Emulsifying agent 1 composition

By using specific ionic surfactants and controlling pH, the emulsified first agents for oxidative hair dyeing or bleaching with carbonates achieve enhanced stability and hair brightness without separation.

JP7841725B2Active Publication Date: 2026-04-07HOYU CO LTD
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Patent Information

Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2021-04-28
Publication Date
2026-04-07

AI Technical Summary

Technical Problem

Existing emulsified first agents for oxidative hair dyeing or bleaching containing carbonates suffer from decreased storage stability, particularly at high temperatures, and conventional solutions like adding thickening agents or increasing surfactant amounts have not been satisfactory.

Method used

Incorporating specific ionic surfactants, such as N-acyl taurine salts, alkyl sulfates with 14 or more carbon atoms, and quaternary ammonium salt type cationic surfactants, in a mass ratio of 0.15 or more relative to carbonates, and maintaining a pH less than 11, stabilizes the emulsion.

Benefits of technology

The emulsifying agent composition maintains stability, prevents separation, and maintains hair brightness while improving the feel of treated hair.

✦ Generated by Eureka AI based on patent content.

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Abstract

To prevent a decrease in the storage stability of an emulsified first agent for oxidative hair dyeing or hair bleaching / decolorizing that contains a carbonate.SOLUTION: An emulsified first agent for oxidative hair dyeing or hair bleaching / decolorizing contains the following components (A) and (B). The mass ratio between the contents of the components (A) and (B), (B) / (A), is 0.15 or more and the pH is less than 11: (A) at least one carbonate and (B) at least one selected from the following (B1)-(B3): (B1) N-acyl taurine salt, (B2) an anionic surfactant which is an alkyl sulfate having an alkyl group with 14 or more carbon atoms and (B3) a quaternary ammonium salt-based cationic surfactant.SELECTED DRAWING: None
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Description

Technical Field

[0001] The present invention relates to an emulsified first agent composition for oxidative hair dyeing or hair bleaching and decoloring. More specifically, it relates to an emulsified first agent composition containing a carbonate as an alkali agent and a specific ionic surfactant in a certain mass ratio and adjusted to a pH within a predetermined range.

Background Art

[0002] As is well known, multi-agent type oxidative hair dyes and hair bleaching agents have, as basic components, a first agent containing an alkali agent (and also containing an oxidative dye in the case of an oxidative hair dye) and a second agent containing an oxidizing agent. The oxidizing agent in the second agent decomposes the melanin pigment in the hair to perform decolorization, and in the oxidative hair dye, it further polymerizes and develops an oxidative dye to perform hair dyeing. The alkali agent in the first agent plays an important role in ensuring the hair decolorization effect and the oxidative hair dyeing effect by enhancing the action of the oxidizing agent and swelling the hair to increase the permeability of the oxidative dye and the oxidizing agent into the hair.

[0003] Ammonia, which is a typical alkali agent incorporated into the first agent, has the drawback of having an unpleasant irritating odor. As an alternative alkali agent, for example, organic amines such as alkanolamine are also used, but there are drawbacks such as accumulation on the scalp and irritation to the scalp.

[0004] In consideration of such drawbacks, carbonates are often used as an alkali agent instead of or together with ammonia and the like. Naturally, the use of carbonates can avoid or reduce the irritating odor of ammonia, and carbonates also have the advantage that an improvement in the hair lightness after treatment can be expected.

Prior Art Documents

Patent Documents

[0005]

Patent Document 1

Patent Document 2

Patent Document 3

[0006] Patent Document 1 relates to the first emulsifying agent for a two-part oxidative hair dye / bleaching agent. Each of the formulation examples shown in Tables 2 to 6 contains ammonium bicarbonate as an alkaline agent and alkyl sulfates such as sodium cetyl sulfate and sodium cetostearyl sulfate as anionic surfactants.

[0007] Patent Document 1 describes, based on the evaluation results of Formulation Example 25, that alkyl sulfates having a linear alkyl group with 16 or more carbon atoms are effective for the long-term storage stability of the first emulsifier (paragraph 0078). However, a comparison of Formulation Example 25 and Formulation Example 24 reveals that the evaluation is influenced by the presence or absence of a certain fatty acid, so the description in paragraph 0078 is a misunderstanding on the part of the inventor of Patent Document 1.

[0008] Patent Document 2 relates to a first-agent emulsion composition for hair dyeing or bleaching. This first agent contains an anionic surfactant, which is an alkyl sulfate or a salt thereof, as an essential component (Claim 1), and it is stated that it may contain various carbonates as an alkaline agent (Paragraph 0048). However, there are no examples of carbonates being included, and according to the evaluation of comparative examples, the stability of the first-agent emulsion composition cannot be ensured if (A) a quaternary ammonium type cationic surfactant, which is an essential component of the first agent, is not included, or if the content ratio of both components (A) and (B) (A) / (B) deviates from the range of 0.2 to 16.

[0009] Patent Document 3 relates to an oil-in-water droplet type emulsifying formulation which is the first agent of an oxidative hair dye, hair bleaching agent, or hair decolorizing agent. Component (A) of this first agent is an alkaline agent containing at least a carbonate, and component (C) is a surfactant. Sodium cetostearyl sulfate and sodium cetyl sulfate are given as examples of component (C), but the effects of incorporating these alkyl sulfates are not mentioned, and they are not included at all in the examples.

[0010] Patent Document 4 relates to an oxidative hair dye composition, such as a cream containing an oxidative dye, that can prevent scalp staining while maintaining excellent hair dyeing power. It contains 1 to 20% by weight of ascorbic acid derivatives and carbonates, and is mixed with an oxidizing agent containing hydrogen peroxide at the time of use. Anionic surfactants such as alkyl sulfate esters and quaternary ammonium salt type cationic surfactants can also be incorporated. [Overview of the Initiative] [Problems that the invention aims to solve]

[0011] As mentioned above, carbonates are often included as alkaline agents in the first agent of oxidative hair dyes and hair bleaches. However, when carbonates are added to emulsified first agents such as creams, there is a problem that the storage stability of the first agent decreases and the emulsion tends to separate. This problem was particularly noticeable when carbonates were included in high concentrations, and especially when the first agent was stored at high temperatures.

[0012] Conventionally, measures have been taken to address the above problems, such as adding a thickening agent to the first agent to increase viscosity or increasing the amount of surfactant to enhance emulsifying power. However, these methods have had practical drawbacks, such as worsening cream handling, and have not always been satisfactory.

[0013] Therefore, the technical problem to be solved by the present invention is to provide a new practical means that can overcome the decrease in storage stability of the first emulsifying agent for oxidative hair dyeing or hair bleaching / decolorization, which contains a carbonate as an alkaline agent.

[0014] As a result of researching means to solve the above problems, the inventors of this invention have found that the problem of reduced storage stability, particularly when stored at high temperatures, in the first emulsifying agent for oxidative hair dyeing or hair bleaching / decolorization containing carbonate can be solved by incorporating a specific ionic surfactant in a certain content ratio relative to the carbonate, and by also considering the pH of the first agent, and have completed the present invention. [Means for solving the problem]

[0015] (Structure of the first invention) The present invention, which solves the above problems, is an emulsifying agent composition for oxidative hair dyeing or hair bleaching / decolorization containing the following component (A) and component (B), wherein the mass ratio of the content of component (B) to the content of component (A), (B) / (A), is 0.15 or more, and the pH is less than 11. (A) One or more types of carbonates. (B) One or more selected from (B1) to (B3) below. (B1) N-acyl taurine salt. (B2) Anionic surfactants that are alkyl sulfates having an alkyl group with 14 or more carbon atoms. (B3) Quaternary ammonium salt type cationic surfactant.

[0016] In the first invention described above, the carbonate, which is component (A), refers to a carbonate used as an alkaline agent in the field of hair cosmetics, and does not indefinitely include organic and inorganic carbonates. As will be explained in more detail later, typical examples of carbonates are metallic carbonates or bicarbonates. Furthermore, "alkyl sulfates having an alkyl group with 14 or more carbon atoms" means alkyl sulfates having a linear or branched alkyl group with 14 or more carbon atoms, and does not include, for example, dialkyl sulfates that have two alkyl groups with 7 carbon atoms each, for a total of 14 carbon atoms.

[0017] (Structure of the second invention) In the second invention of this application, which solves the above-mentioned problems, the emulsifying first agent composition according to the first invention is excluded, wherein the first agent composition contains 1 to 20% by weight of ascorbic acid.

[0018] In the second invention described above, the vague expression "ascorbic acids" is used, but this is a direct transcription of the expression in claim 1 of Patent Document 4 in order to accurately exclude the invention related to Patent Document 4.

[0019] And, in order to avoid the ambiguity of "ascorbic acids" as much as possible, the description described in paragraph 0008 of Patent Document 4 is also followed in the present application. That is, ascorbic acids refer to ascorbic acid, sodium ascorbate, potassium ascorbate, calcium ascorbate, ammonium ascorbate, ascorbic acid monoethanolamine, ascorbic acid diethanolamine, erythorbic acid, sodium erythorbate, disodium ascorbic acid sulfate ester, magnesium ascorbic acid phosphate, ascorbyl palmitate, ascorbyl stearate, ascorbyl dipalmitate, ascorbyl tetra-2-hexyldecanoate, ascorbyl myristate, ascorbyl laurate, ascorbyl acetate, ascorbyl propionate, ascorbyl tartrate, ascorbyl citrate, ascorbyl succinate, ascorbyl benzoate, potassium (ascorbyl / tocopheryl) phosphate, ascorbyl ethyl, ascorbic acid allantoin, ascorbic acid chitosan, ascorbic acid methylsilanol, ascorbyl tetradecylhexyl, aminopropyl ascorbyl phosphate, ascorbic acid polypeptide, ascorbyl glucoside, ascorbyl methylsilanol pectinate, etc.

[0020] (Configuration of the Third Invention) In the third invention of the present application for solving the above problems, the pH of the emulsifying first agent composition according to the first invention or the second invention is 8 or more.

[0021] (Configuration of the Fourth Invention) In the fourth invention of the present application for solving the above problems, the (B3) quaternary ammonium salt type cationic surfactant in the emulsifying first agent composition according to any one of the first to third inventions has an alkyl group having 20 or more carbon atoms. Further, the semantic meaning of "having an alkyl group having 20 or more carbon atoms" conforms to the definition of "having an alkyl group having 14 or more carbon atoms" described above for the (B2) component.

[0022] (Configuration of the Fifth Invention) In the fifth invention of this application, which solves the above problems, the emulsifying agent composition according to any of the first to fourth inventions further contains 0.1 to 12% by mass of the following component (C). (C) An oily component that is solid at 25℃.

[0023] (Structure of the 6th invention) In the sixth invention of this application, which solves the above problems, the emulsifying agent composition according to any of the first to fifth inventions contains 4% by mass or more of component (A). [Effects of the Invention]

[0024] (Effects of the first invention) The first agent composition of the first invention is an emulsifying composition containing (A) a carbonate, but also contains one or more of the following as component (B): (B1) N-acyl taurine salt, (B2) an anionic surfactant which is an alkyl sulfate having an alkyl group with 14 or more carbon atoms, and (B3) a quaternary ammonium salt type cationic surfactant. Furthermore, the mass ratio of the content of component (B) to the content of component (A), (B) / (A), is 0.15 or more, and the pH is less than 11, so that a decrease in storage stability of the first emulsifying agent (separation of the first emulsifying agent) can be suppressed. In addition, even if carbonate is blended together with (B2) an alkyl sulfate having an alkyl group with 14 or more carbon atoms, the effect of the carbonate in improving the brightness of hair is not impaired.

[0025] If the mass ratio (B) / (A) is less than 0.15, the storage stability of the first agent cannot be ensured due to a relative deficiency of component (B) to component (A). Even if the mass ratio (B) / (A) value increases, the storage stability effect of the first agent does not decrease, but the effect gradually saturates.

[0026] According to the inventor's research, in the first agent containing carbonate, the bicarbonate ion [HCO3] - ] and carbonate ions [CO3 2-The two components are in equilibrium, and when the pH of the first component changes, the equilibrium shifts towards one of the ions. However, the product of the bicarbonate ion concentration and the carbonate ion concentration remains constant, and this product is determined by the carbonate content of the first component. However, it has been found that the stability of the first emulsifying component is affected not only by the carbonate content of the first component but also by the pH of the first component. Therefore, the pH of the first component composition is less than 11. If the pH of the first component composition is 11 or higher, the storage stability of the first component cannot be ensured.

[0027] Furthermore, since component (B) is one or more selected from (B1) N-acyl taurine salt, (B2) anionic surfactant which is an alkyl sulfate having an alkyl group with 14 or more carbon atoms, and (B3) quaternary ammonium salt type cationic surfactant, the storage stability of the first emulsifying agent of the present invention is particularly improved.

[0028] (Effects of the second invention) Preferably, the emulsifying agent composition of the present invention excludes the agent composition containing 1 to 20% by weight of ascorbic acid.

[0029] (Effects of the third invention) As mentioned above, the storage stability of the first emulsifying agent composition is ensured when the pH is less than 11. However, when the pH is 8 or higher and less than 11, the generation of bubbles in the first emulsifying agent composition is further prevented, and the brightness of the treated hair is also improved.

[0030] (Effects of the fourth invention) The type of quaternary ammonium salt type cationic surfactant, which is component (B3), is not limited, but for the storage stability of the first emulsifying agent of the present invention, one having an alkyl group with 20 or more carbon atoms is more preferable. The feel of the treated hair is also improved.

[0031] (Effects of the fifth invention) When the first emulsifying agent composition contains 0.1 to 12% by mass of an oily component that is solid at (C)25°C, the storage stability of the first emulsifying agent is particularly excellent. The feel of the treated hair is also improved.

[0032] (Effects of the sixth invention) When the first emulsifying agent composition contains 4% by mass or more of one or more of (A) carbonates, the lightness of the treated hair is particularly excellent. Furthermore, when a high concentration of carbonates, which are salts, is added (4% by mass or more), the emulsifying agent composition usually becomes unstable. However, in the sixth invention, since one or more ionic surfactants selected from components (B1), (B2), and (B3) are added along with 4% by mass or more of carbonates, the emulsifying agent composition does not become unstable. This is a new finding of the present inventor. In addition, the feel of the treated hair is also improved. [Modes for carrying out the invention]

[0033] Embodiments of the present invention, including its best mode, are described below. The technical scope of the present invention is not limited by the following embodiments.

[0034] [Emulsifying agent 1 composition] The first agent composition according to the present invention is a first agent for oxidative hair dyeing or hair bleaching / decolorization, and is an emulsifier in the form of a lotion or cream, and contains (A) component: one or more carbonates, (B) component: one or more selected from (B1) N-acyl taurine salt, (B2) anionic surfactant which is an alkyl sulfate having an alkyl group with 14 or more carbon atoms, and (B3) quaternary ammonium salt type cationic surfactant, and the mass ratio of the content of components (A) and (B), (B) / (A), is 0.15 or more, and the pH is less than 11.

[0035] (A) The carbonate, which is component (A), is included as an alkaline agent, but other known alkaline agents, such as ammonia, ammonium salts, alkanolamines, etc., may be used in combination with component (A) as long as they do not cause any particular problems.

[0036] In the first agent for oxidative hair dyeing, an oxidative dye is included as an essential component in addition to the components (A) and (B) above. The oxidative dye consists of a main intermediate, or a main intermediate and a coupler. In some cases, a direct dye may be included in addition to the oxidative dye.

[0037] The first agent for hair bleaching and decolorization does not contain the various dyes mentioned above. The first agent for hair bleaching and decolorization of the present invention also includes, if formulationly possible, a first agent for hair decolorization that aims to decompose not only the melanin pigment in the hair but also the dye in previously colored hair.

[0038] [Second drug] The first agent for oxidative hair dyeing or hair bleaching / decolorization of the present invention is used in combination with a second agent containing an oxidizing agent. A third agent containing any additional components may be added to these agents. The dosage forms of these second and third agents are not limited, but they may be emulsifiers, similar to the first agent.

[0039] [Component (A)] (A) The carbonate, which is component (A), is not limited as long as it is formulated as an alkaline agent, but metallic carbonates or bicarbonates are preferred examples. Specifically, sodium carbonate, sodium bicarbonate, potassium carbonate, potassium bicarbonate, lithium carbonate, calcium carbonate, magnesium carbonate, barium carbonate, guanidine carbonate, guanidine bicarbonate, etc. are examples. In addition, ammonium carbonate, ammonium bicarbonate, etc. are particularly preferred examples.

[0040] The amount of one or more components (A) in the first agent is not particularly limited as long as the mass ratio (B) / (A) with component (B), described later, is within a predetermined range. However, for the reasons stated above in the "Effects of the First Invention" and "Effects of the Sixth Invention" sections, assuming that the pH of the first agent is less than 11, the amount of component (A) is preferably in the range of 1 to 10% by mass, particularly preferably in the range of 2 to 8% by mass, and even more preferably in the range of 4 to 6% by mass.

[0041] [(B) component] Component (B) is one or more selected from (B1) N-acyl taurine salt, (B2) an anionic surfactant which is an alkyl sulfate salt having an alkyl group with 14 or more carbon atoms, and (B3) a quaternary ammonium salt type cationic surfactant. Component (B1), component (B2), or component (B3) may each be contained in the first emulsifier individually, or two or more may be contained. From the viewpoint of suppressing complex formation due to the different ionic properties of the anionic properties of component (B1) and component (B2) and the cationic properties of component (B3), it is preferable that component (B1) and / or component (B2) be contained in the first agent.

[0042] (B1) As the N-acyl taurine salt, preferred examples include N-acyl taurine salts having 14 or more carbon atoms, such as sodium myristoyl methyl taurate, sodium palmitoyl methyl taurate, and sodium stearoyl methyl taurate. Furthermore, N-acyl taurine salts having 16 or more carbon atoms, such as sodium palmitoyl methyl taurate and sodium stearoyl methyl taurate, are particularly preferred examples.

[0043] Examples of alkyl groups with 14 or more carbon atoms in the alkyl sulfate, which is component (B2), include saturated alkyl groups such as myristyl, cetyl, stearyl, arachidyl, and behenyl groups, as well as unsaturated alkyl groups such as oleyl groups and branched alkyl groups such as isostearyl groups. For the reasons described in the section "Effects of the Invention 4," those having cetyl or stearyl groups with 16 or more carbon atoms are particularly preferred, and sodium cetyl sulfate and sodium stearyl sulfate are particularly preferred examples. Alkyl sulfates include not only monoalkyl sulfates but also dialkyl sulfates, etc. Furthermore, sulfates include not only sodium and potassium salts of sulfuric acid, but also magnesium salts, ammonium salts, etc., without limitation.

[0044] Examples of the quaternary ammonium salt type cationic surfactant, which is component (B3), include alkyltrimethylammonium chlorides such as behenyltrimethylammonium chloride, cetyltrimethylammonium chloride, and stearyltrimethylammonium chloride; alkyltrimethylammonium bromides such as cetyltrimethylammonium bromide and stearyltrimethylammonium bromide; dialkyldimethylammonium chlorides such as distearyldimethylammonium chloride; as well as lanolin fatty acid aminopropylethyldimethylammonium ethyl sulfate, stearyltrimethylammonium saccharin, cetyltrimethylammonium saccharin, and behenyltrimethylammonium methyl sulfate. Behenyltrimethylammonium chloride having an alkyl group with 20 or more carbon atoms is particularly preferred.

[0045] The content of one or more components (B) in the first agent is not particularly limited, as is the case with component (A), as long as the mass ratio (B) / (A) described later is within a predetermined range. However, generally, the content of component (B) is preferably in the range of 0.5 to 10% by mass, and particularly preferably in the range of 1 to 5% by mass.

[0046] [Mass ratio (B) / (A)] The mass ratio (B) / (A) of the content of component (B) to component (A) in the first agent is 0.15 or higher for the reasons stated above in the "Effects of the First Invention" section. The lower limit of this value is not limited, but it is preferably 0.2 or higher, and more preferably 0.3 or higher. The upper limit of this value is not limited, but it is preferably 4.0 or lower, more preferably 1.5 or lower, even more preferably 1.0 or lower, and particularly preferably 0.8 or lower.

[0047] [pH of the first agent for oxidative hair dyeing or hair bleaching / decolorization] The pH of the first agent for oxidative hair dyeing or hair bleaching / decolorization is 8 or higher and less than 11, for the reasons stated above in the "Effects of the First Invention" section. It is particularly preferable that the pH be in the range of 9 to 10.

[0048] [(C) component] (C) Examples of oily components that are solid at 25°C include higher alcohols, higher fatty acids, waxes, hydrocarbons, animal and vegetable oils and fats, silicones, etc., that are solid at 25°C. "Solid" includes substances that are somewhat paste-like, such as petrolatum. The content of component (C) in the first emulsifying agent composition is not limited, but a content of approximately 0.1 to 12% by mass is advantageous for the storage stability of the first emulsifying agent composition.

[0049] (C) Specifically, the components include the hydrocarbons paraffin, microcrystalline wax, and petrolatum; the higher alcohols cetanol, stearyl alcohol, and behenyl alcohol; the higher fatty acids palmitic acid, stearic acid, and behenic acid; the animal and vegetable oils cocoa butter and shea butter; and the silicones highly polymerized methylpolysiloxane.

[0050] [Other ingredients] (Oxidizing agent) The second oxidative hair dyeing or hair bleaching / decolorizing agent, used in combination with the first oxidative hair dyeing or hair bleaching / decolorizing agent of the present invention, contains at least an oxidizing agent. The type of oxidizing agent is not limited, but specific examples include hydrogen peroxide, urea peroxide, melamine peroxide, sodium percarbonate, potassium percarbonate, sodium perborate, potassium perborate, ammonium persulfate, potassium persulfate, sodium persulfate, sodium peroxide, potassium peroxide, magnesium peroxide, barium peroxide, calcium peroxide, strontium peroxide, hydrogen peroxide adducts of sulfates, hydrogen peroxide adducts of phosphates, and hydrogen peroxide adducts of pyrophosphates.

[0051] The content of the oxidizing agent is set as appropriate, but when using an oxidative hair dye or hair bleaching agent (when mixing each agent), it is, for example, 0.1% by mass or more, more preferably 2% by mass or more, and even more preferably 3% by mass or more. On the other hand, from the viewpoint of further suppressing hair damage, it is 15% by mass or less, more preferably 9% by mass or less, and even more preferably 6% by mass or less.

[0052] (Oxidation dyes) The oxidative dyes contained in the first agent for oxidative hair dyeing are dye intermediates, or dye intermediates and couplers. The content of these oxidative dyes when using oxidative hair dyes is determined appropriately considering the hair dyeing effect and is not particularly limited. Direct dyes such as acid dyes, basic dyes, natural dyes, nitro dyes, HC dyes, and disperse dyes can also be added as appropriate.

[0053] Specific examples of dye intermediates include p-phenylenediamine, p-toluenediamine, p-aminophenol, 2,2'-[(4-aminophenyl)imino]bisethanol and their salts. Other examples include 2,4,5,6-tetraaminopyrimidine, 2,5,6-triamino-4-pyrimidinol, 1-hydroxyethyl-4,5-diaminopyrazole, N-phenyl-p-phenylenediamine, 4,4'-diaminodiphenylamine, o-aminophenol, p-methylaminophenol, 2-hydroxyethyl-p-phenylenediamine, o-chlor-p-phenylenediamine, 4-amino-m-cresol, 2-amino-4-hydroxyethylaminoanisole, 2,4-diaminophenol and their salts.

[0054] Specific examples of couplers include 2,4-diaminophenoxyethanol hydrochloride, α-naphthol, 2,6-diaminopyridine, 5-amino-o-cresol, 5-(2-hydroxyethylamino)-2-methylphenol, resorcinol, m-aminophenol, catechol, pyrogallol, phloroglucin, gallic acid, hydroquinone, m-phenylenediamine, toluene-3,4-diamine, diphenylamine, 3,3'-iminodiphenyl, 1,5-dihydroxynaphthalene, tannic acid, 6 Examples include -methoxy-2-methylamino-3-aminopyridine, 4-chlororesorcinol, 2,7-naphthalenediol, 3-amino-2,4-dichlorophenol, 2-methylresorcinol, hydroxyethyl-3,4-methylenedioxaniline, 2,6-dihydroxy-3,4-dimethylpyridine, 2,6-dimethoxy-3,5-pyridinediamine, 2-amino-3-hydroxypyridine, 5,6-dihydroxyindoline, 5,6-dihydroxyindole, and salts thereof.

[0055] (Alkaline agent) Examples of alkaline agents to be included in the first agent include ammonia, ammonium salts, organic alkalis, inorganic alkalis, etc., other than component (A).

[0056] Examples of organic alkalis include alkanolamines (monoethanolamine, diethanolamine, triethanolamine, monoisopropanolamine, diisopropanolamine, triisopropanolamine, etc.) and organic amines (2-amino-2-methyl-1-propanol, 2-amino-2-methyl-1,3-propanediol, guanidine, etc.). Examples of inorganic alkalis include sodium hydroxide and potassium hydroxide. Other examples include basic amino acids (arginine, lysine, etc.) and their salts.

[0057] (Surfactants other than component (B)) Component (B), i.e., surfactants other than components (B1) to (B3), include anionic surfactants other than component (B), cationic surfactants other than quaternary ammonium salts, and nonionic surfactants and amphoteric surfactants.

[0058] Examples of anionic surfactants other than component (B) include alkyl sulfates having alkyl groups with fewer than 14 carbon atoms, such as sodium lauryl sulfate, alkyl sulfate esters such as triethanolamine lauryl sulfate, alkyl ether sulfate esters such as sodium POE lauryl ether sulfate, POE lauryl ether phosphate and its salts, N-lauroyl glutamates, and N-lauroyl methyl-β-alanine salts.

[0059] Examples of cationic surfactants other than quaternary ammonium salts include tertiary amine compounds, specifically hydroxyether alkylamines (e.g., hexadecyloxy(2-hydroxypropyl)dimethylamine), etheramines (e.g., N,N-dimethyl-3-hexadecyloxypropylamine), and amideamines (e.g., N-(3-(dimethylamino)propyl)docosanamide).

[0060] Examples of nonionic surfactants include ether-type surfactants, ester-type surfactants, and alkyl glucosides.

[0061] Specific examples of ether-type nonionic surfactants include POE cetyl ether (ceteth), POE stearyl ether (steareth), POE behenyl ether, POE oleyl ether (oleth), POE lauryl ether (laureth), POE octyldodecyl ether, POE isostearyl ether, and POE octylphenyl ether. Examples of ester-type nonionic surfactants include POE sorbitan monooleate, POE glycerin monostearate, POE sorbitan tetraoleate, polyethylene glycol monooleate, lipophilic glycerin monooleate, self-emulsifying glycerin monostearate, sucrose fatty acid esters, and decaglyceryl monomyristate. Specific examples of alkyl glucosides include alkyl (8-16 carbon atoms) glucosides, POE methyl glucosides, and POE dioleate methyl glucosides.

[0062] Examples of amphoteric surfactants include cocobetaine, lauramidopropyl betaine, cocamidopropyl betaine, sodium lauroamphoacetate, sodium cocoamphoacetate, coconut oil fatty acid amidopropyl betaine, and lauryl betaine (lauryldimethylaminoacetate betaine).

[0063] (Oily components) Examples of oily components include hydrocarbons such as liquid paraffin and light liquid isoparaffin, other than oily components that are solid at (C)25°C; higher alcohols such as oleyl alcohol and 2-octyldodecanol; higher fatty acids such as oleic acid and isostearic acid; animal and vegetable oils such as olive oil and sunflower oil; and methylpolysiloxane and highly polymerized methylpolysiloxane silicone with a molecular weight of less than 150,000.

[0064] (polymer compound) Examples of polymer compounds include cationic polymers such as cationized cellulose derivatives, cationic starch, cationized guar gum derivatives, diallyl quaternary ammonium salt / acrylamide copolymers, and quaternary polyvinylpyrrolidone derivatives; anionic polymers such as xanthan gum, carrageenan, sodium alginate, pectin, and gum arabic; and nonionic polymers such as guar gum, agar, hydroxyethylcellulose, carboxymethyl dextran, ethyl polyacrylate, polyacrylamide, and polyethylene glycol.

[0065] (Other optional ingredients in the first agent) In addition to the above-mentioned components, the first agent for oxidative hair dyeing or hair bleaching / decolorization of the present invention may optionally contain known components that may be incorporated into the first agent, such as polyhydric alcohols like glycol, glycerin, polyglycerin, as well as sugars like sorbitol, preservatives like parabens, antioxidants like ascorbic acid, and others, as needed or insofar as they do not inhibit the effects of the present invention. [Examples]

[0066] Examples and comparative examples of the present invention are described below. The technical scope of the present invention is not limited by these examples and comparative examples.

[0067] [Preparation of the Example] As shown in Tables 1 to 3 at the end, Examples 1 to 18 and Comparative Examples 1 to 9 of the first agent for hair decolorization and decolorization, which is an emulsion according to the present invention, were prepared according to conventional methods. These first agents are mixed with a second agent containing an oxidizing agent and applied to hair to be decolorized. Furthermore, when a general-purpose emulsified second agent containing 35% hydrogen peroxide was prepared, mixed with the above-mentioned first agent for hair bleaching and decolorization in a predetermined mass ratio, and applied to a strand of black human hair, a hair bleaching test was conducted. No particular problems were found regarding the hair bleaching effect or the feel of the hair after treatment.

[0068] In the left-hand margin of the column indicating the component name in each table, "A" is added to indicate that it corresponds to component (A) of the present invention, "B1", "B2", and "B3" are added to indicate that it corresponds to components (B1), (B2), and (B3) of the present invention, respectively, and "b" is added to indicate that it is a component used for comparison with component (B). As shown in each table, ammonium bicarbonate or sodium carbonate was used as component (A). The numerical values ​​indicating the content of the components in each table are in mass percent.

[0069] The mass ratio (B) / (A) of the content of component (B) to component (A) in the first agent of each example is shown in the "B / A" column of each table. The pH of the first agent of each example and comparative example is shown in the "pH" column of each table. The pH was measured at 25°C when the first agent of each prepared example and comparative example was diluted 10-fold with water and dissolved at a concentration of 10% by mass.

[0070] [Evaluation of the Examples] The first agent of each example and comparative example prepared as described above was placed in a transparent container and placed in a constant temperature bath at 55°C, where it was left to stand for 1 day (24 hours) in an accelerated storage stability test.

[0071] After the accelerated storage stability test was completed, the first agent of each example and comparative example was removed from the constant temperature bath, and the presence or absence of layer separation in the cream-like first agent was observed. The observation results are shown in the "Separation" column of each table. If the cream clearly separated into an aqueous layer and an oil layer, it was evaluated as "Separation: ×". If separation did not occur, it was evaluated according to the criteria shown below.

[0072] If the above result was not "Separation: ×", the unevaluated sample from the corresponding example was placed in a constant temperature bath at 55°C and left to stand for 7 days (168 hours). The presence or absence of layer separation in the creamy first agent was then observed again under more severe conditions. If the sample did not separate into an aqueous layer and an oil layer even under these severe storage stability conditions, it was evaluated as "Not Separated: ◎", if it did not separate after 5 days (120 hours), it was evaluated as "Not Separated: ○", and if it did not separate after 1 day (24 hours), it was evaluated as "Not Separated: △". The results are shown in the "Emulsification Stability" column of Tables 1 to 3.

[0073] [Table 1]

[0074] [Table 2]

[0075] [Table 3] [Industrial applicability]

[0076] The present invention provides a novel method for resolving the decrease in storage stability of the first emulsifying agent for oxidative hair dyeing or hair bleaching / decolorization that contains carbonate.

Claims

1. An emulsifying agent composition for oxidative hair dyeing or hair bleaching / decolorization, comprising the following components (A) and (B), wherein the mass ratio of the content of component (B) to the content of component (A), (B) / (A), is 0.15 or more, and the pH is less than 11. (A) One or more types of carbonates. (B) One or more selected from (B1) to (B2) below. (B1) N-acyl taurine salt having an acyl group with 16 or more carbon atoms. (B2) Anionic surfactant which is an alkyl sulfate having an alkyl group with 14 or more carbon atoms.

2. The emulsifying first agent composition according to claim 1, wherein the emulsifying first agent composition excludes a first agent composition containing 1 to 20% by weight of ascorbic acid.

3. The emulsifying agent composition according to claim 1 or claim 2, wherein the pH of the emulsifying agent composition is 8 or higher.

4. The emulsifying agent composition according to any one of claims 1 to 3, wherein the emulsifying agent composition further contains 0.1 to 12% by mass of the following component (C). (C) An oily component that is solid at 25°C.

5. (A) The emulsifying agent composition according to any one of claims 1 to 4, comprising 4% by mass or more of component (A).

Citation Information

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