidone with methylvinylimidazolium methosulfate, and is available, for example, from BASF SE under the name Luviquat® Hold. Polyquaternium-46 is preferably used in an amount of 1 to 5 wt. % based on the total weight of the cosmetic composition. It is particularly preferred to use Polyquaternium-46 in combination with a cationic guar compound. In practice, it is highly preferred to use Polyquaternium-46 in combination with a cationic guar compound and Polyquaternium-11.

[0212] Suitable anionic film-forming hydrophilic polymers may be, for example, acrylic acid polymers, which may be in non-crosslinked or crosslinked form. Such products are commercially available from Lubrizol under the trade names Carbopol 980, 981, 954, 2984 and 5984, or from 3V Sigma (The Sun Chemicals, Inter Resin) under the names Synthalen M and Synthalen K.

[0213] Examples of suitable film-forming hydrophilic polymers from the group of natural gums are xanthan gum, gellan gum, carob gum.

[0214] Examples of suitable film-forming hydrophilic polymers from the group of polysaccharides are hydroxyethyl cellulose, hydroxypropyl cellulose, ethyl cellulose and carboxymethyl cellulose.

[0215] Suitable film-forming hydrophilic polymers from the acrylamide group are, for example, polymers prepared from (meth)acrylamido-C1-C4-alkylsulfonic acid or salt monomers. Corresponding polymers may be selected from polymers of polyacrylamidomethanesulfonic acid, polyacrylamidoethanesulfonic acid, polyacrylamidopropanesulfonic acid, poly2-acrylamido-2-methylpropanesulfonic acid, poly-2-methylacrylamido-2-methylpropanesulfonic acid and / or poly-2-methylacrylamido-n-butanesulfonic acid.

[0216] Preferred polymers of poly(meth)acrylamide-C1-C4-alkyl-sulfonic acid are crosslinked and at least 90% neutralized. Such polymers may be crosslinked or non-crosslinked.

[0217] Crosslinked, fully or partially neutralized polymers of the poly-2-acrylamido-2-methylpropanesulfonic acid type are available under the INCI names "ammonium polyacrylamido-2-methyl-propanesulfonate" or "ammonium polyacryldimethyltauramide".

[0218] Another preferred polymer of this type is a crosslinked poly-2-acrylamido-2 methyl-propanesulfonic acid polymer, partially neutralized with ammonia, sold under the trade name Hostacerin AMPS by Clariant.

[0219] In another expressly very particularly preferred embodiment, the method is characterized in that the agent (b) comprises at least one anionic, film-forming polymer (b1).

[0220] In this regard, the best results were obtained when agent (b) contained, as sealing agent (b1), at least one film-forming polymer comprising at least one structural unit of formula (PI) and at least one structural unit of formula (P-II).

[0221] [ka] During the ceremony, M represents a hydrogen atom or ammonium (NH4), sodium, potassium, 1 / 2 magnesium, or 1 / 2 calcium.

[0222] In a further preferred embodiment, the method comprises the step of: the agent (b) comprising, as sealing reagent (b1), at least one structural unit of formula (PI) and at least one structural unit of formula (P-II): [ka] [In the formula, M represents a hydrogen atom or ammonium (NH4), sodium, potassium, 1 / 2 magnesium, or 1 / 2 calcium. The composition is characterized by comprising at least one film-forming polymer comprising:

[0223] When M represents a hydrogen atom, the structural unit of formula (PI) is based on an acrylic acid unit.

[0224] When M represents an ammonium counterion, the structural unit of formula (PI) is based on the ammonium salt of acrylic acid.

[0225] When M represents a sodium counterion, the structural unit of formula (PI) is based on the sodium salt of acrylic acid.

[0226] When M represents a potassium counterion, the structural unit of formula (PI) is based on the potassium salt of acrylic acid.

[0227] When M represents half an equivalent of a magnesium counterion, the structural unit of formula (PI) is based on the magnesium salt of acrylic acid.

[0228] When M represents half an equivalent of a calcium counterion, the structural unit of formula (PI) is based on the calcium salt of acrylic acid.

[0229] The film-forming polymer (b1) is preferably used in agent (b) in a range of amounts. In this connection, to solve the problem according to the invention, it has been shown to be particularly preferred if agent (b) contains one or more film-forming polymers (b1) in a total amount of 0.1 to 18% by weight, preferably 1 to 16% by weight, more preferably 5 to 14.5% by weight, and very particularly preferably 8 to 12% by weight, based on the total weight of agent (b).

[0230] In a further preferred embodiment, the method is characterized in that agent (b) contains one or more film-forming polymers (b1) in a total amount of 0.1 to 18% by weight, preferably 1 to 16% by weight, more preferably 5 to 14.5% by weight, very particularly preferably 8 to 12% by weight, relative to the total weight of agent (b).

[0231] The application of agent (b), which contains a film-forming polymer as a sealing agent (b1), is intended to seal and / or fix the colored film initially formed by the application of agent (a). When the second agent (b), which contains a film-forming polymer as a sealing agent (b1), is applied, the film-forming polymer (b1) is deposited in the form of an additional film on the colored film formed in the first layer. The multilayer film system thus produced exhibits improved resistance to external influences.

[0232] Here, the film produced by the agent (b) containing a film-forming polymer as sealing agent (b1) is preferably not colored itself.In this way, it can be ensured that any degree of friction of the second film formed by agent (b) does not cause any changes in the entire film system.Therefore, it is particularly preferred that agent (b) does not contain any coloring compounds or contains only a very small amount of them.

[0233] In another embodiment, the sealing reagent (b1) contains an alkalizing agent.

[0234] Particularly preferably, the alkalizing agent is ammonia, C2- It is selected from the group consisting of C6 alkanolamines, basic amino acids, alkali metal hydroxides and alkaline earth metal hydroxides.

[0235] In another particularly preferred embodiment, the method further comprises the step of: 2- The sealing agent (b1) is characterized by containing at least one alkalizing agent selected from the group consisting of C6 alkanolamines, basic amino acids, alkali metal hydroxides, alkaline earth metal hydroxides, alkali metal silicates, alkali metal metasilicates, alkaline earth metal silicates, alkaline earth metal metasilicates, alkali metal carbonates, and alkaline earth metal carbonates.

[0236] It has been found that aftertreatment with an agent (b) containing ammonia has a particularly positive effect on improving the washfastness and rubfastness properties of the dyeings obtained with this process.

[0237] In relation to a further very particularly preferred embodiment, the method is characterized in that the composition (b) comprises ammonia as sealing agent (b1).

[0238] The composition (b) contains at least one C 2- Good results were also obtained when a C6 alkanolamine was included as the sealing agent (b1).

[0239] Alkanolamines that can be used in composition (b) include, for example, C 111 having at least one hydroxyl group. 2-The alkanolamine may be selected from the group of primary amines having a C6 alkyl parent. Preferred alkanolamines are selected from the group formed by 2-aminoethan-1-ol (monoethanolamine), 3-aminopropan-1-ol, 4-aminobutan-1-ol, 5-aminopentan-1-ol, 1-aminopropan-2-ol, 1-aminobutan-2-ol, 1-aminopentan-2-ol, 1-aminopentan-3-ol, 1-aminopentan-4-ol, 3-amino-2-methylpropan-1-ol, 1-amino-2-methylpropan-2-ol, 3-aminopropane-1,2-diol, and 2-amino-2-methylpropane-1,3-diol.

[0240] In a further preferred embodiment, the method of the present invention is characterized in that the composition (b) contains as sealing reagent (b1) at least one alkalizing agent selected from the group of alkanolamines, preferably selected from the group consisting of 2-aminoethan-1-ol (monoethanolamine), 3-aminopropan-1-ol, 4-aminobutan-1-ol, 5-aminopentan-1-ol, 1-aminopropan-2-ol, 1-aminobutan-2-ol, 1-aminopentan-2-ol, 1-aminopentan-3-ol, 1-aminopentan-4-ol, 3-amino-2-methylpropan-1-ol, 1-amino-2-methylpropan-2-ol, 3-aminopropane-1,2-diol and 2-amino-2-methylpropane-1,3-diol.

[0241] Likewise, good results were obtained when composition (b) contained at least one basic amino acid as sealing agent (b1).

[0242] For the purposes of the present invention, an amino acid is an organic compound containing at least one protonatable amino group and at least one -COOH or one -SOH group in its structure. Preferred amino acids are aminocarboxylic acids, in particular α-(alpha)-aminocarboxylic acids and ω-aminocarboxylic acids, with α-aminocarboxylic acids being particularly preferred.

[0243] According to the present invention, a basic amino acid is an amino acid with an isoelectric point pI greater than 7.0.

[0244] The basic α-aminocarboxylic acid contains at least one asymmetric carbon atom. In the context of the present invention, both possible enantiomers can be used as specific compounds, or mixtures thereof, especially as racemates. However, it is particularly advantageous to use the naturally occurring preferred isomeric form, usually the L-form.

[0245] The basic amino acid is preferably selected from the group formed by arginine, lysine, ornithine and histidine, particularly preferably arginine and lysine. Thus, in a further particularly preferred embodiment, the method is characterized in that the sealing reagent (b1) is an alkalizing agent comprising a basic amino acid selected from the group consisting of arginine, lysine, ornithine and / or histidine.

[0246] In a further preferred embodiment, the method is characterized in that the agent (b) comprises as sealing reagent (b1) at least one alkalizing agent selected from the group of basic amino acids, preferably selected from the group of arginine, lysine, ornithine and histidine.

[0247] Good results have also been obtained when agent (b) contains at least one alkali metal hydroxide as sealing agent (b1). Examples of well-suited alkali metal hydroxides are sodium hydroxide and potassium hydroxide.

[0248] Good results have also been obtained when composition (b) contains, as sealing agent (b1), an alkalizing agent comprising at least one alkaline earth metal hydroxide. Suitable alkaline earth metal hydroxides include magnesium hydroxide, calcium hydroxide and barium hydroxide.

[0249] Good results have also been obtained when the agent (b) contains at least one alkali metal silicate and / or alkali metal metasilicate as sealing agent (b1). Suitable alkali metal silicates include sodium silicate and potassium silicate. Suitable alkali metal metasilicates include sodium metasilicate and potassium metasilicate.

[0250] Good results have also been obtained when agent (b) contains at least one alkali metal carbonate and / or alkaline earth metal carbonate as sealing agent (b1). Suitable alkali metal carbonates include sodium carbonate and potassium carbonate. Suitable alkaline earth metal carbonates include magnesium carbonate and calcium carbonate.

[0251] Among the group of sealing reagents (b1) described above, ammonia, C 2- C6 alkanolaminenes, basic amino acids, and alkali metal hydroxides have been found to be particularly suitable.

[0252] In a further particularly preferred embodiment, the method further comprises the step of: 2- It is characterized by containing at least one alkalizing agent selected from the group consisting of C6 alkanolamines, basic amino acids, and alkali metal hydroxides.

[0253] In another particularly preferred embodiment, the method is characterized in that the agent (b) comprises as sealing reagent (b1) at least one alkalizing agent selected from the group consisting of ammonia, 2-aminoethan-1-ol, 3-aminopropan-1-ol, 4-aminobutan-1-ol, 5-aminopentan-1-ol, 1-aminopropan-2-ol, 1-aminobutan-2-ol, 1-aminopentan-2-ol, 1-aminopentan-3-ol, 1-aminopentan-4-ol, 3-amino-2-methylpropan-1-ol, 1-amino-2-methylpropan-2-ol, 3-aminopropane-1,2-diol, 2-amino-2-methylpropane-1,3-diol, arginine, lysine, ornithine, histidine, sodium hydroxide and potassium hydroxide.

[0254] Composition (b) contains an alkalizing agent as a sealing agent (b1) in a cosmetic carrier, preferably an aqueous cosmetic carrier.

[0255] In this context, it has proven preferable if agent (b) contains 5.0 to 99.0% by weight, preferably 15.0 to 97.0% by weight, more preferably 25.0 to 97.0% by weight, even more preferably 35.0 to 97.0% by weight and very particularly preferably 45.0 to 97.0% by weight of water relative to the total weight of agent (b).

[0256] In a further embodiment, the method is characterized in that agent (b) contains 5.0 to 99.0% by weight, preferably 15.0 to 97.0% by weight, more preferably 25.0 to 97.0% by weight, even more preferably 35.0 to 97.0% by weight, and very particularly preferably 45.0 to 97.0% by weight of water, relative to the total weight of agent (b).

[0257] The alkalizing agent contained in agent (b) influences the pH value of agent (b). It has been found that certain alkaline pH values ​​have a particularly beneficial effect on the dyeing performance and fastness properties of the dyeings obtained in the process.

[0258] For this reason, the agent (b) containing an alkalizing agent as sealing reagent (b1) preferably has a pH of 7.0 to 12.0, preferably 7.5 to 11.5, more preferably 8.0 to 11.0, most preferably 8.5 to 9.5.

[0259] The pH value can be measured using conventional methods known in the state of the art, for example pH measurement by combination electrodes using a glass electrode, or by using pH test paper.

[0260] In another very particularly preferred embodiment, the method is characterized in that the agent (b) comprises an alkalizing agent as sealing reagent (b1) and has a pH of 7.0 to 12.0, preferably 7.5 to 11.5, more preferably 8.0 to 11.0, most preferably 8.5 to 9.5.

[0261] The pH values ​​for the purposes of the present invention are those measured at a temperature of 22°C.

[0262] In yet another embodiment, the sealing reagent (b1) comprises an acidifying agent.

[0263] Particularly preferably, the acidifying agent is selected from the group consisting of inorganic acids, organic acids and mixtures thereof.

[0264] Good results have been obtained when agent (b) comprises at least one inorganic acid as sealing agent (b1). Suitable inorganic acids are, for example, phosphoric acid, sulfuric acid and / or hydrochloric acid, with sulfuric acid being particularly preferred.

[0265] In a further preferred embodiment, the method is characterized in that the agent (b) comprises as sealing reagent (b1) at least one acidifying agent selected from the group consisting of inorganic acids, the inorganic acids being preferably selected from the group consisting of phosphoric acid, sulfuric acid, hydrochloric acid and mixtures thereof.

[0266] In a further even more preferred embodiment, the method is characterized in that the agent (b) comprises sulfuric acid as sealing reagent (b1).

[0267] Good results were also obtained when the agent (b) contained at least one organic acid as sealing agent (b1). The organic acid is preferably formic acid, acetic acid, propionic acid, butyric acid, isobutyric acid, valeric acid, isovaleric acid, pivalic acid, oxalic acid, malonic acid, succinic acid, glutaric acid, glyceric acid, glyoxylic acid, adipic acid, pimelic acid, corkic acid, azelaic acid, sebacic acid, propiolic acid, crotonic acid, isocrotonic acid, elaidic acid, maleic acid, fumaric acid, muconic acid, citraconic acid, mesaconic acid, camphoric acid, benzoic acid, o, m, p-phthalic acid, naphthoic acid, toluoylic acid, hydratropic acid, atropic acid, cinnamic acid, citric ... The acid may be selected from the group consisting of cinnamic acid, isonicotinic acid, nicotinic acid, bicarbamic acid, 4,4'-dicyano-6,6'-vinicotinic acid, 8-carbamoyloctanoic acid, 1,2,4-pentanetricarboxylic acid, 2-pyrrolecarboxylic acid, 1,2,4,6,7-naphthalenepentaacetic acid, malonaldehyde acid, 4-hydroxyphthalamic acid, 1-pyrazolecarboxylic acid, gallic acid or propanetricarboxylic acid, glycolic acid, gluconic acid, lactic acid, maleic acid, ascorbic acid, malic acid, tartaric acid, citric acid and mixtures thereof.

[0268] In a further preferred embodiment, the method further comprises the step of: agent (b) comprising, as sealing reagent (b1), at least one acidifying agent selected from the group consisting of organic acids, preferably formic acid, acetic acid, propionic acid, butyric acid, isobutyric acid, valeric acid, isovaleric acid, pivalic acid, oxalic acid, malonic acid, succinic acid, glutaric acid, glyceric acid, glyoxylic acid, adipic acid, pimelic acid, corkic acid, azelaic acid, sebacic acid, propiolic acid, crotonic acid, isocrotonic acid, elaeoic acid, hydroxypropyl methylcellulose ... carboxylic acid, maleic acid, fumaric acid, muconic acid, citraconic acid, mesaconic acid, camphoric acid, benzoic acid, o, m, p-phthalic acid, naphthoic acid, toluoic acid, hydratropasic acid, atropasic acid, cinnamic acid, isonicotinic acid, nicotinic acid, bicarbamic acid, 4,4'-dicyano-6,6'-vinicotinic acid, 8-carbamoyloctanoic acid, 1,2,4-pentanetricarboxylic acid, 2-pyrrolecarboxylic acid, 1,2,4,6,7-naphthalenepentaacetic acid, malonaldehyde acid, 4-hydroxyphthalamic acid, 1-pyrazolecarboxylic acid, gallic acid or propanetricarboxylic acid, glycolic acid, gluconic acid, lactic acid, maleic acid, ascorbic acid, malic acid, tartaric acid, citric acid and mixtures thereof.

[0269] In a further even more preferred embodiment the method is characterized in that agent (b) comprises acetic acid as sealing reagent (b1).

[0270] Suitable acidifying agents also include methanesulfonic acid and / or 1-hydroxyethane-1,1-diphosphonic acid.

[0271] In the group of the above sealing agents (b1) in the form of acidifying agents, sulfuric acid and / or acetic acid have proven to be particularly suitable.

[0272] In a further particularly preferred embodiment, the method is characterized in that the agent (b) comprises, as sealing reagent (b1), at least one acidifying agent selected from the group consisting of sulfuric acid, acetic acid and mixtures thereof.

[0273] Composition (b) comprises an acidifying agent as a sealing agent (b1) in a cosmetic carrier, preferably an aqueous cosmetic carrier.

[0274] The acidifying agent contained in agent (b) has an influence on the pH of agent (b). It has been found that an acidic pH value also has a beneficial effect on the dyeing performance and fastness properties of the dyeings obtained in the process.

[0275] For this reason, the agent (b) containing an acidifying agent as sealing reagent (b1) preferably has a pH of 2.0 to 6.5, preferably 3.0 to 6.0, more preferably 4.0 to 6.0, most preferably 4.5 to 5.5.

[0276] The pH value can be measured using conventional methods known in the state of the art, for example pH measurement by combination electrodes using a glass electrode, or by using pH test paper.

[0277] In another very particularly preferred embodiment, the method is characterized in that the agent (b) comprises an acidifying agent as sealing reagent (b1) and has a pH of 2.0 to 6.5, preferably 3.0 to 6.0, more preferably 4.0 to 6.0, most preferably 4.5 to 5.5.

[0278] For the purposes of the present invention, pH values ​​are those measured at a temperature of 22°C.

[0279] <Other ingredients in agents (a) and (b)> The aforementioned agents (a) and (b) may further comprise one or more optional ingredients. However, it is essential for the present invention that at least one of the agents (a) and (b) further comprises at least one colorant compound selected from the group consisting of pigments and / or direct dyes.

[0280] In addition to at least one organosilicon compound selected from the group consisting of silanes (a1) having 1, 2 or 3 silicon atoms, at least one hydroxycarboxylic acid ester (a2) and at least one diol (a3), the agent (a) may preferably further comprise at least one coloring compound selected from the group consisting of pigments and / or direct dyes.

[0281] Alternatively, it may be preferred that the agent (b) further comprises, in addition to the sealing agent (b1), at least one coloring compound selected from the group consisting of pigments and / or direct dyes.

[0282] In an equally preferred embodiment of the method, agent (a) and agent (b) each further comprise at least one coloring compound selected from the group consisting of pigments and / or direct dyes.

[0283] The use of pigments, irrespective of the agents (a) and / or (b), has proven particularly preferred in this context.

[0284] In another very particularly preferred embodiment, the method is characterized in that agent (a) and / or agent (b) further comprise at least one color-imparting compound selected from the group consisting of pigments.

[0285] A pigment within the meaning of the present invention is a coloring compound having a solubility in water of less than 0.5 g / L, preferably less than 0.1 g / L, and even more preferably less than 0.05 g / L at 25°C. Water solubility can be determined, for example, using the following method: weigh 0.5 g of pigment into a beaker; add a stirring bar; then add 1 liter of distilled water; heat the mixture to 25°C for 1 hour while stirring with a magnetic stirrer. If undissolved components of the pigment are still visible in the mixture after this period, the solubility of the pigment is less than 0.5 g / L. If the pigment-water mixture cannot be visually evaluated due to the high strength of the finely dispersed pigment, filter the mixture. If some undissolved pigment remains on the filter paper, the solubility of the pigment is less than 0.5 g / L.

[0286] Suitable pigments can be of inorganic and / or organic origin.

[0287] In a preferred embodiment, the method is characterized in that agent (a) and / or agent (b) further comprise at least one coloring compound selected from the group consisting of inorganic and / or organic pigments.

[0288] Preferred pigments are selected from synthetic or natural inorganic pigments. Naturally occurring inorganic pigments can be made from, for example, chalk, ochre, umber, green earth, burnt terra di sienna, or graphite. In addition, inorganic pigments can include black pigments such as black iron oxide, colored pigments such as ultramarine or red iron oxide, fluorescent or phosphorescent pigments.

[0289] Particularly suitable are colored metal oxides, hydroxides and oxide hydrates, mixed-phase pigments, sulfur-containing silicates, silicates, metal sulfides, complex metal cyanides, metal sulfates, chromates, and / or molybdates. Particularly preferred pigments are black iron oxide (CI 77499), yellow iron oxide (CI 77492), red and brown iron oxide (CI 77491), manganese violet (CI 77742), ultramarine blue (sodium aluminum sulfosilicate, CI 77007, Pigment Blue 29), chromium oxide hydrate (CI 77289), iron blue (ferric ferrocyanide, CI 77510), and / or carmine (cochineal).

[0290] Also particularly preferred pigments are colored pearlescent pigments. These are usually mica and / or mica-based and may be coated with one or more metal oxides. Mica belongs to the layered silicates. The main representatives of these silicates are muscovite, phlogopite, paragonite, biotite, lepidolite, and margarite. To produce pearlescent pigments in combination with metal oxides, mica, mainly muscovite or phlogopite, is coated with metal oxide.

[0291] A preferred method is therefore characterized in that agent (a) and / or agent (b) further comprise at least one coloring compound selected from the group of pigments selected from the group of colored metal oxides, metal hydroxides, metal oxide hydrates, silicates, metal sulfides, complex metal cyanides, metal sulfates, bronze pigments, and / or colored pigments based on natural or synthetic mica coated with at least one metal oxide and / or metal oxychloride.

[0292] In a further preferred embodiment, the method is characterized in that agent (a) and / or agent (b) contain at least one coloring compound selected from the group of pigments selected from natural or synthetic mica-based pigments reacted with one or more metal oxides selected from the group consisting of titanium dioxide (CI 77891), black iron oxide (CI 77499), yellow iron oxide (CI 77492), red and / or brown iron oxides (CI 77491, CI 77499), manganese violet (CI 77742), ultramarine blue (sodium aluminum sulfosilicate, CI 77007, Pigment Blue 29), chromium oxide hydrate (CI 77289), chromium oxide (CI 77288), and / or iron blue (ferric ferrocyanide, CI 77510).

[0293] A preferred suitable pigment based on synthetic mica is, for example, Timiron® SynWhite Satin from Merck.

[0294] Other suitable pigments are metal oxide-coated platelet-shaped borosilicate-based pigments, such as those coated with tin oxide, iron oxide(s), silicon dioxide, and / or titanium dioxide. Such borosilicate-based pigments are available, for example, from Eckart under the name MIRAGE or from BASF SE under the name Reflecks.

[0295] In a preferred embodiment, agent (a) is characterized in that it comprises at least one coloring compound selected from the group consisting of inorganic pigments, black iron oxide (CI 77499), yellow iron oxide (CI 77492), red iron oxide (CI 77491) and mixtures thereof.

[0296] Yellow iron oxide (or iron oxide yellow) is the name for FeO(OH), listed as CI Pigment Yellow 42 in the Color Index.

[0297] Red iron oxide (or iron oxide red) is the name for Fe2O3, listed in the Color Index as CI Pigment Red 101. Depending on the particle size, red iron oxide pigments can be adjusted from very yellowish (small particle size) to very bluish (agglomerated particles).

[0298] Black iron oxide (or iron oxide black) is listed as CI Pigment Black 11 in the Color Index. Iron oxide black is ferromagnetic. The chemical formula is often given as Fe3O4, but in fact there exists a solid solution of Fe2O3 and FeO with an inverse spinel structure. Further black pigments can be obtained by doping with chromium, copper, or manganese.

[0299] Brown, black iron oxide (or iron oxide brown) is usually not a defined pigment but refers to a mixture of yellow, red, and / or black iron oxides.

[0300] Iron oxide pigments typically have particle sizes in the range of 2,000 to 4,000 nm. For some applications, particularly cosmetic purposes, it may be advantageous to use iron oxide pigments with significantly smaller particle sizes. For example, hair dyes containing iron oxide pigments with particle sizes in the range of 100 to 1,000 nm, more preferably 150 to 700 nm, exhibit better durability and gray coverage.

[0301] Therefore, even more preferred is an agent (a) which further comprises a coloring compound selected from the group consisting of pigments and / or direct dyes, wherein the coloring compound comprises a pigment selected from the group consisting of iron oxide pigments, the iron oxide pigment having a particle size in the range of 100 to 1,000 nm, more preferably 150 nm to 700 nm.

[0302] Examples of particularly suitable pigments are commercially available under the trade names Rona®, Colorona®, Xirona®, Dichrona®, and Timiron® from Merck, Ariabel® and Unipure® from Sensient, Prestige® or SynCrystal from Eckart Cosmetic Colors, Flamenco®, Cellini®, Cloisonne®, Duocrome®, Gemtone®, Timica®, MultiReflections, Chione from BASF SE, and Sunshine® from Sunstar.

[0303] Very particularly preferred pigments having the trade name Colorona® are, for example: Colorona Copper, Merck, Mica, CI77491 (Iron Oxide) Colorona Copper Fine, Merck, Mica, CI 77491 (Iron Oxides) Colorona Passion Orange, Merck, Mica, CI77491 (Iron Oxide), Alumina Colorona Patina Silver, Merck, Mica, CI 77499 (Iron Oxides), CI 77891 (Titanium Dioxide) Colorona RY, Merck, CI 77891 (Titanium Dioxide), Mica, CI 75470 (Carmine) Colorona Oriental Beige, Merck, Mica, CI 77891 (Titanium Dioxide), CI 77491 (Iron Oxides) Colorona Dark Blue, Merck, mica, titanium dioxide, ferric ferrocyanide Colorona Chameleon, Merck, CI77491 (iron oxide), mica Colorona Aboriginal Amber, Merck, Mica, CI 77499 (Iron Oxides), CI 77891 (Titanium Dioxide) Colorona Blackstar Blue, Merck, CI 77499 (iron oxide), mica Colorona Patagonian Purple, Merck, Mica, CI 77491 (Iron Oxide), CI 77891 (Titanium Dioxide), CI 77510 (Ferric Ferrocyanide) Colorona Red Brown, Merck, Mica, CI 77491 (Iron Oxides), CI 77891 (Titanium Dioxide) Colorona Russet, Merck, CI 77491 (Titanium Dioxide), Mica, CI 77891 (Iron Oxides) Colorona Imperial Red, Merck, mica, titanium dioxide (CI 77891), D&C RED NO. 30 (CI 73360) Colorona Majestic Green, Merck, CI77891 (Titanium Dioxide), Mica, CI77288 (Chromium Oxide Green) Colorona Light Blue, Merck, Mica, Titanium Dioxide (CI 77891), Ferric Ferrocyanide (CI 77510) Colorona Red Gold, Merck, Mica, CI 77891 (Titanium Dioxide), CI 77491 (Iron Oxides) Colorona Gold Plus MP 25, Merck, Mica, Titanium Dioxide (CI 77891), Iron Oxide (CI 77491) Colorona Carmine Red, Merck, mica, titanium dioxide, carmine Colorona Blackstar Green, Merck, Mica, CI 77499 (Iron Oxides) Colorona Bordeaux, Merck, Mica, CI 77491 (Iron Oxide) Colorona Bronze, Merck, Mica, CI77491 (Iron Oxide) Colorona Bronze Fine, Merck, Mica, CI 77491 (Iron Oxide) Colorona Fine Gold MP 20, Merck, Mica, CI 77891 (Titanium Dioxide), CI 77491 (Iron Oxides) Colorona Sienna Fine, Merck, CI77491 (iron oxide), mica Colorona Sienna, Merck, Mica, CI77491 (Iron Oxide) Colorona Precious Gold, Merck, Mica, CI 77891 (Titanium Dioxide), Silica, CI 77491 (Iron Oxides), Tin Oxide Colorona Sun Gold Sparkle MP 29, Merck, Mica, Titanium Dioxide, Iron Oxides, Mica, CI77891, CI77491(EU) Colorona Mica Black, Merck, CI 77499 (Iron Oxides), Mica, CI 77891 (Titanium Dioxide) Colorona Bright Gold, Merck, Mica, CI 77891 (Titanium Dioxide), CI 77491 (Iron Oxides) Colorona Blackstar Gold, Merck, Mica, CI 77499 (Iron Oxides), Colorona® SynCopper, Merck, synthetic fluorphlogopite (and) iron oxide, Colorona® SynBronze, Merck, synthetic fluorphlogopite (and) iron oxide.

[0304] Further particularly preferred pigments having the trade name Xirona® are, for example: Xirona® Golden Sky, Merck, Silica, CI77891 (Titanium Dioxide), Tin Oxide Xirona® Caribbean Blue, Merck, mica, CI 77891 (titanium dioxide), silica, tin oxide Xirona® Kiwi Rose, Merck, Silica, CI 77891 (Titanium Dioxide), Tin Oxide Xirona® Magic Mauve, Merck, Silica, CI77891 (Titanium Dioxide), Tin Oxide Xirona® Le Rouge, Merck, iron oxide (and) silica.

[0305] Additionally, particularly preferred pigments having the trade name Unipure® are, for example: Unipure Red LC 381 EM, Sensient CI77491 (iron oxide), silica Unipure Black LC 989 EM, Sensient, CI77499 (iron oxide), silica Unipure Yellow LC 182 EM, Sensient, CI77492 (iron oxide), silica.

[0306] Particularly preferred pigments also have the trade name Flamenco®, for example: Flamenco® Summit Turquoise T30D, BASF, titanium dioxide (and) mica, Flamenco® Super Violet 530Z, BASF, mica (and) titanium dioxide.

[0307] In a further embodiment, agent (a) and / or agent (b) used in the method may contain one or more coloring compounds selected from the group of organic pigments.

[0308] The organic pigments are correspondingly insoluble organic dyes or colorants, which may be selected, for example, from the group of nitroso, nitro-azo, xanthene, anthraquinone, isoindolinone, isoindoline, quinacridone, perinone, perylene, diketopyrrolopyrrole, indigo, thioindide, dioxazine, and / or triarylmethane compounds.

[0309] Particularly suitable organic pigments are, for example, carmine, quinacridone, phthalocyanine, sorghum, blue pigments having the color index numbers CI 42090, CI 69800, CI 69825, CI 73000, CI 74100, CI 74160, yellow pigments having the color index numbers CI 11680, CI 11710, CI 15985, CI 19140, CI 20040, CI 21100, CI 21108, CI 47000, CI 47005, green pigments having the color index numbers CI 61565, CI 61570, CI 74260, color index numbers CI 61570, CI 61570, CI 61580, CI 61590, CI 61591, CI 61592, CI 61593, CI 61594, CI 61595, CI 61596, CI 61597, CI 61598, CI 6159 ...0, CI 61591, CI 61592, CI 61593, CI 61594, CI 61595, CI 61596, CI 61597, CI 61598, CI 61599, CI 61599, CI 61599, CI 61599, CI 61599, CI orange pigments having Color Index Numbers CI11725, CI15510, CI45370, CI71105; red pigments having Color Index Numbers CI12085, CI12120, CI12370, CI12420, CI12490, CI14700, CI15525, CI15580, CI15620, CI15630, CI15800, CI15850, CI15865, CI15880, CI17200, CI26100, CI45380, CI45410, CI58000, CI73360, CI73915, and / or CI75470.

[0310] In another particularly preferred embodiment, the method further comprises the step of: providing agent (a) and / or agent (b) in a composition selected from the group consisting of carmine, quinacridone, phthalocyanine, sorghum, blue pigments having color index numbers CI 42090, CI 69800, CI 69825, CI 73000, CI 74100, CI 74160, yellow pigments having color index numbers CI 11680, CI 11710, CI 15985, CI 19140, CI 20040, CI 21100, CI 21108, CI 47000, CI 47005, green pigments having color index numbers CI 61565, CI 61570, CI 74260, green pigments having color index numbers CI 11725, CI 15985, CI 19140, CI 20040, CI 21100, CI 21108, CI 47000, CI 47005, 15510, CI45370, CI71105, orange pigments having Color Index Numbers CI12085, CI12120, CI12370, CI12420, CI12490, CI14700, CI15525, CI15580, CI15620, CI15630, CI15800, CI15850, CI15865, CI15880, CI17200, CI26100, CI45380, CI45410, CI58000, CI73360, CI73915, CI75470, and mixtures thereof.

[0311] The organic pigment may be a colored paint. According to the present invention, the term "colored varnish" refers to particles containing a layer of absorbed dye, and the particles and dye units are insoluble under the above conditions. The particles may be, for example, inorganic substrates, such as aluminum, silica, calcium borosilicate, calcium aluminum borosilicate, or aluminum.

[0312] As the colored varnish, for example, alizarin color varnish can be used.

[0313] In a further embodiment of the method, agent (a) and / or agent (b) may contain one or more coloring compounds selected from the group of organic pigments.

[0314] In another particularly preferred embodiment, the method further comprises the step of: providing agent (a) and / or agent (b) in a composition selected from the group consisting of carmine, quinacridone, phthalocyanine, sorghum, blue pigments having Color Index Numbers CI 42090, CI 69800, CI 69825, CI 73000, CI 74100, CI 74160, yellow pigments having Color Index Numbers CI 11680, CI 11710, CI 15985, CI 19140, CI 20040, CI 21100, CI 21108, CI 47000, CI 47005, green pigments having Color Index Numbers CI 61565, CI 61570, CI 74260, green pigments having Color Index Numbers CI 11725, CI 15985, CI 19140, CI 20040, CI 21100, CI 21108, CI 47000, CI 47005, red pigments having Color Index Numbers CI 61565, CI 61570, CI 74260, red pigments having Color Index Numbers CI 11725, CI 15985, CI 19140, CI 20040, CI 21100, CI 21108, CI 47000, CI 47005, green pigments having Color Index Numbers CI 11725, CI 15985, CI 19140, CI 20040, CI 21100, CI 21108, CI 47000, CI 4 and orange pigments having Color Index numbers CI15510, CI45370, CI71105, and red pigments having Color Index numbers CI12085, CI12120, CI12370, CI12420, CI12490, CI14700, CI15525, CI15580, CI15620, CI15630, CI15800, CI15850, CI15865, CI15880, CI17200, CI26100, CI45380, CI45410, CI58000, CI73360, CI73915, and / or CI75470.

[0315] Suitable colored compounds selected from the group of pigments are also inorganic and / or organic pigments modified with a polymer, which can, for example, increase the affinity of the pigment for the respective material of at least one layer.

[0316] In agent (a) and / or agent (b), so-called metallic effect pigments can also be used as color-imparting compounds.

[0317] In particular, metallic effect pigments may include pigments based on lamellar substrate platelets, pigments based on lenticular substrate platelets, and / or pigments based on substrate platelets, including "vacuum metallized pigments" (VMPs). In these metallic effect pigments, the substrate platelets comprise a metal, preferably aluminum or an alloy. Metallic effect pigments based on metal substrate platelets preferably have a coating that acts, inter alia, as a protective layer.

[0318] Suitable metallic effect pigments include, for example, the pigments Alegrace® Marvelous, Alegrace® Gorgeous, or Alegrace® Aurous from Schlenk Metallic Pigments.

[0319] Also suitable metallic effect pigments are the aluminium-based pigments from the SILVERDREAM series and pigments based on aluminium or copper / zinc-containing metal alloys from Eckart's VISIONAIRE series.

[0320] It is particularly preferred to use the above-mentioned pigments in agents (a) and / or (b) due to their excellent light and temperature stability. Furthermore, it is also preferred if the pigments used have a specific particle size. Such particle size ensures uniform dispersion of the pigment in the resulting polymer film, while avoiding a rough hair or skin feel after application of the cosmetic product. Therefore, according to the present invention, at least one pigment has an average particle size D of 1 to 50 μm, preferably 5 to 45 μm, preferably 10 to 40 μm, and in particular 14 to 30 μm. 50 It is advantageous if the average particle size D 50 can be measured, for example, using dynamic light scattering (DLS).

[0321] In a further preferred embodiment, the method is characterized in that agent (a) further comprises one or more color-imparting compounds in the form of pigments in a total amount of 0.01 to 10% by weight, preferably 0.1 to 8% by weight, more preferably 0.2 to 6% by weight, most preferably 0.5 to 4.5% by weight, based on the total weight of agent (a).

[0322] In a further preferred embodiment, the method is characterized in that agent (b) further comprises one or more color-imparting compounds in the form of pigments in a total amount of 0.01 to 10% by weight, preferably 0.1 to 8% by weight, more preferably 0.2 to 6% by weight, and very particularly preferably 0.5 to 4.5% by weight, based on the total weight of agent (b).

[0323] The coloring compounds used in the present method, agent (a) and / or agent (b), may contain one or more direct dyes. Direct-acting dyes are dyes that act directly on hair and do not require an oxidation step to form color. Direct dyes are typically nitrophenylenediamines, nitroaminophenols, azo dyes, anthraquinones, triarylmethane dyes, or indophenols.

[0324] The direct dyes according to the present invention have a solubility in water at 25° C. (760 mmHg) of greater than 0.5 g / L and are therefore not considered pigments.

[0325] Preferably, the direct dyes according to the present invention have a solubility in water at 25° C. (760 mmHg) of greater than 1 g / L.

[0326] Direct dyes can be classified into anionic direct dyes, cationic direct dyes and non-ionic direct dyes.

[0327] In a further preferred embodiment, the method is characterized in that agent (a) and / or agent (b) further comprise, as coloring compound, at least one anionic direct dye, cationic direct dye and / or non-ionic direct dye.

[0328] In a further preferred embodiment, the method is characterized in that agent (a) and / or agent (b) further comprise at least one coloring compound selected from the group consisting of anionic direct dyes, nonionic direct dyes and / or cationic direct dyes.

[0329] Suitable cationic direct dyes include Basic Blue 7, Basic Blue 26, HC Blue 16, Basic Violet 2 and Basic Violet 14, Basic Yellow 57, Basic Red 76, Basic Blue 16, Basic Blue 347 (Cationic Blue 347 / Dystar), HC Blue No. 16, Basic Blue 99, Basic Brown 16, Basic Brown 17, Basic Yellow 57, Basic Yellow 87, Basic Orange 31, Basic Red 51 and Basic Red 76.

[0330] Examples of nonionic direct dyes that can be used include nonionic nitro and quinone dyes and neutral azo dyes. Suitable nonionic direct dyes are those available under the following international names or trade names: HC Yellow 2, HC Yellow 4, HC Yellow 5, HC Yellow 6, HC Yellow 12, HC Orange 1, Disperse Orange 3, HC Red 1, HC Red 3, HC Red 10, HC Red 11, HC Red 13, HC Red BN, HC Blue 2, HC Blue 11, HC Blue 12, Disperse Blue 3, HC Violet 1, Disperse Violet 1, Disperse Violet 4, Disperse Black 9, as well as known compounds such as 1,4-diamino-2-nitrobenzene, 2-amino-4-nitrophenol, 1,4-bis-(2-hydroxyethyl)-amino-2-nitrobenzene, and 3-nitro-4-(2-hydroxyethyl)-aminophenol. 2-(2-hydroxyethyl)amino-4,6-dinitrophenol, 4-[(2-hydroxyethyl)amino]-3-nitro-1-methylbenzene, 1-amino-4-(2-hydroxyethyl)-amino-5-chloro-2-nitrobenzene, 4-amino-3-nitrophenol, 1-(2'-ureidoethyl)amino-4-nitrobenzene, 2-[(4-amino-2-nitrophenyl)amino]benzoic acid, 6-nitro-1,2,3,4-tetrahydroquinoxaline, 2-hydroxy-1,4-naphthoquinone, picramic acid and its salts, 2-amino-6-chloro-4-nitrophenol, 4-ethylamino-3-nitrobenzoic acid, and 2-chloro-6-ethylamino-4-nitrophenol.

[0331] In the course of the research leading to the present invention, it was found that dyeings of particularly high colour strength can be produced with agents (a) and / or (b) which comprise at least one anionic direct dye.

[0332] Thus, in a clearly very particularly preferred embodiment, the method is characterized in that agent (a) and / or agent (b) further comprise at least one anionic direct dye as colorant compound.

[0333] Anionic direct dyes, also known as acid dyes, are direct dyes containing at least one carboxylic acid (-COOH) and / or sulfonic acid (-SO3H) moiety. Depending on the pH, the protonated forms of the carboxylic acid or sulfonic acid moiety (-COOH, -SO3H) are in equilibrium with their deprotonated forms (-COO-, -SO3-). As the pH decreases, the proportion of the protonated forms increases. When direct dyes are used as their salts, the carboxylic acid or sulfonic acid groups are present in their deprotonated form and are neutralized with the corresponding stoichiometrically equivalent cation to maintain electrical neutrality. Acid dyes can also be used in the form of their sodium and / or potassium salts.

[0334] The acid dyes according to the present invention have a solubility in water (760 mmHg) at 25°C of greater than 0.5 g / L and are therefore not considered pigments. Preferably, the acid dyes according to the present invention have a solubility in water (760 mmHg) at 25°C of greater than 1 g / L.

[0335] Alkaline earth salts (e.g., calcium and magnesium salts) or aluminum salts of acid dyes often have lower solubilities than the corresponding alkali salts. If the solubility of these salts is less than 0.5 g / L (25°C, 760 mmHg), they are not included in the definition of direct dyes.

[0336] A key feature of acid dyes is their ability to form an anionic charge, the resulting carboxylic or sulfonic acid group usually being attached to a variety of chromophore systems, such as those found in the structures of nitrophenylenediamines, nitroaminophenols, azo dyes, anthraquinone dyes, triarylmethane dyes, xanthan dyes, rhodamine dyes, oxazine dyes, and / or indophenol dyes.

[0337] Therefore, in one embodiment, a method for dyeing keratinous materials is preferred, characterized in that agent (a) and / or agent (b) further comprise, as coloring compound, at least one anionic direct dye selected from the group consisting of nitrophenylenediamines, nitroaminophenols, azo dyes, anthraquinone dyes, triarylmethane dyes, xanthene dyes, rhodamine dyes, oxazine dyes and / or indophenol dyes, each dye selected from the above group having at least one carboxylic acid group (-COOH), sodium carboxylate group (-COONa), potassium carboxylate group (-COOK), sulfonic acid group (-SO3H), sodium sulfonate group (-SO3Na) and / or potassium sulfonate group (-SO3K).

[0338] For example, one or more compounds from the following groups may be selected as particularly suitable acid dyes: Acid Yellow 1 (D&C Yellow 7, Citronin A, Ext. D&C Yellow No. 7, Japan Yellow 403, CI 10316, COLIPA no. B001), Acid Yellow 3 (COLIPA no. 54, D&C Yellow No. 10, Quinoline Yellow, E104, Food Yellow 13), Acid Yellow 9 (CI 13015), Acid Yellow 17 (CI 18965), Acid Yellow 23 (COLIPA no. 29, Covacap Jaune W 1100 (LCW), Sicovit Tartrazine 85 E 102 (BASF), Tartrazine, Food Yellow 4, Japan Yellow 4, FD&C Yellow No. 5), Acid Yellow 36 (CI 13065), Acid Yellow 121 (CI 18690), Acid Orange 6 (CI 14270), Acid Orange 7 (2-Naphthol orange, Orange II, CI 15510, D&C Orange 4, COLIPA no. 015), Acid Orange 10 (CI 16230; Orange G sodium salt), Acid Orange 11 (CI 45370), Acid Orange 15 (CI 50120), Acid Orange 20 (CI 14600), Acid Orange 24 (BROWN 1; CI 20170; KATSU 201; sodium salt-free; Brown No. 201; RESORCIN BROWN; ACID ORANGE 24; Japan Brown 201; D&C Brown No. 1), Acid Red 14 (CI 14720), Acid Red 18 (E124, Red 18; CI 16255), Acid Red 27(E 123, CI 16185, C-Red 46, True Red D, FD&C Red Nr.2、Food Red 9、Naphthol Red S)、Acid Red 33(Red 33、Fuchsia Red、D&C Red 33、CI 17200)、Acid Red 35(CI C.I.18065)、Acid Red 51(CI 45430、Pyrosine B、Tetraiodofluorescein、Eosin J、Iodeosin)、Acid Red 52(CI 45100、Food Red 106、Solar Rhodamine B、Acid Rhodamine B、Red n°106 Pontacyl Brilliant Pink)、Acid Red 73(CI 27290)、Acid Red 87(Eosin、CI 45380)、Acid Red 92(COLIPA n℃53、CI 45410)、Acid Red 95(CI 45425、Erythtosine,Simacid Erythrosine Y)、Acid Red 184(CI 15685)、Acid Red 195、Acid Violet 43(Jarocol Violet 43、Ext. D&C Violet n°2、C.I. 60730、COLIPA n°063)、Acid Violet 49(CI 42640)、Acid Violet 50(CI 50325)、Acid Blue 1(Patent Blue、CI 42045)、Acid Blue 3(Patent Blue V、CI 42051)、Acid Blue 7(CI 42080)、Acid Blue 104(CI 42735)、Acid Blue 9(E 133、Patent Blue AE、Amido Blue AE、Erioglaucin A、CI 42090、C.I. Food Blue 2)、Acid Blue 62(CI 62045)、Acid Blue 74(E 132、CI 73015)、Acid Blue 80(CI 61585)、Acid Green 3(CI 42085、Foodgreen1)、Acid Green 5(CI 42095)、Acid Green 9(C.I.42100)、Acid Green 22(C.I.42170), Acid Green 25 (CI 61570, Japan Green 201, D&C Green No. 5), Acid Green 50 (Brilliant Acid Green BS, CI 44090, Acid Brilliant Green BS, E 142), Acid Black 1 (Black n°401, Naphthalene Black 10B, Amido Black 10B, CI 20 470, COLIPA n°B15), Acid Black 52(CI 15711), Food Yellow 8(CI 14270), Food Blue 5, D&C Yellow 8, D&C Green 5, D&C Orange 10, D&C Orange 11, D&C Red 21, D&C Red 27, D&C Red 33, D&C Violet 2 and / or D&C Brown 1. .

[0339] The water solubility of anionic direct dyes can be measured, for example, by the following method: Add 0.1 g of anionic direct dye to a beaker. Add a magnetic stir bar. Then, add 100 mL of water. Heat the mixture to 25°C while stirring magnetically. Stir for 60 minutes. Then, visually evaluate the aqueous mixture. If undissolved residues are still present, increase the amount of water, for example, in 10 mL increments. Add water until the amount of dye used is completely dissolved. If the dye strength is too high to visually evaluate the dye-water mixture, filter the mixture. If undissolved dye remains on the filter paper, repeat the solubility test with more water. If 0.1 g of anionic direct dye dissolves in 100 mL of water at 25°C, the solubility of the dye is 1 g / L.

[0340] Acid Yellow 1 is named 8-hydroxy-5,7-dinitro-2-naphthalenesulfonic acid disodium salt and has a solubility in water (25° C.) of at least 40 g / L.

[0341] Acid Yellow 3 is a mixture of the mono- and disulfonic acid sodium salts of 2-(2-quinolyl)-1H-indene-1,3(2H)-dione and has a solubility in water (25° C.) of 20 g / L.

[0342] Acid Yellow 9 is the disodium salt of 8-hydroxy-5,7-dinitro-2-naphthalenesulfonic acid, and its water solubility is greater than 40 g / L (25°C).

[0343] Acid Yellow 23 is the trisodium salt of 4,5-dihydro-5-oxo-1-(4-sulfophenyl)-4-((4-sulfophenyl)azo)-1H-pyrazole-3-carboxylic acid and is readily soluble in water at 25°C.

[0344] Acid Orange 7 is the sodium salt of 4-[(2-hydroxy-1-naphthyl)azo]benzenesulfonate. Its solubility in water is greater than 7 g / L at 25 °C.

[0345] Acid Red 18 is the trisodium salt of 7-hydroxy-8-[(E)-(4-sulfonato-1-naphthyl)-diazenyl)]-1,3-naphthalenedisulfonate and has very high water solubility of greater than 20% by weight.

[0346] Acid Red 33 is the disodium salt of 5-amino-4-hydroxy-3-(phenylazo)-naphthalene-2,7-disulfonate, and its solubility in water is 2.5 g / L (25° C.).

[0347] Acid Red 92 is the disodium salt of 3,4,5,6-tetrachloro-2-(1,4,5,8-tetrabromo-6-hydroxy-3-oxoxanthen-9-yl)benzoic acid, and its solubility in water is reported to be greater than 10 g / L at 25°C.

[0348] Acid Blue 9 is the disodium salt of 2-({4-[N-ethyl(3-sulfonatobenzyl]amino]phenyl}{4-[(N-ethyl(3-sulfonatobenzyl)imino]-2,5-cyclohexadien-1-ylidene}methyl)-benzenesulfonate and has a water solubility of greater than 20% by weight (25°C).

[0349] A very particularly preferred method is therefore characterized in that agent (a) and / or agent (b) further comprises at least one coloring compound selected from the group of at least one anionic direct dye selected from the group consisting of: Acid Yellow 1, Acid Yellow 3, Acid Yellow 9, Acid Yellow 17, Acid Yellow 23, Acid Yellow 36, Acid Yellow 121, Acid Orange 6, Acid Orange 7, Acid Orange 10, Acid Orange 11, Acid Orange 15, Acid Orange 20, Acid Orange 24, Acid Red 14, Acid Red, Acid Red 27, Acid Red 33, Acid Red 35, Acid Red 51, Acid Red 52, Acid Red 73, Acid Red 87, Acid Red 92, Acid Red 95, Acid Red 184, Acid Red 195, Acid Violet 43, Acid Violet 49, Acid Violet 50, Acid Blue 1, Acid Blue 3, Acid Blue 7, Acid Blue 104, Acid Blue 9, Acid Blue 62, Acid Blue 74, Acid Blue 80, Acid Green 3, Acid Green 5, Acid Green 9, Acid Green 22, Acid Green 25, Acid Green 50, Acid Black 1, Acid Black 52, Food Yellow 8, Food Blue 5, D&C Yellow 8, D&C Green 5, D&C Orange 10, D&C Orange 11, D&C Red 21, D&C Red 27, D&C Red 33, D&C Violet 2, and / or D&C Brown 1.

[0350] The direct dyes, in particular the anionic direct dyes, can be used in different amounts in agent (a) and / or agent (b), depending on the desired color intensity. Particularly good results have also been obtained when agent (a) and / or agent (b) contain one or more direct dyes as coloring compounds in a total amount of 0.01 to 10% by weight, preferably 0.1 to 8% by weight, more preferably 0.2 to 6% by weight, and very particularly preferably 0.5 to 4.5% by weight, in each case based on their total weight.

[0351] In a further preferred embodiment, the method is characterized in that agent (a) and / or agent (b) further contain one or more direct dyes as coloring compounds in a total amount of 0.01 to 10% by weight, preferably 0.1 to 8% by weight, more preferably 0.2 to 6% by weight, most preferably 0.5 to 4.5% by weight, based on the total weight of agent (a) and / or agent (b).

[0352] Below, preferred embodiments of the present method relating to color-imparting compounds are disclosed. 1. A method for dyeing keratinous materials, in particular human hair, comprising the following steps: applying an agent (a) to the keratinous material, wherein said agent (a) comprises: (a1) at least one organosilicon compound selected from the group consisting of silanes containing one, two or three silicon atoms; (a2) at least one hydroxycarboxylic acid ester; (a3) at least one diol, and (a4) at least one coloring compound comprising at least one inorganic pigment selected from the group consisting of coloring metal oxides, metal hydroxides, metal oxide hydrates, silicates, metal sulfides, complex metal cyanides, metal sulfates, bronze pigments, and mixtures thereof; applying an agent (b) to the keratinous material, wherein the agent (b) comprises: (b1) at least one sealing reagent;

[0353] 2. A method for dyeing keratinous materials, in particular human hair, comprising the following steps: applying an agent (a) to the keratinous material, wherein said agent (a) comprises: (a1) at least one organosilicon compound selected from the group consisting of silanes containing one, two or three silicon atoms; (a2) at least one hydroxycarboxylic acid ester; (a3) at least one diol, and (a4) at least one coloring compound comprising at least one inorganic pigment selected from the group consisting of colored metal oxides, metal hydroxides, metal oxide hydrates, silicates, metal sulfides, complex metal cyanides, metal sulfates, bronze pigments, and mixtures thereof, and at least one pigment selected from the group consisting of pigments based on lamellar metal substrate platelets, pigments based on lenticular metal substrate platelets, pigments based on metal substrate platelets including vacuum metallized pigments (VMP), and mixtures thereof; applying an agent (b) to the keratinous material, wherein the agent (b) comprises: (b1) at least one sealing reagent;

[0354] 3. A method for dyeing keratinous materials, in particular human hair, comprising the following steps: applying an agent (a) to the keratinous material, wherein said agent (a) comprises: (a1) at least one organosilicon compound selected from the group consisting of silanes containing one, two or three silicon atoms; (a2) at least one hydroxycarboxylic acid ester; (a3) at least one diol, and (a4) at least one coloring compound comprising at least one inorganic pigment selected from the group consisting of colored metal oxides, metal hydroxides, metal oxide hydrates, silicates, metal sulfides, complex metal cyanides, metal sulfates, bronze pigments and mixtures thereof, and at least one pigment comprising α) a substrate platelet comprising mica and β) a coating comprising at least one first metal oxide (hydrate) layer comprising TiO2, SnO2 and / or iron oxide, applying an agent (b) to the keratinous material, wherein the agent (b) comprises: (b1) at least one sealing reagent;

[0355] 4. A method for dyeing keratinous materials, in particular human hair, comprising the steps of: applying an agent (a) to the keratinous material, wherein said agent (a) comprises: (a1) at least one organosilicon compound selected from the group consisting of silanes containing one, two or three silicon atoms; (a2) at least one hydroxycarboxylic acid ester; (a3) at least one diol, and (a4) at least one coloring compound comprising at least one inorganic pigment selected from the group consisting of coloring metal oxides, metal hydroxides, metal oxide hydrates, silicates, metal sulfides, complex metal cyanides, metal sulfates, bronze pigments, and mixtures thereof; applying an agent (b) to the keratinous material, wherein the agent (b) comprises: (b1) at least one sealing reagent comprising a film-forming polymer; and (b2) at least one coloring compound comprising at least one pigment selected from the group consisting of lamellar metal substrate platelet based pigments, lenticular metal substrate platelet based pigments, metal substrate platelet based pigments including vacuum metallized pigments (VMPs), and mixtures thereof.

[0356] 5. A method for dyeing keratinous materials, in particular human hair, comprising the following steps: applying an agent (a) to the keratinous material, wherein said agent (a) comprises: (a1) at least one organosilicon compound selected from the group consisting of silanes containing one, two or three silicon atoms; (a2) at least one hydroxycarboxylic acid ester; (a3) at least one diol, and (a4) at least one coloring compound comprising at least one inorganic pigment selected from the group consisting of coloring metal oxides, metal hydroxides, metal oxide hydrates, silicates, metal sulfides, complex metal cyanides, metal sulfates, bronze pigments, and mixtures thereof; applying an agent (b) to the keratinous material, wherein the agent (b) comprises: (b1) at least one sealing reagent comprising a film-forming polymer; and (b2) at least one coloring compound comprising at least one pigment comprising α) a substrate platelet comprising mica and β) a coating comprising at least one first metal oxide (hydrate) layer comprising TiO2, SnO2 and / or iron oxide.

[0357] 6. A method for dyeing keratinous materials, in particular human hair, comprising the following steps: applying an agent (a) to the keratinous material, wherein said agent (a) comprises: (a1) at least one organosilicon compound selected from the group consisting of silanes containing one, two or three silicon atoms; (a2) at least one hydroxycarboxylic acid ester; (a3) at least one diol, and (a4) at least one coloring compound comprising at least one inorganic pigment selected from the group consisting of coloring metal oxides, metal hydroxides, metal oxide hydrates, silicates, metal sulfides, complex metal cyanides, metal sulfates, bronze pigments, and mixtures thereof; applying an agent (b) to the keratinous material, wherein the agent (b) comprises: (b1) at least one sealing reagent comprising a film-forming polymer; and (b2) at least one coloring compound comprising at least one pigment comprising α) a substrate platelet comprising borosilicate glass and β) a coating comprising at least one first metal oxide (hydrate) layer comprising TiO2, SnO2, SiO2 and / or iron oxide.

[0358] 7. A method for dyeing keratinous materials, in particular human hair, comprising the steps of: applying an agent (a) to the keratinous material, wherein said agent (a) comprises: (a1) at least one organosilicon compound selected from the group consisting of silanes containing one, two or three silicon atoms; (a2) at least one hydroxycarboxylic acid ester; (a3) at least one diol, and (a4) Carmine, quinacridone, phthalocyanine, sorghum, blue pigments having color index numbers CI42090, CI69800, CI69825, CI73000, CI74100, CI74160, yellow pigments having color index numbers CI11680, CI11710, CI15985, CI19140, CI20040, CI21100, CI21108, CI47000, CI47005, green pigments having color index numbers CI61565, CI61570, CI74260, color index numbers CI11725, CI15510, CI45370, at least one coloring compound comprising at least one organic pigment selected from the group consisting of orange pigment having Color Index Numbers CI 71105, red pigments having Color Index Numbers CI 12085, CI 12120, CI 12370, CI 12420, CI 12490, CI 14700, CI 15525, CI 15580, CI 15620, CI 15630, CI 15800, CI 15850, CI 15865, CI 15880, CI 17200, CI 26100, CI 45380, CI 45410, CI 58000, CI 73360, CI 73915, CI 75470, and mixtures thereof; applying an agent (b) to the keratinous material, wherein the agent (b) comprises: (b1) at least one sealing reagent;

[0359] 8. A method for dyeing keratinous materials, in particular human hair, comprising the steps of: applying an agent (a) to the keratinous material, wherein said agent (a) comprises: (a1) at least one organosilicon compound selected from the group consisting of silanes containing one, two or three silicon atoms; (a2) at least one hydroxycarboxylic acid ester; (a3) at least one diol, and (a4) Carmine, quinacridone, phthalocyanine, sorghum, blue pigments having color index numbers CI42090, CI69800, CI69825, CI73000, CI74100, CI74160, yellow pigments having color index numbers CI11680, CI11710, CI15985, CI19140, CI20040, CI21100, CI21108, CI47000, CI47005, green pigments having color index numbers CI61565, CI61570, CI74260, orange pigments having color index numbers CI11725, CI15510, CI45370, CI71105, color index numbers CI12085, CI12120, CI12370, CI12420, CI12490, at least one coloring compound comprising at least one organic pigment selected from the group consisting of red pigments having CI14700, CI15525, CI15580, CI15620, CI15630, CI15800, CI15850, CI15865, CI15880, CI17200, CI26100, CI45380, CI45410, CI58000, CI73360, CI73915, CI75470, and mixtures thereof; and at least one pigment selected from the group consisting of lamellar metal substrate platelet based pigments, lenticular metal substrate platelet based pigments, metal substrate platelet based pigments including vacuum metallized pigments (VMP), and mixtures thereof; applying an agent (b) to the keratinous material, wherein the agent (b) comprises: (b1) at least one sealing reagent;

[0360] 9. A method for dyeing keratinous materials, in particular human hair, comprising the following steps: applying an agent (a) to the keratinous material, wherein said agent (a) comprises: (a1) at least one organosilicon compound selected from the group consisting of silanes containing one, two or three silicon atoms; (a2) at least one hydroxycarboxylic acid ester; (a3) at least one diol, and (a4) Carmine, quinacridone, phthalocyanine, sorghum, blue pigments having color index numbers CI42090, CI69800, CI69825, CI73000, CI74100, CI74160, yellow pigments having color index numbers CI11680, CI11710, CI15985, CI19140, CI20040, CI21100, CI21108, CI47000, CI47005, green pigments having color index numbers CI61565, CI61570, CI74260, orange pigments having color index numbers CI11725, CI15510, CI45370, CI71105, color index numbers CI12085, CI12120, at least one coloring compound comprising at least one organic pigment selected from the group consisting of red pigments having CI12370, CI12420, CI12490, CI14700, CI15525, CI15580, CI15620, CI15630, CI15800, CI15850, CI15865, CI15880, CI17200, CI26100, CI45380, CI45410, CI58000, CI73360, CI73915, CI75470, and mixtures thereof; and at least one pigment comprising α) a substrate platelet comprising mica; and β) a coating comprising at least one first metal oxide (hydrate) layer comprising TiO2, SnO2, and / or iron oxide. applying an agent (b) to the keratinous material, wherein the agent (b) comprises: (b1) at least one sealing reagent;

[0361] 10. A method for dyeing keratinous materials, in particular human hair, comprising the following steps: applying an agent (a) to the keratinous material, wherein said agent (a) comprises: (a1) at least one organosilicon compound selected from the group consisting of silanes containing one, two or three silicon atoms; (a2) at least one hydroxycarboxylic acid ester; (a3) at least one diol, and (a4) Carmine, quinacridone, phthalocyanine, sorghum, blue pigments having color index numbers CI42090, CI69800, CI69825, CI73000, CI74100, and CI74160, yellow pigments having color index numbers CI11680, CI11710, CI15985, CI19140, CI20040, CI21100, CI21108, CI47000, and CI47005, green pigments having color index numbers CI61565, CI61570, and CI74260, and color index numbers CI11725, CI15510, and CI45370 , CI71105, orange pigment having Color Index Numbers CI12085, CI12120, CI12370, CI12420, CI12490, CI14700, CI15525, CI15580, CI15620, CI15630, CI15800, CI15850, CI15865, CI15880, CI17200, CI26100, CI45380, CI45410, CI58000, CI73360, CI73915, CI75470, and mixtures thereof; applying an agent (b) to the keratinous material, wherein the agent (b) comprises: (b1) at least one sealant reagent comprising a film-forming polymer; and (b2) at least one coloring compound comprising at least one pigment selected from the group consisting of lamellar metal substrate platelet based pigments, lenticular metal substrate platelet based pigments, metal substrate platelet based pigments including vacuum metallized pigments (VMP), and mixtures thereof.

[0362] 11. A method for dyeing keratinous materials, in particular human hair, comprising the steps of: applying an agent (a) to the keratinous material, wherein said agent (a) comprises: (a1) at least one organosilicon compound selected from the group consisting of silanes containing one, two or three silicon atoms; (a2) at least one hydroxycarboxylic acid ester; (a3) at least one diol, and (a4) Carmine, quinacridone, phthalocyanine, sorghum, blue pigments having color index numbers CI42090, CI69800, CI69825, CI73000, CI74100, and CI74160, yellow pigments having color index numbers CI11680, CI11710, CI15985, CI19140, CI20040, CI21100, CI21108, CI47000, and CI47005, green pigments having color index numbers CI61565, CI61570, and CI74260, and color index numbers CI11725, CI15510, and CI45370 , CI71105, orange pigment having Color Index Numbers CI12085, CI12120, CI12370, CI12420, CI12490, CI14700, CI15525, CI15580, CI15620, CI15630, CI15800, CI15850, CI15865, CI15880, CI17200, CI26100, CI45380, CI45410, CI58000, CI73360, CI73915, CI75470, and mixtures thereof; applying an agent (b) to the keratinous material, wherein the agent (b) comprises: (b1) at least one sealing reagent comprising a film-forming polymer; and (b2) at least one coloring compound comprising: α) at ​​least one pigment comprising a substrate platelet comprising mica; and β) a coating comprising at least one first metal oxide (hydrate) layer comprising TiO2, SnO2 and / or iron oxide.

[0363] 12. A method for dyeing keratinous materials, in particular human hair, comprising the steps of: applying an agent (a) to the keratinous material, wherein said agent (a) comprises: (a1) at least one organosilicon compound selected from the group consisting of silanes containing one, two or three silicon atoms; (a2) at least one hydroxycarboxylic acid ester, and (a3) at least one diol; (a4) Carmine, quinacridone, phthalocyanine, sorghum, blue pigments having color index numbers CI42090, CI69800, CI69825, CI73000, CI74100, and CI74160, yellow pigments having color index numbers CI11680, CI11710, CI15985, CI19140, CI20040, CI21100, CI21108, CI47000, and CI47005, green pigments having color index numbers CI61565, CI61570, and CI74260, and color index numbers CI11725, CI15510, and CI45370 , CI71105, orange pigment having Color Index Numbers CI12085, CI12120, CI12370, CI12420, CI12490, CI14700, CI15525, CI15580, CI15620, CI15630, CI15800, CI15850, CI15865, CI15880, CI17200, CI26100, CI45380, CI45410, CI58000, CI73360, CI73915, CI75470, and mixtures thereof; applying an agent (b) to the keratinous material, wherein the agent (b) comprises: (b1) at least one sealing reagent comprising a film-forming polymer; and (b2) at least one coloring compound comprising at least one pigment comprising α) a substrate platelet comprising borosilicate glass and β) a coating comprising at least one first metal oxide (hydrate) layer comprising TiO2, SnO2, SiO2 and / or iron oxide.

[0364] 13. A method for dyeing keratinous materials, in particular human hair, comprising the following steps: applying an agent (a) to the keratinous material, wherein said agent (a) comprises: (a1) at least one organosilicon compound selected from the group consisting of silanes having 1, 2 or 3 silicon atoms; (a2) at least one hydroxycarboxylic acid ester, and (a3) at least one diol; applying an agent (b) to the keratinous material, wherein the agent (b) comprises: (b1) at least one sealing reagent comprising a film-forming polymer; and (b2) at least one coloring compound comprising at least one pigment selected from the group consisting of lamellar metal substrate platelet based pigments, lenticular metal substrate platelet based pigments, metal substrate platelet based pigments including vacuum metallized pigments (VMP), and mixtures thereof.

[0365] 14. A method for dyeing keratinous materials, in particular human hair, comprising the steps of: applying an agent (a) to the keratinous material, wherein said agent (a) comprises: (a1) at least one organosilicon compound selected from the group consisting of silanes having 1, 2 or 3 silicon atoms; (a2) at least one hydroxycarboxylic acid ester; (a3) at least one diol, and (a4) at least one coloring compound selected from the group consisting of pigments and / or direct dyes, including a pigment selected from the group consisting of iron oxide pigments, wherein the iron oxide pigment has a particle size in the range of 100 to 1,000 nm, more preferably 150 nm to 700 nm, and at least one pigment selected from the group consisting of pigments based on lamellar metal substrate platelets, pigments based on lenticular metal substrate platelets, pigments based on metal substrate platelets, including "vacuum metallized pigments" (VMP), and mixtures thereof, applying an agent (b) to the keratinous material, wherein the agent (b) comprises: (b1) at least one sealing reagent;

[0366] 15. A method for dyeing keratinous materials, in particular human hair, comprising the steps of: applying an agent (a) to the keratinous material, wherein said agent (a) comprises: (a1) at least one organosilicon compound selected from the group consisting of silanes having 1, 2 or 3 silicon atoms; (a2) at least one coloring compound selected from the group consisting of pigments and / or direct dyes, including a pigment selected from the group consisting of iron oxide pigments, wherein the iron oxide pigment has a particle size in the range of 100 to 1,000 nm, more preferably 150 nm to 700 nm; applying an agent (b) to the keratinous material, wherein the agent (b) comprises: (b1) at least one sealing reagent comprising a film-forming polymer; and (b2) At least one coloring compound selected from the group consisting of pigments and / or direct dyes, including at least one pigment selected from the group consisting of pigments based on lamellar metal substrate platelets, pigments based on lenticular metal substrate platelets, pigments based on metal substrate platelets including vacuum metallized pigments (VMP), and mixtures thereof.

[0367] 16. A method for dyeing keratinous materials, in particular human hair, comprising the steps of: applying an agent (a) to the keratinous material, wherein said agent (a) comprises: (a1) at least one organosilicon compound selected from the group consisting of silanes containing one, two or three silicon atoms; (a2) at least one hydroxycarboxylic acid ester; (a3) at least one diol, and (a4) at least one coloring compound selected from the group consisting of pigments and / or direct dyes, including a pigment selected from the group consisting of iron oxide pigments, wherein the iron oxide pigment has a particle size in the range of 100 to 1,000 nm, more preferably 150 nm to 700 nm; applying an agent (b) to the keratinous material, wherein the agent (b) comprises: (b1) at least one sealing reagent comprising a film-forming polymer; and (b2) At least one coloring compound selected from the group consisting of pigments and / or direct dyes, including at least one pigment selected from the group consisting of pigments based on lamellar metal substrate platelets, pigments based on lenticular metal substrate platelets, pigments based on metal substrate platelets including vacuum metallized pigments (VMP), and mixtures thereof.

[0368] The agent of the present invention may additionally contain one or more surfactants.The term surfactant is used to describe surface-active substances.They are distinguished into anionic surfactants, which consist of a hydrophobic residue and a negatively charged hydrophilic head group; amphoteric surfactants, which have both a negative charge and a complementary positive charge; cationic surfactants, which have a hydrophobic residue and a positively charged hydrophilic group; and nonionic surfactants, which have no charge but have a strong dipole moment and are strongly hydrated in aqueous solution.

[0369] The term zwitterionic surfactants refers to surfactants that contain at least one quaternary ammonium group and at least one -COO group in the molecule. (-) or -SO3 (-)The term "betaine" is used to describe surface-active compounds having a hydroxyl group. Particularly suitable zwitterionic surfactants are so-called betaines, such as N-alkyl-N,N-dimethylammonium glycinates, such as cocoalkyl-dimethylammonium glycinate, n-acylaminopropyl-N,N-dimethylammonium glycinates, such as cocoacylaminopropyldimethylammonium glycinate, and 2-alkyl-3-carboxymethyl-3-hydroxyethyl imidazolines, each having 8 to 18 carbon atoms in the alkyl or acyl group, and cocoacylaminoethylhydroxyethylcarboxymethylglycinate. A preferred zwitterionic surfactant is a fatty acid amide derivative known under the INCI name cocamidopropyl betaine.

[0370] Amphoteric surfactants have a C 8- C 24 These surfactants are surface-active compounds that contain, in addition to an alkyl or acyl group, at least one free amino group and at least one -COOH or -SO3H group, and are capable of forming inner salts. Examples of suitable amphoteric surfactants include N-alkylglycines, n-alkylpropionic acids, n-alkylaminobutyric acids, n-alkyliminodipropionic acids, n-hydroxyethyl-N-alkylamidopropylglycines, n-alkyltaurines, n-alkylsarcosines, 2-alkylaminopropionic acids, and alkylaminoacetic acids, each having approximately 8 to 24 carbon atoms in the alkyl group. Typical examples of amphoteric or zwitterionic surfactants are alkylbetaines, alkylamidobetaines, aminopropionates, aminoglycinates, imidazolinium betaines, and sulfobetaines.

[0371] Particularly preferred amphoteric surfactants are N-cocos alkylaminopropionate, cocos acylaminoethylaminopropionate, and C 12- C 18 -acyl sarcosine.

[0372] The agent of the present invention may additionally contain at least one nonionic surfactant.Suitable nonionic surfactants are alkyl polyglycosides and alkylene oxide addition products of fatty alcohols and fatty acids, each having 2 to 30 moles of ethylene oxide per mole of fatty alcohol or fatty acid.Preparations with good properties can also be obtained when the nonionic surfactant contains a fatty acid ester of ethoxylated glycerol reacted with at least 2 moles of ethylene oxide.

[0373] In addition, the agent of the present invention may additionally contain at least one cationic surfactant.Cationic surfactants are surfactants, i.e., surface active compounds, each of which has one or more positive charges.Cationic surfactants only have positive charges.Usually, these surfactants are composed of a hydrophobic part and a hydrophilic head group, and the hydrophobic part is usually composed of a hydrocarbon backbone (for example, one or two linear or branched alkyl chains), and the positive charge is located in the hydrophilic head group.Examples of cationic surfactants are as follows: - quaternary ammonium compounds which may have one or two alkyl chains with a chain length of 8 to 28 carbon atoms as hydrophobic groups; - a quaternary phosphonium salt substituted with one or more alkyl chains having a chain length of 8 to 28 carbon atoms, or - tertiary sulfonium salts.

[0374] Furthermore, the cationic charge can be part of a heterocyclic ring (e.g., an imidazolium ring or a pyridinium ring) in the form of an onium structure. In addition to the functional unit with a cationic charge, the cationic surfactant may contain other uncharged functional groups, as in the case of esterquats, for example. The cationic surfactant is used in a total amount of 0.1 to 45% by weight, preferably 1 to 30% by weight, and very preferably 1 to 15% by weight, based on the total weight of each agent.

[0375] Furthermore, the agent may contain at least one anionic surfactant. Anionic surfactants are surface-active agents that have only an anionic charge (neutralized with the corresponding countercation). Examples of anionic surfactants are fatty acids, alkyl sulfates, alkyl ether sulfates, and ether carboxylic acids with 12 to 20 carbon atoms in the alkyl group and up to 16 glycol ether groups in the molecule.

[0376] The anionic surfactants are used in a total amount of 0.1 to 45% by weight, preferably 1 to 30% by weight, and very preferably 1 to 15% by weight, based on the total weight of the respective agents.

[0377] Agent (a) and / or agent (b) may further contain a matting agent. Suitable matting agents include, for example, (modified) starch, wax, talc, and / or (modified) silica. The amount of the matting agent is preferably 0.1 to 10% by weight based on the total amount of agent (a) or agent (b). Preferably, agent (a) contains a matting agent.

[0378] Agent (a) and / or agent (b) may further comprise a thickening agent.

[0379] When using agent (a) and / or agent (b), they must not be too thin and drip off the keratinous materials, and for this reason it may be preferable for agent (a) and / or (b) to contain a thickener.

[0380] Therefore, for one embodiment, a method for dyeing keratinous materials is preferred, characterized in that agent (a) and / or agent (b) further comprises a thickener.

[0381] Suitable thickening agents include, for example, chemically modified celluloses such as propyl cellulose, methyl ethyl cellulose, carboxymethyl cellulose, hydroxyethyl cellulose, methyl hydroxyethyl cellulose, ethyl hydroxyethyl cellulose, hydroxypropyl cellulose, hydroxypropyl methyl cellulose, carboxymethyl hydroxyethyl cellulose, sulfoethyl cellulose, carboxymethyl sulfoethyl cellulose, hydroxypropyl sulfoethyl cellulose, hydroxyethyl sulfoethyl cellulose, methyl ethyl hydroxyethyl cellulose, methylyl sulfoethyl cellulose and / or ethyl sulfoethyl cellulose.

[0382] In a preferred embodiment, the method for dyeing keratinous materials is characterized in that agent (a) and / or agent (b) further comprise a thickener selected from the group consisting of propyl cellulose, methyl ethyl cellulose, carboxymethyl cellulose, hydroxyethyl cellulose, methyl hydroxyethyl cellulose, ethyl hydroxyethyl cellulose, hydroxypropyl cellulose, hydroxypropyl methyl cellulose, carboxymethyl hydroxyethyl cellulose, sulfoethyl cellulose, carboxymethyl sulfoethyl cellulose, hydroxypropyl sulfoethyl cellulose, hydroxyethyl sulfoethyl cellulose, methyl ethyl hydroxyethyl cellulose, methylyl sulfoethyl cellulose, ethyl sulfoethyl cellulose, and mixtures thereof.

[0383] Particularly suitable thickeners are selected from hydroxyethyl cellulose, hydroxypropyl cellulose, hydroxypropyl methylcellulose and mixtures thereof.

[0384] In a particularly preferred embodiment, the method for dyeing keratinous materials is characterized in that agent (a) and / or agent (b) further comprise a thickener selected from the group consisting of hydroxyethyl cellulose, hydroxypropyl cellulose, hydroxypropyl methylcellulose and mixtures thereof.

[0385] Other suitable thickening agents include galactomannans. Preferred galactomannans include those having the INCI name Cyamopsis tetragonoloba gum (guar gum), those having the INCI name Ceratonia siliqua (carob) gum (locust bean gum), those having the INCI name Cassia gum, and those having the INCI name Caesalpinia spinosa gum (tara gum).

[0386] Therefore, a method for dyeing keratinous materials is particularly preferred, in which agent (a) and / or agent (b) further comprises at least one galactomannan selected from the group consisting of a galactomannan having the INCI name Cyamopsistetragonoloba gum (guar gum), a galactomannan having the INCI name Ceratonia siliqua (carob) gum (locust bean gum), a galactomannan having the INCI name Cassia gum, and a galactomannan having the INCI name Caesalpinia spinosa gum (tara gum). In a particularly preferred embodiment, the galactomannan comprises a galactomannan having the INCI name Caesalpinia spinosa gum (tara gum).

[0387] The amount of thickener is preferably 0.1 to 10% by weight, based in each case on the total amount of agent (a) and / or agent (b).

[0388] The composition may contain other active ingredients, auxiliaries and additives, such as solvents; fatty ingredients, such as C8-C 30 Fatty acid triglycerides, C8-C 30 Fatty acid monoglycerides, C8-C 30fatty acid diglycerides and / or hydrocarbons; structuring agents such as glucose, maleic acid and lactic acid; hair conditioning compounds such as phospholipids, e.g., lecithin and cephalin; perfume oils, dimethyl isosorbide and cyclodextrin; fibre structure improving active ingredients, in particular mono-, di- and oligosaccharides, e.g., glucose, galactose, fructose, fructose and lactose; dyes for colouring the product; anti-dandruff active ingredients, e.g. Piroctone olamine, zinc omadine, and climbazole; amino acids and oligopeptides: protein hydrolysates of animal and / or vegetable origin and their fatty acid condensation products or optionally anionic or cationic modified derivatives; vegetable oils; light stabilizers and UV blockers; active ingredients such as panthenol, pantothenic acid, pantolactone, allantoin, pyrrolidinone carboxylic acids and their salts, and bisabolol; polyphenols, especially hydroxycinnamic acids, 6,7-dihydroxycoumarin, hydroxybenzoic acids, catechins, tannins, leucoanthocyanidins, anthocyanidins, flavanones, flavones, and flavonols; The compositions may also contain ceramides or pseudoceramides; vitamins, provitamins and vitamin precursors; plant extracts; fats and waxes such as fatty alcohols, beeswax, montan wax, and kerosene; swelling and penetrating agents such as glycerol, propylene glycol monoethyl ether, carbonates, bicarbonates, guanidine, urea, and primary, secondary, and tertiary phosphates; opacifying agents such as latex, styrene / PVP and styrene / acrylamide copolymers; pearlizing agents such as ethylene glycol mono- and distearate and PEG-3-distearate; and blowing agents such as propane-butane mixtures, N2O, dimethyl ether, CO2, and air.

[0389] The selection of these additional substances will be made by those skilled in the art depending on the properties desired for the agent.For the additional optional components and the amounts of these components used, explicit reference is made to the relevant manuals known to those skilled in the art.The additional active ingredients and auxiliary agents are preferably used in the formulations of the present invention in an amount of 0.0001 to 25% by weight, particularly 0.0005 to 15% by weight, in each case based on the total amount of the respective composition.

[0390] <Method for dyeing keratinous materials> In the method of the present invention, agents (a) and (b) are applied to keratinous materials, in particular human hair. Therefore, agents (a) and (b) are ready-to-use agents. Agents (a) and (b) are different from each other.

[0391] Agents (a) and (b) can in principle be applied simultaneously or successively, with successive application being preferred.

[0392] The best results were obtained when agent (a) was first applied to the keratinous material in a first step and agent (b) was applied in a second step.

[0393] Very particular preference is therefore given to a method for treating keratinous materials, in particular for colouring keratinous materials, in particular human hair, which comprises the following steps in the order indicated: In a first step, an agent (a) is applied to the keratinous material, said agent comprising: (a1) at least one organosilicon compound selected from the group consisting of silanes containing one, two or three silicon atoms; (a2) at least one hydroxycarboxylic acid ester; (a3) at least one diol, and In a second step, an agent (b) is applied to the keratinous material, said agent comprising: (b1) at least one sealing reagent wherein at least one of the agents (a) and (b) further comprises at least one coloring compound selected from the group consisting of pigments and / or direct dyes.

[0394] Furthermore, in order to impart long-term resistance to leaching to the dyed keratinous material, agents (a) and (b) are particularly preferably applied within one and the same dyeing process, which means that the period between the application of agents (a) and (b) is at most several hours.

[0395] In a further preferred embodiment, the method is characterized in that agent (a) is applied first, followed by agent (b), and the time between application of agents (a) and (b) is at most 24 hours, preferably at most 12 hours, particularly preferably at most 6 hours.

[0396] A distinctive feature of agent (a) is that it contains at least one reactive organosilicon compound (a1). The reactive organosilicon compound (a1) undergoes an oligomerization or polymerization reaction, thereby functionalizing upon contact with the hair surface. Thus, a first film is formed. The hydroxycarboxylic acid ester (a2) is incorporated into the film. In the second step of the method, a second agent (b) is applied to the hair. During application of agent (b), which contains at least one film-forming polymer as a sealing agent (b1), the film-forming polymer interacts with the silane film and thus binds to the keratinous materials. During application of agent (b), which contains at least one alkalizing or acidifying agent as a sealing agent (b1), the formation of the silane film is positively influenced. The desired coloring of the keratinous materials is achieved by the coloring compounds in agent (a) and / or agent (b). The coloring can be achieved by a colored silane film (the coloring compound is present only in agent (a)), by a colored polymer film (the coloring compound is present only in agent (b) and agent (b) contains a film-forming polymer as sealing agent (b1)), or by a colored silane film and a colored polymer film (agents (a) and (b) each contain at least one coloring compound and agent (b) contains a film-forming polymer as sealing agent (b1)).

[0397] Regarding a further embodiment, a method is very particularly preferred which comprises the following steps in the order given: (1) applying agent (a) to a keratinous material; (2) applying agent (a) for a period of 10 seconds to 10 minutes, preferably 10 seconds to 5 minutes; and (3) rinsing the keratinous material with water, if necessary; (4) applying agent (b) to the keratinous material; (5) allowing agent (b) to act for a period of 30 seconds to 30 minutes, preferably 30 seconds to 10 minutes; (6) Rinse the keratinous material with water.

[0398] By rinsing the keratinous material with water in steps (3) and (6) of the process, it is understood that, according to the present invention, no other agents different from agents (a) and (b) are used in the rinsing process, and only water is used.

[0399] In step (1), agent (a) is first applied to keratinous materials, particularly human hair. When agent (a) is prepared with no water or a low water content, i.e., when the agent contains less than 5% by weight of water based on the total amount of agent (a), it is essential to apply agent (a) to wet keratinous materials, particularly wet human hair, for optimal dyeing results.

[0400] After application, agent (a) is allowed to act on the keratinous materials. In this regard, exposure times on the hair of 10 seconds to 10 minutes, preferably 20 seconds to 5 minutes, and most preferably 30 seconds to 2 minutes, have proven particularly advantageous.

[0401] In one preferred embodiment of the method, agent (a) can be rinsed from the keratinous material before applying agent (b) to the hair in a subsequent step.

[0402] When agent (b) was applied to keratinous materials still exposed to agent (a), colorations with equally good washfastness were obtained.

[0403] In step (4), agent (b) is applied to the keratinous material, after which (b) is worked onto the hair.

[0404] Even with short contact times of agent (b), the process allows the production of dyeings with particularly good strength and washfastness. Contact times on the hair of 10 seconds to 10 minutes, preferably 20 seconds to 5 minutes, and most preferably 30 seconds to 3 minutes have been found to be particularly advantageous.

[0405] In step (6), agent (b) (and optionally any agent (a) still present) is washed from the keratinous materials with water.

[0406] In this embodiment, the series of steps (1) to (6) is preferably carried out within 24 hours.

[0407] Agent (a) contains, together with the organosilicon compound, certain highly reactive compounds that can undergo hydrolysis or oligomerization and / or polymerization. As a result of their high reactivity, such organosilicon compounds form a film on keratinous materials.

[0408] It is considered advantageous for the user to prepare the ready-to-use agent (a) only immediately prior to application, in order to avoid premature oligomerization or polymerization.

[0409] In yet another embodiment, a method comprising the following steps in the order presented is particularly preferred: (1) preparing agent (a) by mixing a first agent (a'), a second agent (a'') and a third agent (a'''), wherein: The first agent (a') contains at least one organosilicon compound (a1) selected from the group consisting of silanes containing one, two or three silicon atoms, The second agent (a″) comprises at least one hydroxycarboxylic acid ester (a2) and at least one coloring compound selected from the group consisting of pigments and / or direct dyes, and The third agent (a''') contains at least one diol. (2) applying agent (a) to a keratinous material; (3) applying agent (a) for a period of 10 seconds to 10 minutes, preferably 10 seconds to 5 minutes; (4) rinsing the keratinous material with water, if necessary; (5) applying agent (b) to the keratinous material; (6) allowing agent (b) to act for a period of 30 seconds to 30 minutes, preferably 30 seconds to 10 minutes; (7) Rinse the keratinous material with water.

[0410] In order to obtain a formulation that is as stable as possible on storage, the agent (a') itself is preferably formulated to have a low water content or to be water-free.

[0411] In one preferred embodiment, the method is characterized in that the agent (a') has a water content of 0.001 to 10% by weight, preferably 0.5 to 9% by weight, more preferably 1 to 8% by weight, very particularly preferably 1.5 to 7% by weight, relative to the total weight of the agent (a').

[0412] Agent (a''') may comprise water.

[0413] Agent (a''') may further comprise a thickening agent. In this embodiment, agent (a''') preferably comprises a thickening agent selected from the group consisting of hydroxyethyl cellulose, hydroxypropyl cellulose, hydroxypropyl methylcellulose, and mixtures thereof.

[0414] For this embodiment, the ready-to-use agent (a) is prepared by mixing agents (a'), (a'') and (a''').

[0415] For example, the user may first mix or shake the agent (a') containing the organosilicon compound (a1), the agent (a'') containing the hydroxycarboxylic acid ester, and the agent (a''') containing the diol. The user can then apply the mixture of (a'), (a'') and (a'''') to the keratinous material either immediately after its preparation or after a short reaction time of 10 seconds to 30 minutes. The user can then apply the agent (b) as described above.

[0416] Alternatively, the user may first mix or shake the agent (a') containing the organosilicon compound (a1), the agent (a'') containing the hydroxycarboxylic acid ester, and the agent (a''') containing the diol. The user can then mix the mixture of (a'), (a'') and (a''') with a predetermined amount of water, such as tap water or a fourth water-containing agent (a''''), and apply this to the keratinous material either immediately after its preparation or after a short reaction time of 10 seconds to 30 minutes. The user can then apply the agent (b) as described above.

[0417] In a further alternative, when agent (a''') already contains a significant amount of water, the user can mix or shake agent (a') containing organosilicon compound (a1), agent (a'') containing hydroxycarboxylic acid ester, and agent (a''') containing water and diol. The mixture of (a'), (a'') and (a''') can be applied by the user to the keratinous material either immediately after its preparation or after a short reaction time of 10 seconds to 30 minutes. The user can then apply agent (b) as described above.

[0418] It may be preferred if the method further uses a water-containing agent (a'''') containing at least 10% by weight of water based on the total weight of the agent (a'''').

[0419] In a preferred embodiment, the method is characterized in that an agent (a'''') is used having a water content of 10 to 99.9% by weight, preferably 20 to 99% by weight, more preferably 30 to 95% by weight, very particularly preferably 35 to 90% by weight, based on the total weight of the agent (a'''').

[0420] In connection with a further embodiment, a method is particularly preferred which comprises the following steps in the order given: (1) preparing agent (a) by mixing a first agent (a'), a second agent (a''), and a third agent (a'''), wherein: The first agent (a') contains at least one organosilicon compound (a1) selected from the group consisting of silanes containing one, two or three silicon atoms, the second agent (a'') comprises at least one hydroxycarboxylic acid ester (a2), the third agent (a''') comprises a diol and, if desired, at least one coloring compound selected from the group consisting of pigments and / or direct dyes; (2) applying agent (a) to a keratinous material; (3) applying agent (a) for a period of 10 seconds to 10 minutes, preferably 10 seconds to 5 minutes; (4) rinsing the keratinous material with water, if necessary; (5) applying agent (b) to the keratinous material; (6) allowing agent (b) to act for a period of 30 seconds to 30 minutes, preferably 30 seconds to 10 minutes; (7) Rinse the keratinous material with water.

[0421] For this embodiment, ready-to-use agent (a) is also prepared by mixing agents (a'), (a'') and (a''').

[0422] For example, the user may first mix or shake the agent (a') containing the organosilicon compound (a1) with the agent (a'') containing the hydroxycarboxylic acid ester, and then mix or shake with the agent (a''') containing the diol. The user may apply the mixture of (a'), (a'') and (a''') to the keratinous material either immediately after its preparation or after a short reaction time of 10 seconds to 30 minutes. The user may then apply the agent (b) as described above.

[0423] Also in this embodiment, it may be preferable if a water-containing agent (a'''') containing at least 10% by weight of water based on the total weight of agent (a'''') is further used to prepare the ready-to-use agent (a). The ready-to-use agent (a) is then prepared by mixing agents (a'), (a''), (a''') and (a'''').

[0424] <Multi-component package unit (kit of parts)> For increased user comfort, the user is preferably provided with all necessary means in the form of a multi-component packaged unit (kit of parts).

[0425] A second subject of the invention is therefore a multi-component package unit (kit of parts) for dyeing keratinous materials, comprising, manufactured separately from one another, the following: a first container containing a first agent (a′), wherein the agent comprises (a′): (a1) at least one organosilicon compound selected from the group consisting of silanes having one, two, or three silicon atoms; and a second container containing an agent (a″), wherein the agent comprises (a″): (a2) at least one hydroxycarboxylic acid ester a third container containing an agent (a'''), wherein the agent comprises (a'''): (a3) at least one diol and a fourth container containing agent (b), wherein agent (b) is: (b1) at least one sealing reagent; wherein components (a1), (a2), (a3) ​​and (b1) are described in detail above, and at least one of the agents (a″), (a′″) and (b) further comprises at least one coloring compound selected from the group consisting of pigments and / or direct dyes.

[0426] A third subject of the invention is a multi-component package unit (kit of parts) for dyeing keratinous materials, comprising, manufactured separately: a first container containing an agent (a′), wherein the agent comprises (a′): (a1) at least one organosilicon compound selected from the group consisting of silanes having one, two, or three silicon atoms; and a second container containing an agent (a″), wherein the agent comprises (a″): (a2) at least one hydroxycarboxylic acid ester, and a third container containing an agent (a'''), wherein the agent comprises (a'''): (a3) at least one diol and at least 30 wt. % water, based on the total weight of agent (a''); and a fourth container containing an agent (b), wherein the agent is one of the following: (b1) at least one sealing reagent wherein components (a1), (a2), (a3) ​​and (b1) are described in detail above, and at least one of the agents (a″), (a′″) and (b) further comprises at least one coloring compound selected from the group consisting of pigments and / or direct dyes.

[0427] The organosilicon compound (a1) selected from the group of silanes containing one, two or three silicon atoms contained in agent (a') of the kit corresponds to the organosilicon compound (a1) also used in agent (a) of the method described above.

[0428] The hydroxycarboxylic acid ester (a2) contained in the agent (a″) of the kit corresponds to the hydroxycarboxylic acid ester (a2) also used in the agent (a) of the method described above.

[0429] The diol (a3) ​​contained in the agent (a''') of the kit corresponds to the diol (a3) ​​also used in the agent (a) of the method described above.

[0430] The sealing reagent (b1) contained in the agent (b) of the kit corresponds to the sealing reagent (b1) also used in the agent (b) of the method described above.

[0431] In a further preferred embodiment, a multi-component package unit (kit of parts) for dyeing keratinous materials comprises, separately manufactured: a first container containing an agent (a′), wherein the agent contains (a′): at least one organosilicon compound (a1) selected from the group of silanes containing one, two or three silicon atoms, and a second container containing an agent (a″), which agent contains (a″): (a2) a coloring compound selected from the group consisting of at least one hydroxycarboxylic acid ester and a pigment and / or a direct dye; a third container containing an agent (a'''), which agent contains (a'''): (a3) at least one diol and a fourth container containing an agent (b), wherein the agent contains (b): (b1) at least one sealing reagent; wherein components (a1), (a2), (a3) ​​and (b1) are described in detail above.

[0432] In a further preferred embodiment, a multi-component package unit (kit of parts) for dyeing keratinous materials comprises, separately manufactured: a first container containing an agent (a′), wherein the agent contains (a′): at least one organosilicon compound (a1) selected from the group of silanes containing one, two or three silicon atoms, and a second container containing an agent (a″), which agent contains (a″): (a2) at least one hydroxycarboxylic acid ester; a third container containing an agent (a'''), which agent contains (a'''): (a3) at least one diol and a fourth container containing an agent (b), wherein the agent contains (b): (b1) at least one sealing agent comprising a film-forming polymer, and further a coloring compound selected from the group consisting of pigments and / or direct dyes; wherein components (a1), (a2), (a3) ​​and (b1) are described in detail above.

[0433] In yet another embodiment, preferably a multi-component package unit (kit of parts) for dyeing keratinous materials comprises, separately manufactured: a first container containing an agent (a′), wherein the agent contains (a′): at least one organosilicon compound (a1) selected from the group of silanes containing one, two or three silicon atoms, and a second container containing an agent (a″), which agent contains (a″): (a2) at least one coloring compound selected from the group consisting of at least one hydroxycarboxylic acid ester and a pigment and / or a direct dye; a third container containing an agent (a'''), which agent contains (a'''): (a3) at least one diol; a fourth container containing an agent (b'), wherein the agent contains (b'): (b1) at least one sealing reagent comprising a film-forming polymer; and a fifth container containing an agent (b″), wherein the agent contains (b″): (b2) at least one coloring compound selected from the group consisting of pigments and / or direct dyes; wherein components (a1), (a2), (a3), (b1) and (b2) are described in detail above.

[0434] In this embodiment, the ready-to-use agent (b) is prepared by mixing agents (b') and (b'').

[0435] In yet another embodiment, preferably a multi-component package unit (kit of parts) for dyeing keratinous materials comprises, separately manufactured: a first container containing an agent (a′), wherein the agent contains (a′): at least one organosilicon compound (a1) selected from the group of silanes containing one, two or three silicon atoms, and a second container containing an agent (a″), which agent contains (a″): (a2) at least one coloring compound selected from the group consisting of at least one hydroxycarboxylic acid ester and a pigment and / or a direct dye; a third container containing an agent (a'''), which agent contains (a'''): (a3) at least one diol and at least 30% by weight of water, based on the total weight of agent (a''); a fourth container containing an agent (b'), wherein the agent contains (b'): (b1) at least one sealant reagent comprising a film-forming polymer; and a fifth container containing an agent (b″), wherein the agent contains (b′): (b2) at least one coloring compound selected from the group consisting of pigments and / or direct dyes; wherein components (a1), (a2), (a3), (b1) and (b2) are described in detail above.

[0436] In this embodiment, the ready-to-use agent (b) is prepared by mixing agents (b') and (b'').

[0437] In yet another embodiment, preferably a multi-component package unit (kit of parts) for dyeing keratinous materials comprises, separately manufactured: a first container containing an agent (a′), wherein the agent contains (a′): at least one organosilicon compound (a1) selected from the group of silanes containing one, two or three silicon atoms, and a second container containing an agent (a″), which agent contains (a″): (a2) at least one hydroxycarboxylic acid ester, a third container containing an agent (a'''), which agent contains (a'''): (a3) at least one diol; a fourth container containing an agent (b'), wherein the agent contains (b'): (b1) at least one sealing reagent comprising a film-forming polymer, and a fifth container containing an agent (b″), wherein the agent contains (b′): (b2) at least one coloring compound selected from the group consisting of pigments and / or direct dyes; wherein components (a1), (a2), (a3), (b1) and (b2) are described in detail above.

[0438] In this embodiment, the ready-to-use agent (b) is prepared by mixing agents (b') and (b'').

[0439] In this embodiment, it may be preferred that one of the agents (a'') and (a''') further comprises at least one coloring compound selected from the group consisting of pigments and / or direct dyes.

[0440] In any embodiment of the multi-component packaging unit, it may be preferred that agents (a"), (a"") and / or (b) further comprise a thickener. It is particularly preferred that agents (a"") and / or (b) further comprise a thickener.

[0441] According to this embodiment, a multi-component packaging unit (kit of parts) is preferred in which agent (a'') comprises a thickening agent selected from the group consisting of hydroxyethyl cellulose, hydroxypropyl cellulose, hydroxypropyl methylcellulose and mixtures thereof.

[0442] A further preferred kit of parts is one in which agent (b) comprises a thickening agent selected from the group consisting of ethyl cellulose, hydroxypropyl cellulose, hydroxypropyl methyl cellulose and mixtures thereof.

[0443] Also preferred is a multi-component kit of parts, wherein agent (a'') and agent (b) comprise a thickener selected from the group consisting of hydroxyethyl cellulose, hydroxypropyl cellulose, hydroxypropyl methyl cellulose and mixtures thereof.

[0444] The oligomerization and polymerization reaction of organosilicon compound (a1) begins as soon as agents (a') and (a'') are mixed, or as soon as agents (a'), (a'') and (a''') are mixed.

[0445] It has proven to be a major challenge to optimally adjust the rate of oligomerization and polymerization of the organosilicon compounds (a1), i.e. the rate at which the silane film is formed on the keratinous material, to the application conditions.

[0446] For example, when applied to human hair, if the rate of oligomerization and polymerization is too fast, polymerization will be completed before all hair sections are treated. If polymerization is too fast, it will be impossible to treat the entire hair. In the dyeing process, excessively fast polymerization will result in uneven color, so that the last batch treated will only be insufficiently colored.

[0447] On the other hand, if the polymerization is too slow, all areas of the keratinous material can be treated without time constraints, which increases the application time.

[0448] Surprisingly, it has been found that the presence of hydroxycarboxylic acid esters and diols in agent (a) not only improves the adhesion of the coloring compounds to keratinous materials, but also leads to optimal oligomerization and polymerization rates of the organosilicon compounds (a1), which not only leads to an appropriate application time, but also significantly improves the durability of the coloring as well as its haptics.

[0449] With regard to the further preferred embodiments of the multi-component packaging unit, what has been said about the process applies mutatis mutandis. The initial disclosure of this specification encompasses at least the following aspects. [1] Follow these steps: applying an agent (a) to the keratinous material, wherein said agent (a) comprises: (a1) at least one organosilicon compound selected from the group consisting of silanes having one, two, or three silicon atoms; and (a2) at least one hydroxycarboxylic acid ester; (a3) at least one diol and applying an agent (b) to the keratinous material, wherein the agent (b) comprises: (b1) at least one sealing reagent, wherein at least one of the agents (a) and (b) further comprises at least one coloring compound selected from the group consisting of pigments and / or direct dyes. [2] The agent (a) is represented by formula (I) and / or (II): JPEG0007772699000055.jpg969 [During the ceremony, ·R 1 、R 2 are independently a hydrogen atom or C 1- C 6 represents an alkyl group, L is a linear or branched divalent C 1- C 20 is an alkylene group, ·R 3 、R 4 are independent of each other, C 1- C 6 represents an alkyl group, a represents an integer from 1 to 3, and ·b represents an integer equal to 3-a. 、 JPEG0007772699000056.jpg11146 [In the organosilicon compound of formula (II), R5, R5', R5'', R6, R6' and R6'' are independently C 1- C 6 represents an alkyl group, A, A', A'', A''', and A'''' are independently linear or branched C 1- C 20 represents a divalent alkylene group, ·R 7 and R 8 are independently hydrogen atoms, C 1- C 6 Alkyl group, hydroxy C 1- C 6 Alkyl group, C 2- C 6 Alkenyl group, amino C 1- C 6 An alkyl group or a group of formula (III): JPEG0007772699000057.jpg1091 [·c represents an integer from 1 to 3, d represents an integer equal to 3-c, c' represents an integer from 1 to 3, d' represents an integer equal to 3-c', c'' represents an integer from 1 to 3, d'' represents an integer equal to 3-c'', e represents 0 or 1, f represents 0 or 1, g represents 0 or 1, ·h represents 0 or 1, However, at least one subscript among e, f, g, and h is different from 0. represents a group represented by the formula: The method according to [1], characterized in that it contains at least one organosilicon compound (a1) of the formula: [3] The agent (a) is represented by the formula (I): JPEG0007772699000058.jpg969 [In the formula, ·R 1 、R 2 Each represents a hydrogen atom, L is a linear divalent C 1- C 6 Alkylene groups, preferably propylene groups (-CH 2 -CH 2 -CH 2 -) or ethylene group (-CH 2 -CH 2 -) and ·R 3 、R 4 each independently represents a methyl group or an ethyl group; a represents the number 3, and ·b represents the number 0] The method according to [1] or [2], characterized in that it contains at least one organosilicon compound (a1) of the following formula: [4] Agent (a) is (3-aminopropyl)triethoxysilane (3-aminopropyl)trimethoxysilane 1-(3-aminopropyl)silanetriol (2-aminoethyl)triethoxysilane (2-aminoethyl)trimethoxysilane 1-(2-aminoethyl)silanetriol (3-Dimethylaminopropyl)triethoxysilane (3-Dimethylaminopropyl)trimethoxysilane 1-(3-dimethylaminopropyl)silanetriol (2-dimethylaminoethyl)triethoxysilane, (2-dimethylaminoethyl)trimethoxysilane, and / or 1-(2-dimethylaminoethyl)silanetriol The method according to any one of [1] to [3], characterized in that it contains at least one organosilicon compound (a1) of formula (I) selected from the group consisting of: [5] The agent (a) is represented by the formula (II): JPEG0007772699000059.jpg6134 [In the formula, e and f both represent the number 1, g and h both represent the number 0, A and A' are each independently a linear divalent C 1- C 6 represents an alkylene group, ·R 7 represents a hydrogen atom, a methyl group, a 2-hydroxyethyl group, a 2-alkenyl group, a 2-aminoethyl group or a group of formula (III) The method according to any one of [1] to [4], characterized in that the method comprises at least one organosilicon compound (a1) of the following formula: [6] The agent (a) is represented by the formula (IV): JPEG0007772699000060.jpg1061 [In the formula, ·R 9 is C 1- C 18 represents an alkyl group, ·R 10 is a hydrogen atom or C 1- C 6 represents an alkyl group, ·R 11 is C 1- C 6 represents an alkyl group, k is an integer from 1 to 3, and ·m represents an integer 3-k] The method according to any one of [1] to [5], characterized in that the method contains at least one organosilicon compound (a1) of the following formula: [7] Agent (a) is Methyltrimethoxysilane Methyltriethoxysilane Ethyltrimethoxysilane Ethyltriethoxysilane Propyltrimethoxysilane Propyltriethoxysilane Hexyltrimethoxysilane Hexyltriethoxysilane Octyltrimethoxysilane Octyltriethoxysilane Dodecyltrimethoxysilane, Dodecyltriethoxysilane, Octadecyltrimethoxysilane, Octadecyltriethoxysilane and A mixture of these The method according to any one of [1] to [6], characterized in that it contains at least one organosilicon compound (a1) of formula (IV) selected from the group consisting of: [8] The method according to any one of [1] to [7], wherein the agent (a) contains at least two structurally different organosilicon compounds (a1). [9] The method according to any one of [1] to [8], wherein the sealing reagent comprises a compound selected from the group consisting of a film-forming polymer, an alkalizing agent, an acidifying agent, and a mixture thereof.

[10] The method according to any one of [1] to [9], wherein the agent (a) contains triethyl citric acid as the hydroxycarboxylic acid ester (a2).

[11] The method according to any one of [1] to

[10] , wherein the agent (a) contains at least one diol (a3) ​​selected from the group consisting of ethylene glycol, 1,2-propylene glycol, and 1,3-propylene glycol.

[12] The method according to any one of [1] to

[11] , wherein the agent (a) and the agent (b) each further contain at least one coloring compound selected from the group consisting of pigments and / or direct dyes.

[13] The method according to any one of [1] to

[12] , characterized in that the agent (b) further comprises a coloring compound selected from the group consisting of pigments and / or direct dyes, including at least one pigment selected from the group consisting of lamellar metal substrate platelet-based pigments, lenticular metal substrate platelet-based pigments, vacuum metallized pigments (VMPs) and mixtures thereof, and / or at least one pigment selected from the group consisting of lamellar metal substrate platelet-based pigments, lenticular metal substrate platelet-based pigments, vacuum metallized pigments (VMPs) and mixtures thereof, lenticular metal substrate platelets, pigments based on metal substrate platelets, including "vacuum metallized pigments" (VMPs), and mixtures thereof, and / or at least one pigment based on natural or synthetic mica coated with at least one metal oxide and / or metal oxychloride.

[14] Agent (a) is selected from the group consisting of carmine, quinacridone, phthalocyanine, sorghum, blue pigments having color index numbers CI42090, CI69800, CI69825, CI73000, CI74100, and CI74160, yellow pigments having color index numbers CI11680, CI11710, CI15985, CI19140, CI20040, CI21100, CI21108, CI47000, and CI47005, green pigments having color index numbers CI61565, CI61570, and CI74260, orange pigments having color index numbers CI11725, CI15510, CI45370, and CI71105, and color index numbers 12085, CI12120, CI12370, CI12420, and CI1 2490, CI 14700, CI 15525, CI 15580, CI 15620, CI 15630, CI 15800, CI 15850, CI 15865, CI 15880, CI 17200, CI 26100, CI 45380, CI 45410, CI 58000, CI 73360, CI 73915, CI 75470, and mixtures thereof; and / or a coloring compound selected from the group consisting of pigments and / or direct dyes, including at least one inorganic pigment selected from the group consisting of colored metal oxides, metal hydroxides, metal oxide hydrates, silicates, metal sulfides, complex metal cyanides, metal sulfates, bronze pigments, and mixtures thereof; characterised in that the composition (b) further comprises a colouring compound selected from the group consisting of pigments and / or direct action dyes, including at least one pigment selected from the group consisting of pigments based on lamellar metal substrate platelets, pigments based on lenticular metal substrate platelets, pigments based on metal substrate platelets, including "vacuum metallised pigments" (VMPs), and mixtures thereof, and / or at least one pigment based on natural or synthetic mica coated with at least one metal oxide and / or metal oxychloride, The method according to any one of [1] to

[13] .

[15] Separately manufactured: a first container containing an agent (a′), wherein the agent contains (a′): (a1) at least one organosilicon compound selected from the group consisting of silanes having one, two, or three silicon atoms; and a second container containing an agent (a″), which agent contains (a″): (a2) at least one hydroxycarboxylic acid ester; a third container containing an agent (a'''), the agent comprising (a'''): (a3) at least one diol, and a fourth container containing an agent (b), wherein the agent contains (b): (b1) at least one sealing reagent; A multi-component package unit (kit of parts) for dyeing keratinous materials, comprising: wherein at least one of the agents (a''), (a''') and (b) further comprises at least one coloring compound selected from the group consisting of pigments and / or direct dyes.

Claims

1. Steps below: applying an agent (a) to the keratinous materials, wherein said agent (a) has an alkaline pH and comprises: (a1) at least one organosilicon compound selected from the group consisting of silanes having one, two, or three silicon atoms; and (a2) at least one hydroxycarboxylic acid ester; (a3) at least one diol, and applying an agent (b) to the keratinous material, wherein agent (b) comprises: (b1) at least one sealing reagent, wherein at least one of the agents (a) and (b) further comprises at least one coloring compound selected from the group consisting of pigments and / or direct dyes.

2. The agent (a) is represented by formula (I) and / or (II): 【Chemistry 1】 [During the ceremony, ・R 1 , R 2 are independently a hydrogen atom or C 1- C 6 represents an alkyl group, L is a linear or branched divalent C 1- C 20 is an alkylene group, ・R 3 , R 4 are, independently of each other, C 1- C 6 represents an alkyl group, a represents an integer from 1 to 3, and b represents an integer equal to 3-a. 、 【Chemistry 2】 [In the organosilicon compound of formula (II), R5, R5', R5'', R6, R6' and R6'' are independently C 1- C 6 represents an alkyl group, A, A', A'', A''', and A'''' are independently linear or branched C 1- C 20 represents a divalent alkylene group, ・R 7 and R 8 are independently a hydrogen atom, C 1- C 6 Alkyl group, hydroxy C 1- C 6 Alkyl group, C 2- C 6 Alkenyl group, amino C 1- C 6 An alkyl group or a group of formula (III): 【Transformation 3】 [·c represents an integer of 1 to 3, d represents an integer equal to 3-c, c' represents an integer from 1 to 3, d' represents an integer equal to 3-c'; c″ represents an integer from 1 to 3, d'' represents an integer equal to 3-c'', e represents 0 or 1, f represents 0 or 1, g represents 0 or 1, h represents 0 or 1; provided that at least one subscript among e, f, g, and h is different from 0. represents a group represented by the formula:

2. The process according to claim 1, characterized in that it comprises at least one organosilicon compound (a1) of the formula:

3. The agent (a) has the formula (I): 【Chemistry 4】 [In the formula, ・R 1 , R 2 Each represents a hydrogen atom, ・L is a linear divalent C 1- C 6 is an alkylene group, ・R 3 , R 4 each independently represents a methyl group or an ethyl group; a represents the number 3, and b represents the number 0.

3. The process according to claim 1 or 2, characterized in that it comprises at least one organosilicon compound (a1) of the formula:

4. The agent (a) is (3-aminopropyl)triethoxysilane (3-aminopropyl)trimethoxysilane 1-(3-aminopropyl)silanetriol (2-aminoethyl)triethoxysilane (2-aminoethyl)trimethoxysilane 1-(2-aminoethyl)silanetriol (3-dimethylaminopropyl)triethoxysilane (3-dimethylaminopropyl)trimethoxysilane 1-(3-dimethylaminopropyl)silanetriol (2-dimethylaminoethyl)triethoxysilane, (2-dimethylaminoethyl)trimethoxysilane, and / or 1-(2-dimethylaminoethyl)silanetriol 4. The method according to claim 1, further comprising the step of:

5. The agent (a) is represented by the formula (II): 【Transformation 5】 [During the ceremony, R5, R5', R5'', R6, R6' and R6'' independently represent a C 1 -C 6 alkyl group; A, A', A'', A''', and A'''' independently represent a linear or branched C1-C20 divalent alkylene group; R 7 and R 8 are independently a hydrogen atom, a C 1-C 6 alkyl group, a hydroxy C 1-C 6 alkyl group, a C 2-C 6 alkenyl group, an amino C 1-C 6 alkyl group, or a group represented by formula (III): 【Transformation 6】 [·c represents an integer of 1 to 3, d represents an integer equal to 3-c, c' represents an integer from 1 to 3, d' represents an integer equal to 3-c'; c″ represents an integer from 1 to 3, d'' represents an integer equal to 3-c'', e represents 0 or 1, f represents 0 or 1, g represents 0 or 1, h represents 0 or 1; provided that at least one subscript among e, f, g, and h is different from 0. represents a group represented by the formula: At least one organosilicon compound (a1) of the formula In the above formula, e and f both represent the number 1, g and h both represent the number 0, A and A' are each independently a linear divalent C 1- C 6 represents an alkylene group, ・R 7 represents a hydrogen atom, a methyl group, a 2-hydroxyethyl group, a 2-alkenyl group, a 2-aminoethyl group or a group of formula (III), 5. The method according to claim 1, further comprising the step of: (a1) forming a silicon dioxide powder;

6. The agent (a) is represented by formula (IV): 【Transformation 7】 [In the formula, ・R 9 is C 1- C 18 represents an alkyl group, ・R 10 is a hydrogen atom or C 1- C 6 represents an alkyl group, ・R 11 is C 1- C 6 represents an alkyl group, k is an integer from 1 to 3, and m represents an integer 3-k] The method according to any one of claims 1 to 5, characterized in that it contains at least one organosilicon compound (a1) of the formula:

7. The agent (a) is ・Methyltrimethoxysilane ・Methyltriethoxysilane ・Ethyltrimethoxysilane ・Ethyltriethoxysilane ・Propyltrimethoxysilane ・Propyltriethoxysilane ・Hexyltrimethoxysilane ・Hexyltriethoxysilane ・Octyltrimethoxysilane ・Octyltriethoxysilane - dodecyltrimethoxysilane, - dodecyltriethoxysilane, octadecyltrimethoxysilane, Octadecyltriethoxysilane and ・Mixtures thereof 7. The method according to claim 1, further comprising the step of:

8. 8. The method according to claim 1, wherein the agent (a) comprises at least two structurally different organosilicon compounds (a1).

9. The method according to any one of claims 1 to 8, characterized in that the sealing reagent comprises a compound selected from the group consisting of a film-forming polymer, an alkalizing agent, an acidifying agent and mixtures thereof.

10. 10. The method according to claim 1, wherein the agent (a) comprises, as hydroxycarboxylic acid ester (a2), triethyl citric acid ester.

11. 11. The method according to claim 1, wherein the agent (a) comprises at least one diol (a3) ​​selected from the group consisting of ethylene glycol, 1,2-propylene glycol and 1,3-propylene glycol.

12. 12. The method according to any one of claims 1 to 11, wherein agent (a) and agent (b) each further comprise at least one coloring compound selected from the group consisting of pigments and / or direct dyes.

13. 12. The method according to any one of claims 1 to 11, characterized in that the agent (b) further comprises a coloring compound selected from the group consisting of pigments and / or direct dyes.

14. The agent (a) further comprises a coloring compound selected from the group consisting of pigments and / or direct dyes, The method according to any one of claims 1 to 11.

15. Separately manufactured: a first container containing an agent (a′), wherein the agent contains (a′): (a1) at least one organosilicon compound selected from the group consisting of silanes having one, two, or three silicon atoms; and a second container containing an agent (a″), which agent contains (a″): (a2) at least one hydroxycarboxylic acid ester; a third container containing an agent (a'''), the agent comprising (a'''): (a3) at least one diol, and a fourth container comprising an agent (b), wherein the agent contains (b): (b1) at least one sealing reagent; wherein at least one of the agents (a"), (a"), and (b) further comprises at least one coloring compound selected from the group consisting of pigments and / or direct dyes, and the mixture of agents (a'), (a"), and (a") has an alkaline pH.

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