Aqueous oxidizing compositions containing xanthine derivatives

Xanthine derivatives stabilize aqueous oxidizing compositions with hydrogen peroxide, addressing decomposition issues and maintaining performance in bleaching, dyeing, and permanent waving processes by enhancing chemical and physical stability.

JP7765387B2Active Publication Date: 2025-11-06KAO CORP
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Patent Information

Application Number
JP2022525529
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Priority Date
2019-10-31
Filing Date
2020-10-30
Publication Date
2025-11-06
Estimated Expiration
2040-10-30

AI Technical Summary

Technical Problem

Aqueous oxidizing compositions containing hydrogen peroxide suffer from decomposition during storage, especially at elevated temperatures, leading to reduced performance in bleaching, dyeing, and permanent waving processes.

Method used

Incorporating xanthine derivatives, such as caffeine, theobromine, or theophylline, into aqueous oxidizing compositions with hydrogen peroxide at concentrations above 5% by weight and a pH between 1 and 6 stabilizes the composition, maintaining active hydrogen peroxide levels and preventing viscosity changes.

Benefits of technology

The addition of xanthine derivatives significantly enhances the chemical and physical stability of hydrogen peroxide, ensuring consistent performance in bleaching, dyeing, and permanent waving processes over time, even at room temperature and elevated temperatures.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to aqueous oxidizing compositions comprising xanthine derivatives. It has been unexpectedly found that xanthine derivatives stabilize hydrogen peroxide compositions during storage.
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Description

[Technical Field]

[0001] The present invention relates to an aqueous oxidizing composition containing more than 5% by weight of hydrogen peroxide and certain xanthine derivatives. Additionally, oxidative dyeing, bleaching, and perming processes using the composition are disclosed. [Background technology]

[0002] Aqueous compositions containing hydrogen peroxide are well known in the art. These compositions are essential components in many industrial and technical processes. For example, bleaching or dyeing solid substrates requires the presence of an oxidizing composition. In particular, the paper, wool, and cosmetic industries rely on the performance of these compositions.

[0003] However, a common problem with such compositions is that hydrogen peroxide tends to undergo a decomposition process upon storage, thereby reducing the available active oxygen in the composition over time. This decomposition process is particularly problematic in bleaching, dyeing, and permanent waving processes. A long shelf life is essential for users of hydrogen peroxide compositions to maintain their original performance.

[0004] The self-decomposition process of hydrogen peroxide increases with temperature. Therefore, decomposition proceeds quickly in countries with warm climates or under less than ideal storage conditions in the user's facility. As a result, users experience poor performance in coloring, bleaching, or permanent waving processes compared to results obtained 2-3 months earlier with compositions having a shorter storage time.

[0005] The prior art does not adequately address this problem. For example, Patent Document 1 focuses on the formulation stability of aqueous oxidizing compositions, but not on chemical stability.

[0006] Xanthine and its derivatives are well-known ingredients in the pharmaceutical and food industries. Furthermore, cleansing compositions containing caffeine are well known (e.g., Non-Patent Document 1).

[0007] Patent Document 2 discloses an aqueous oxidizing composition containing up to 5% by weight of hydrogen peroxide and a purine derivative, particularly caffeine, which has been found to reduce damage to keratin fibers. [Prior art documents] [Patent documents]

[0008] [Patent Document 1] European Patent Application Publication No. 2198923 [Patent Document 2] International Application Publication No. 2009 / 053180 [Non-patent literature]

[0009] [Non-Patent Document 1] Mintel #6713099 Summary of the Invention

[0010] The first object of the present invention is to a) hydrogen peroxide in a concentration greater than 5% by weight calculated relative to the total weight of the composition, and b) the following structure:

[0011] [ka]

[0012] wherein R1, R2, and R3 are independently selected from H and CH3, and / or mixtures thereof. and having a pH in the range of 1 to 6.

[0013] A second object of the present invention is a method for stabilizing an aqueous oxidizing composition, comprising: i) providing an aqueous composition containing hydrogen peroxide at a concentration greater than 5% by weight calculated relative to the total weight of the composition; ii) adding to the composition defined in step i) a compound having the following structure:

[0014] [ka]

[0015] wherein R1, R2, and R3 are independently selected from H and CH3, and / or a mixture thereof; The method includes:

[0016] A third object of the present invention is a method for oxidative dyeing of keratinous fibers, preferably human keratinous fibers, more preferably human hair, comprising: iii) providing a composition as defined above; iv) mixing the composition with an aqueous composition having a pH in the range of 7 to 12 and comprising one or more oxidative dye precursors to prepare a ready-to-use composition having a pH in the range of 7 to 12; v) applying the ready-to-use composition to the keratin fibers and leaving it for 1 to 60 minutes; vi) rinsing the keratinous fibers and optionally shampooing the keratinous fibers; The method includes:

[0017] A fourth object of the present invention is a method for bleaching and / or lightening keratinous fibers, preferably human keratinous fibers, more preferably human hair, comprising: vii) providing a composition as defined above; viii) mixing the composition with a bleaching powder composition comprising one or more persalts and / or peroxy salts and one or more alkalizing agents to prepare a ready-to-use composition having a pH in the range of 7 to 12; ix) applying the ready-to-use composition to the keratin fibers and leaving it for a period ranging from 1 to 60 minutes; x) rinsing the keratin fibers and optionally shampooing the keratin fibers; The method includes:

[0018] A fifth object of the present invention is a method for bleaching and / or lightening keratinous fibers, preferably human keratinous fibers, more preferably human hair, comprising: xi) providing a composition as defined above; xii) mixing the composition with an aqueous lightening composition comprising one or more alkalizing agents to prepare a ready-to-use composition having a pH in the range of 7 to 12; xiii) applying the ready-to-use composition to the keratin fibers and leaving it for a period ranging from 1 to 60 minutes; xiv) rinsing the keratinous fibers and optionally shampooing the keratinous fibers; The method includes:

[0019] A sixth object of the present invention is a method for permanently shaping keratinous fibers, preferably human keratinous fibers, more preferably human hair, comprising: xv) optionally washing the keratin fibers with shampoo; xvi) placing the hair under mechanical tension; xvii) applying to the keratin fibers an aqueous composition having a pH ranging from 3 to 12, comprising one or more reducing agents and one or more alkalizing agents, and leaving the composition for a period ranging from 1 minute to 60 minutes; xviii) optionally rinsing the composition; xix) preparing a composition as defined above, applying it to the keratin fibers and leaving it for a period ranging from 1 minute to 30 minutes; xx) releasing the mechanical tension from the keratin fibers; xxi) rinsing the keratinous fibers and optionally shampooing the keratinous fibers; Including, with the proviso that steps xvi) and xvii), and steps xix) and xx) may be performed in any order.

[0020] A seventh object of the present invention is to provide a compound having the following general structure:

[0021] [ka]

[0022] wherein R1, R2, and R3 are independently selected from H and CH3, for improving the storage stability of an aqueous composition containing hydrogen peroxide.

[0023] An eighth object of the present invention is to provide a composition as defined above, an aqueous composition having a pH in the range of 7 to 12 and comprising one or more oxidation dye precursors and / or oxidation dye couplers, a bleaching powder composition comprising one or more persalts and / or peroxy salts and one or more alkalizing agents, an aqueous lightening composition comprising one or more alkalizing agents and having a pH in the range of 7 to 12; an aqueous composition having a pH in the range of 7 to 12, comprising one or more reducing agents and one or more alkalizing agents; and one or more compositions selected from A kit of parts comprising:

[0024] Despite attempts in the prior art, they have failed to provide a satisfactory solution for improving the chemical and physical storage stability of aqueous oxidizing compositions containing hydrogen peroxide.

[0025] The present inventors have unexpectedly discovered that xanthine and its derivatives increase the chemical and physical storage stability of aqueous oxidizing compositions containing hydrogen peroxide at room temperature and elevated temperatures alike. Furthermore, xanthine and its derivatives can maintain active hydrogen peroxide during storage and prevent viscosity changes. Thus, bleaching / lightening, oxidative dyeing, and permanent waving processes have unexpectedly been found to perform more consistently over time.

[0026] [Aqueous oxidizing composition] The aqueous oxidizing composition according to the present invention has a pH in the range of 1 to 6, a) hydrogen peroxide in a concentration greater than 5% by weight calculated relative to the total weight of the composition, and b) the following structure:

[0027] [ka]

[0028] wherein R1, R2, and R3 are independently selected from H and CH3; and / or mixtures thereof. Includes.

[0029] The pH of the composition is preferably 1.25 or higher, more preferably 1.5 or higher, and even more preferably 2 or higher, from the viewpoint of storage stability and safety of the composition. The pH of the composition is preferably 5 or less, more preferably 4 or less, and even more preferably 3 or less, from the viewpoint of storage stability of the composition. In order to obtain the above-mentioned effects, the pH of the composition is preferably in the range of 1.25 to 5, more preferably in the range of 1.5 to 4, and even more preferably in the range of 2 to 3.

[0030] The concentration of the compound a) is preferably in the range of more than 5% by weight, more preferably 6% by weight or more, and even more preferably 9% by weight or more, calculated relative to the total weight of the composition, from the viewpoint of product performance. The concentration of the compound a) is preferably 20% by weight or less, more preferably 15% by weight or less, and even more preferably 12% by weight or less, calculated based on the total weight of the composition, from the viewpoints of product performance and user safety. To achieve the above-mentioned effects, the concentration of the compound a) is preferably in the range of more than 5% by weight to 20% by weight, more preferably 6% by weight to 15% by weight, and even more preferably 9% by weight to 12% by weight, calculated based on the total weight of the composition.

[0031] Suitable xanthines and / or xanthine derivatives according to the structure of compound b) are - xanthines, where R1=R2=R3=H; theobromine, where R1=R3=CH3 and R2=H, theophylline, where R2=R3=CH3 and R1=H, and - Caffeine, where R1=R2=R3=CH3 is. Mixtures of the above are also suitable.

[0032] It is preferable from an economical point of view that at least one of the compounds in b) is caffeine.

[0033] From the viewpoint of stabilizing performance, the total concentration of the compound b) is preferably 0.001% by weight or more, more preferably 0.01% by weight or more, even more preferably 0.02% by weight or more, and still more preferably 0.03% by weight or more, calculated based on the total weight of the composition. For economical reasons and from the viewpoint of stabilizing performance, the total concentration of the compounds of b) is preferably 0.5% by weight or less, more preferably 0.25% by weight or less, even more preferably 0.1% by weight or less, and even more preferably 0.08% by weight or less, calculated based on the total weight of the composition. To achieve the above-mentioned effects, the total concentration of the compound (b) is preferably in the range of 0.001% by weight to 0.5% by weight, more preferably in the range of 0.01% by weight to 0.25% by weight, even more preferably in the range of 0.02% by weight to 0.1% by weight, and even more preferably in the range of 0.03% by weight to 0.08% by weight, calculated relative to the total weight of the composition.

[0034] The weight ratio of the compounds a) and b) is preferably 2 or more, more preferably 20 or more, even more preferably 37.5 or more, and even more preferably 100 or more, from the viewpoint of stabilizing performance. The weight ratio of the compounds a) and b) is preferably 1,000 or less, more preferably 600 or less, even more preferably 400 or less, and even more preferably 150 or less, from the viewpoint of stabilizing performance. To achieve the above-mentioned effects, the weight ratio of compounds a) to b) is preferably in the range of 2 to 1,000, more preferably in the range of 20 to 600, even more preferably in the range of 37.5 to 400, and even more preferably in the range of 100 to 150.

[0035] [Form of aqueous oxidizing composition] The composition of the present invention is preferably an emulsion, a thickened gel, or a combination thereof, from the viewpoints of cosmetic safety and user friendliness.

[0036] [Lipophilic compound as compound c)] When the compositions of the invention are formulated as emulsions and / or thickened emulsions, the compositions preferably comprise one or more lipophilic compounds as compounds c).

[0037] Preferably, the compound c) is C 12 ~C 22 Fatty alcohols, C3-C 22 Alcohol and C 12 ~C 22 Esters with fatty acids, C8-C 22They are selected from fatty acids, vegetable oils, and / or silicones, and / or hydrocarbon-based products, and / or mixtures thereof.

[0038] Appropriate C 12 ~C 22 The fatty alcohols are myristyl alcohol, cetyl alcohol, stearyl alcohol, behenyl alcohol, and cetearyl alcohol. Appropriate C3~C 22 Alcohol and C 12 ~C 22 Esters with fatty acids are isopropyl myristate, isopropyl palmitate, and myristyl myristate. Suitable for C8~C 22 The fatty acids are oleic acid, linoleic acid, and palmitic acid. Suitable vegetable oils are olive oil, almond oil, sunflower oil, and argan oil. Suitable silicones are non-aminated and aminated silicones, the latter commonly known as amodimethicone.

[0039] The total concentration of the compound c) is preferably 1% by weight or more, more preferably 2% by weight or more, and even more preferably 3% by weight or more, calculated based on the total weight of the composition, from the viewpoint of forming a stable composition and safety for users. From the viewpoint of forming a stable composition, the total concentration of the compound c) is preferably 20% by weight or less, more preferably 15% by weight or less, and even more preferably 12% by weight or less, calculated based on the total weight of the composition. To achieve the above-mentioned effects, the total concentration of the compound c) is in the range of 1% by weight to 20% by weight, preferably in the range of 2% by weight to 15% by weight, and more preferably in the range of 3% by weight to 12% by weight, calculated based on the total weight of the composition.

[0040] [Surfactant as compound d)] The composition of the present invention may further comprise, as compound d), one or more surfactants, preferably selected from nonionic surfactants, anionic surfactants, cationic surfactants, and / or amphoteric / zwitterionic surfactants, and / or mixtures thereof, more preferably selected from anionic surfactants, in order to stabilize the composition and improve wetting and mixing properties.

[0041] Preferably, the anionic surfactant may be selected from ethoxylated or non-ethoxylated alkyl ether sulfate surfactants, alkyl sulfates, ethoxylated and / or non-ethoxylated alkyl carboxylates, ethoxylated or non-ethoxylated amino acid surfactants, and / or mixtures thereof and / or salts thereof.

[0042] A good example is C 10 ~C 22 and a degree of ethoxylation of 1 to 50, or a mixture thereof, and / or a salt thereof.

[0043] Suitable nonionic surfactants may be selected from alkyl polyglycosides, ethoxylated triglycerides, ethoxylated fatty alcohols, ethoxylated fatty acid esters, and / or mixtures thereof.

[0044] Suitable cationic surfactants include C 12 ~C 22 or a quaternary ammonium surfactant having a carbon chain length in the range of C 12 ~C 22 and alkylamidoalkylamine surfactants and / or salts thereof, having at least one alkyl chain with a carbon chain length in the range of 1 to 4. Suitable examples are cetrimonium chloride and behentrimonium chloride.

[0045] Suitable amphoteric / zwitterionic surfactants are betaine type. Suitable compounds can be selected from alkyl betaines and / or alkyl amide betaines. A preferred compound selected from alkyl betaines is lauryl betaine. A preferred compound selected from alkyl amide betaines is cocamidopropyl betaine. The present disclosure also relates to salts of the compounds.

[0046] The appropriate concentration range of the surfactant is in the range of 0.1% by weight to 10% by weight, calculated based on the total weight of the composition, from the viewpoint of improving the wettability of keratin fibers, physical stability, and mixability with other compositions.

[0047] [Thickening polymer] From the viewpoint of cosmetic safety, it is further preferred that the composition of the present invention comprises one or more thickening polymers.

[0048] The composition of the present invention comprises one or more thickening polymers chosen from nonionic and / or anionic thickening polymers, and / or mixtures thereof.

[0049] Preferably, the thickening polymer is selected from polymers that result in aqueous solutions and / or dispersions at pH 1 to 6 with a viscosity of at least 1,000 mPa·s, measured at a polymer concentration of 1 wt. % in water at 25°C, calculated relative to the total weight of the composition, and determined by a Brookfield viscometer, e.g., at 25°C using a suitable spindle at 10 rpm for 1 minute.

[0050] Suitable nonionic thickening polymers are cellulose-based polymers. Suitable examples of cellulose-based polymers are methylcellulose, hydroxymethylcellulose, hydroxyethylcellulose, hydroxypropylcellulose, hydroxyethyl-methylcellulose, and alkylated hydroxylcelluloses, such as (C2-C8)-alkylcelluloses or cetyl hydroxyethylcellulose.

[0051] Suitable anionic thickening polymers are selected from natural-based anionic polymers and / or synthetic anionic polymers.

[0052] Suitable natural anionic polymers may be selected from xanthan gum, dehydroxanthan gum, hydroxypropyl xanthan gum, carboxymethylcellulose, and starch-based polymers such as vegetable starches and / or their synthetically processed derivatives, such as hydroxypropyl starch phosphate. Also suitable are alginic acid, sodium alginate, ammonium alginate, calcium alginate, gum arabic, and guar gum.

[0053] Suitable synthetic anionic polymers are associative thickening polymers, for example, acrylates / steareth-30 methacrylate copolymer.

[0054] Preferred thickening polymers for the compositions of the present invention are natural anionic polymers, more preferably xanthan gum and / or dehydroxanthan gum, in view of their biodegradability and low environmental impact.

[0055] Preferably, the total concentration of the thickening polymers of the present invention is at least 0.1% by weight, more preferably at least 0.25% by weight, more preferably at least 0.5% by weight, calculated relative to the total weight of the composition, in order to provide the composition with sufficient viscosity. Preferably, the total concentration of thickening polymers of the present invention is 15% by weight or less, more preferably 12% by weight or less, and even more preferably 10% by weight or less, calculated relative to the total weight of the composition to provide sufficient viscosity to the composition and from a cost of goods standpoint. To achieve the above-mentioned effects, the total concentration of the thickening polymer in the composition of the present invention is preferably in the range of 0.1% by weight to 15% by weight, more preferably in the range of 0.25% by weight to 12% by weight, and even more preferably in the range of 0.5% by weight to 10% by weight, calculated relative to the total weight of the composition.

[0056] From the viewpoint of cosmetic safety, the composition of the present invention has a viscosity of 1,000 to 25,000 mPa·s, preferably 2,000 to 20,000 mPa·s, and more preferably 2,500 to 17,500 mPa·s, as determined by a cone and plate viscometer at 25° C. under atmospheric conditions. A suitable viscometer is a Brookfield viscometer with a #4 spindle.

[0057] Methods and Uses for Stabilizing Oxidizing Compositions The present invention provides a method for stabilizing an aqueous oxidizing composition, comprising:

[0058] i) providing an aqueous composition containing hydrogen peroxide at a concentration greater than 5% by weight calculated relative to the total weight of the composition; ii) adding to the composition defined in step i) a compound having the following structure:

[0059] [ka]

[0060] wherein R1, R2, and R3 are independently selected from H and CH3, and / or a mixture thereof; The present invention also covers methods including the following.

[0061] The preferred concentrations for the composition defined in i) and the preferred compounds and concentrations defined in ii) are the same as those defined for the composition of the present invention above.

[0062] The present invention provides compounds having the following general structure for improving the storage stability of aqueous compositions containing hydrogen peroxide, preferably for maintaining the hydrogen peroxide concentration over the storage period:

[0063] [ka]

[0064] Also contemplated is the use of compounds of the formula: wherein R1, R2, and R3 are independently selected from H and CH3.

[0065] The preferred concentrations and compounds are the same as those defined for the compositions of the present invention above.

[0066] [Oxidation dyeing] The present invention relates to a method for oxidative dyeing of keratinous fibers, preferably human keratinous fibers, more preferably human hair, comprising the steps of: iii) providing a composition of the invention as described above; iv) mixing the composition with an aqueous composition having a pH in the range of 7 to 12 and comprising one or more oxidative dye precursors and / or oxidative dye couplers to prepare a ready-to-use composition having a pH in the range of 7 to 12; v) applying the ready-to-use composition to the keratin fibers and leaving it for 1 to 60 minutes; vi) rinsing the keratinous fibers and optionally shampooing the keratinous fibers; The present invention also covers methods including the following.

[0067] Suitable oxidation dye precursors for the composition of step iv) are, for example, p-phenylenediamine and / or its derivatives, p-aminophenol and / or its derivatives, and heterocyclic compounds, such as diaminopyrazoles and substituted pyrimidines, and / or their derivatives, and / or their salts.

[0068] Furthermore, in addition to the oxidation dye precursor, the composition of step iv) may also contain an oxidation dye coupler. Suitable oxidation dye couplers are resorcinol and / or its derivatives, m-aminophenol and / or its derivatives, m-phenylenediamine and / or its derivatives, pyridine and / or its derivatives, naphthol and / or its derivatives, and / or salts thereof.

[0069] Suitable total concentrations of oxidation dye precursors and / or oxidation dye couplers are in the range of 0.001% to 5% by weight, preferably in the range of 0.01% to 4% by weight, more preferably in the range of 0.05% to 3% by weight, and even more preferably in the range of 0.1% to 2% by weight, calculated relative to the total weight of the composition of step iv) before mixing.

[0070] Suitably, the composition of step iv) comprises one or more alkalizing agents. Preferably, the one or more alkalizing agents are ammonia, a compound having the general structure:

[0071] [ka]

[0072] wherein R4, R5, and R6 are the same or different and are H, C1-C4 alkyl, C3-C4 unsaturated alkyl, C3-C4 branched chain alkyl, C1-C4 hydroxyl alkyl, C3-C4 unsaturated hydroxyl alkyl, C3-C4 branched chain hydroxyl alkyl, with the proviso that at least one of R4, R5, or R6 is different from H.

[0073] From the viewpoint of staining intensity, the alkalizing agent is preferably selected from ammonia, and / or monoethanolamine, and / or 2-aminomethylpropanol.

[0074] The concentration of the alkalizing agent in the dyeing composition of step iv) before mixing is preferably in the range of 0.25% by weight to 15% by weight, more preferably in the range of 0.5% by weight to 12.5% ​​by weight, even more preferably in the range of 0.75% by weight to 10% by weight, and even more preferably in the range of 1% by weight to 7.5% by weight, calculated relative to the total weight of the dyeing composition of step iv) before mixing, in view of sufficient alkalinity and dyeing strength.

[0075] The dyeing composition in step iv) before mixing has a pH in the range of 7 to 12. From the viewpoint of buffer capacity, the pH of the dyeing composition in step iv) before mixing is preferably in the range of 7.5 to 11, more preferably in the range of 8.0 to 10, and even more preferably in the range of 8.5 to 9.5.

[0076] The dye composition of step iv) is then mixed with the composition of the present invention of step iii) to form a ready-to-use composition. A suitable mixing weight ratio is 5:1 to 1:5 (composition of step iv:composition of the present invention of step iii). Conventionally, suitable mixing weight ratios are 1:1, 1:2, and 1:3 (composition of step iv:composition of the present invention of step iii).

[0077] Suitably, the pH of the ready-to-use composition is in the range of 7 to 12. From the viewpoint of accelerating the dyeing rate, the pH of the ready-to-use composition is preferably in the range of 7.5 to 11, more preferably 8.0 to 10.5.

[0078] The ready-to-use composition is then applied to the keratin fibers as defined in step v) and left for 1 to 60 minutes. A preferred time range for step v) is 5 to 45 minutes, more preferably 10 to 35 minutes, in order to allow sufficient development of the oxidative hair color.

[0079] During the application time of the ready-to-use mixture, heat may be applied to the keratin fibers to accelerate the dyeing rate and from the viewpoint of cosmetic safety, preferably in the temperature range of 30°C to 50°C.

[0080] Then, in step vi), the ready-to-use composition is rinsed from the keratin fibers, which are optionally washed with shampoo and optionally blow-dried with a hairdryer.

[0081] [Bleaching and / or Lightening] The present invention relates to a method for bleaching and / or lightening keratinous fibers, preferably human keratinous fibers, more preferably human hair, comprising the steps of: vii) providing a composition of the invention as described above; viii) mixing the composition with a bleaching powder composition comprising one or more persalts and / or peroxy salts and one or more alkalizing agents to prepare a ready-to-use composition having a pH in the range of 7 to 12; ix) applying the ready-to-use composition to the keratin fibers and leaving it for a period ranging from 1 to 60 minutes; x) rinsing the keratin fibers and optionally shampooing the keratin fibers; The present invention also covers methods including the following.

[0082] The bleaching powder composition of step viii) comprises one or more persalts and / or peroxy salts. Suitable persalts and / or peroxy salts include sodium persulfate, potassium persulfate, ammonium persulfate, alkaline earth peroxides such as magnesium peroxide, maleimide peroxide, or urea peroxide, or phthalimidoperoxyhexanoic acid. In terms of bleaching power, preferred persalts are sodium persulfate, potassium persulfate, and ammonium persulfate.

[0083] The total concentration of the persalt and / or peroxy salt in the bleaching powder composition of step viii) before mixing is, from the viewpoints of bleaching power and cosmetic safety, preferably in the range of 10 wt % to 80 wt %, more preferably in the range of 15 wt % to 70 wt %, even more preferably in the range of 20 wt % to 60 wt %, and even more preferably in the range of 25 wt % to 60 wt %, calculated relative to the total weight of the bleaching powder composition of step viii) before mixing.

[0084] The bleaching powder composition of step viii) further comprises one or more alkalizing agents. Suitable alkalizing agents are metasilicates, particularly sodium metasilicate. The concentration of metasilicate in the bleaching powder composition of step viii) before mixing is preferably in the range of 1 wt. % to 20 wt. %, more preferably 5 wt. % to 15 wt. % in terms of alkalinity, calculated relative to the total weight of the bleaching powder composition of step viii) before mixing.

[0085] Other suitable alkalizing agents are alkali carbonate and bicarbonate salts, such as sodium, potassium, and ammonium salts. From the viewpoint of buffering capacity, preferred salts are bicarbonates, and particularly preferred is ammonium bicarbonate. The suitable concentration of carbonate in the bleaching powder composition of step viii) is in the range of 0.25% to 10% by weight, preferably in the range of 0.5% to 7.5% by weight, more preferably in the range of 0.75% to 5% by weight, and even more preferably in the range of 1% to 4% by weight, calculated based on the total weight of the bleaching powder composition before mixing, from the viewpoint of buffering capacity and low hair damage.

[0086] The bleaching powder composition of step viii) is then mixed with the composition of the present invention of step vii) to form a ready-to-use composition. A suitable mixing ratio by weight is 5:1 to 1:5 (composition of step viii:composition of the present invention of step vii). Conventionally, suitable mixing ratios are 1:1, 1:2, and 1:3 (composition of step viii:composition of the present invention of step vii) by weight.

[0087] Suitably, the pH of the ready-to-use composition is in the range of 7 to 12. From the viewpoint of accelerating dyeing, the pH of the ready-to-use composition is preferably in the range of 7.5 to 11, more preferably 8.0 to 10.5.

[0088] The ready-to-use composition is then applied to the keratin fibers as defined in step ix) and left for 1 to 60 minutes. A preferred time range for step ix) is 5 to 45 minutes, more preferably 10 to 35 minutes, in order to allow sufficient development of the oxidative hair color.

[0089] Optionally, heat may be applied while the ready-to-use composition is left on the keratin fibers. A suitable temperature range is between 30°C and 50°C.

[0090] Then, in step x), the ready-to-use composition is rinsed from the keratin fibers, which are optionally washed with shampoo and optionally dried with a hairdryer.

[0091] The present invention relates to a method for bleaching and / or lightening keratinous fibers, preferably human keratinous fibers, more preferably human hair, comprising the steps of: xi) providing a composition of the invention as defined above; xii) mixing the composition with an aqueous lightening composition comprising one or more alkalizing agents to prepare a ready-to-use composition having a pH in the range of 7 to 12; xiii) applying the ready-to-use composition to the keratin fibers and leaving it for a period ranging from 1 to 60 minutes; xiv) rinsing the keratinous fibers and optionally shampooing the keratinous fibers; The present invention also covers methods including the following.

[0092] The aqueous lightening composition of step xii) before mixing is preferably an emulsion containing one or more lipophilic compounds, which are also disclosed in the composition of the present invention.

[0093] From the viewpoint of color-lightening performance, the aqueous color-lightening composition preferably has a pH in the range of 8 to 11, more preferably in the range of 8.5 to 10.5.

[0094] Suitable mixing ratios are similar to those disclosed in the bleaching process above, but using an aqueous composition instead of bleaching powder.

[0095] [Permanent Shape] The present invention relates to a method for permanently shaping keratinous fibers, preferably human keratinous fibers, more preferably human hair, comprising the steps of: xv) optionally washing the keratin fibers with shampoo; xvi) placing the hair under mechanical tension; xvii) applying to the keratin fibers an aqueous composition having a pH ranging from 3 to 12, comprising one or more reducing agents and one or more alkalizing agents, and leaving the composition for a period ranging from 1 minute to 60 minutes; xviii) optionally rinsing the composition; xix) preparing a composition as defined above, applying it to the keratin fibers and leaving it for a period ranging from 1 minute to 30 minutes; xx) releasing the mechanical tension from the keratin fibers; xxi) rinsing the keratinous fibers and optionally shampooing the keratinous fibers; Including, Also covered are methods with the proviso that steps xvi) and xvii), and steps xix) and xx) may be performed in any order, and the other steps may be performed in the order listed above.

[0096] The term "permanent shaping" should be understood to refer to permanent curling and permanent straightening.

[0097] Thus, the mechanical tension defined in step xvii) is provided, for example, by placing the keratin fibers on curlers or by straightening the fibers with a comb or brush.

[0098] The composition defined in step xvii) comprises one or more reducing agents. In principle, any inorganic or organic reducing agent and / or mixtures thereof are suitable for the purposes of the present invention.

[0099] Suitable inorganic reducing agents are sulfites and / or hydrogen sulfites, such as sodium, potassium, and ammonium salts. Suitable organic reducing agents are thioglycolic acid and / or its salts, cysteamine and / or its salts, thioglycerin and / or its salts, glycerin esters of thioglycolic acid and / or its salts, thiolactic acid and / or its salts, cysteine ​​or its derivatives and / or salts, and / or mixtures thereof. From the viewpoint of cosmetic safety, preferred reducing agents are thioglycolic acid and / or its salts, thiolactic acid and / or its salts, cysteine ​​or its derivatives and / or salts, sodium sulfite, potassium sulfite, ammonium sulfite, and mixtures thereof. From the viewpoint of cosmetic safety, the most preferred reducing agents are thioglycolic acid and / or its salts, sodium sulfite, potassium sulfite, ammonium sulfite, and / or mixtures thereof.

[0100] The concentration of the reducing agent in the composition of step xvii) is preferably in the range of 0.5% to 20% by weight, more preferably 1% to 15% by weight, even more preferably 2% to 12% by weight, and even more preferably 3% to 10% by weight, calculated relative to the total weight of the composition of step xvii).

[0101] The pH of the composition may be acidic or alkaline, ranging from 3 to 12, preferably from 4 to 11, and is most preferably alkaline in terms of reducing power, ranging from 7.5 to 10.5. The pH may be adjusted with known organic and / or inorganic acids and alkalizing agents (see above for dyeing and bleaching).

[0102] The composition of step xvii) is left on the hair at ambient temperature for 1 to 60 minutes, preferably 2 to 45 minutes, more preferably 5 to 30 minutes, even more preferably 5 to 20 minutes, optionally with the application of heat.

[0103] Next, in step xix), the composition of the present invention is applied to the hair and left for 1 to 30 minutes. In view of hair damage and oxidation performance, the composition is preferably left on the keratin fibers for 2 to 25 minutes, more preferably 3 to 20 minutes, and even more preferably 5 to 15 minutes, optionally with the application of heat and / or using a heating device.

[0104] [Kit of Parts] The present invention relates to a composition of the invention as defined above, an aqueous composition having a pH in the range of 7 to 12 and comprising one or more oxidation dye precursors and / or oxidation dye couplers, a bleaching powder composition comprising one or more persalts and / or peroxy salts and one or more alkalizing agents, an aqueous lightening composition comprising one or more alkalizing agents and having a pH in the range of 7 to 12; an aqueous composition having a pH in the range of 3 to 12, comprising one or more reducing agents and one or more alkalizing agents; and one or more compositions selected from This also applies to kits of parts including:

[0105] It is preferred from the standpoint of customer friendliness that the above compositions are packaged separately.

[0106] More preferably, the aqueous composition having a pH in the range of 7 to 12 and comprising one or more oxidation dye precursors and / or oxidation dye couplers is the composition of step iv) before mixing.

[0107] It is further preferred that a bleaching powder composition comprising one or more persalts and / or peroxy salts and one or more alkalizing agents is the composition of step viii) before mixing.

[0108] It is further preferred that the aqueous lightening composition comprising one or more alkalizing agents and having a pH in the range of 7 to 12 is the aqueous lightening composition of step xii) before mixing.

[0109] More preferably, the aqueous composition comprising one or more reducing agents and one or more alkalizing agents and having a pH in the range of 3 to 12 is the permanent shape composition of step xvii).

[0110] The following examples illustrate the present invention without, however, limiting it. [Example]

[0111] Example 1 The following compositions were prepared by dissolving caffeine as compound b) in an aqueous composition of hydrogen peroxide under constant stirring.

[0112] [Table 1]

[0113] The compositions were prepared and stored for 12 months under controlled conditions at 40° C. The hydrogen peroxide content was analyzed by titration to determine the following concentrations:

[0114] [Table 2]

[0115] As a result, compound b) was able to maintain 92% hydrogen peroxide activity over one year, while the comparative composition without compound b) was only 68% active after one year.

[0116] (method) Hydrogen peroxide concentrations were measured by iodometric titration using a Mettler Toledo DL58 titrator equipped with a Redox electrode and 0.1 N sodium thiosulfate solution.

[0117] Example 2 The following composition was prepared by dissolving theobromine as compound b) in an aqueous composition of hydrogen peroxide under constant stirring. [Table 3]

[0118] The same methods as in Example 1 were used for the following analyses.

[0119] [Table 4]

[0120] Example 3 weight% Caffeine 0.01 Cetearyl Alcohol 4.0 Sodium lauryl sulfate 0.8 Phosphoric acid, enough to make pH 1.5 Tetrasodium EDTA 0.05 Hydrogen peroxide 6.0 Water up to 100.0

[0121] The concentration of caffeine as compound b) can also be adjusted to 0.05%, 0.1% or 0.5%, or any value therebetween, to achieve the same technical effect. The concentration of hydrogen peroxide can be adjusted to 9%, 12%, 15% or 20% by weight, or any value therebetween.

[0122] Example 4 weight% Theobromine 0.01 Cetearyl Alcohol 4.0 Sodium lauryl sulfate 0.8 Phosphoric acid, enough to make the pH 2.5 Tetrasodium EDTA 0.05 Hydrogen peroxide 6.0 Water up to 100.0

[0123] The concentration of theobromine as compound b) can also be adjusted to 0.05%, 0.1% or 0.5%, or any value therebetween, to achieve the same technical effect. Theobromine can also be replaced by xanthine or theophylline. The concentration of hydrogen peroxide can be adjusted to 9%, 12%, 15% or 20% by weight, or any value therebetween.

[0124] Example 5 weight% Caffeine 0.01 Theobromine 0.05 Theophylline 0.05 Cetearyl Alcohol 4.0 Sodium lauryl sulfate 0.8 Phosphoric acid, enough to make pH 3.0 Tetrasodium EDTA 0.05 Hydrogen peroxide 6.0 Water up to 100.0

[0125] The concentration of theobromine as compound b) can also be adjusted to 0.05%, 0.1% or 0.5%, or any value therebetween, to achieve the same technical effect. Theobromine can also be replaced by xanthine or theophylline. The concentration of hydrogen peroxide can be adjusted to 9%, 12%, 15% or 20% by weight, or any value therebetween.

[0126] Example 6 The following oxidation dye compositions were prepared: weight% Cetearyl Alcohol 12 Sodium Cetearyl Sulfate 2 Cocamide MEA 5 Oleic Acid 2 Tetrasodium EDTA 1 Sodium sulfite 1 Ammonium hydroxide 5 Ammonium chloride 1 Toluene-2,5-diamine sulfate 0.75 Resorcinol 0.10 4-Chlorresorcinol 0.25 m-aminophenol 0.05 4-amino-2-hydroxytoluene 0.05 Fragrance 0.5 Water up to 100

[0127] The above composition had a pH of 9.9. The oxidation dye composition was then mixed in a 1:1 weight ratio with Inventive Composition 1 and Comparative Composition 1 from Example 1 after one year of storage to produce a ready-to-use composition, which had a pH of approximately 9.5. The ready-to-use composition was applied to human hair and left for 30 minutes at room temperature, after which the composition was rinsed off with water and the hair was washed with shampoo and dried with a hair dryer. It was found that the hair was intensely colored reddish brown with the inventive composition 1, but the comparative composition 1 gave less color intensity.

[0128] Example 7 The following bleaching powder compositions were prepared: weight% Hydroxyethylcellulose 3 Tetrasodium EDTA 2 Sodium carbonate 1 Ammonium persulfate 11 Potassium persulfate 36 Sodium metasilicate 10 Mineral oil 8 Diatomaceous earth (amount to make 100)

[0129] The above bleaching powder composition was then mixed with Inventive Composition 1 and Comparative Composition 1 from Example 1 after one year of storage in a weight ratio of 1:2 (bleaching powder:Inventive Composition 1) to produce a ready-to-use composition having a pH of approximately 9.8. The ready-to-use composition was then applied to human hair and left for 30 minutes at room temperature, after which the composition was rinsed off with water and the hair was washed with shampoo and dried with a hair dryer. It was found that hair was strongly bleached with composition 1 of the invention, but in hair streaks bleached with comparative composition 1, the degree of lightening was visually less.

[0130] Example 8 The following permanent shape compositions were prepared: weight% Ammonium thioglycolate (60%) 21.3 Ammonium bicarbonate 5.0 1,3-butylene glycol 3.10 Amodimethicone 0.2 PEG-40 hydrogenated castor oil 0.7 Fragrance 0.4 Ammonia (effective amount 25%) up to pH 8.3 Water up to 100.0

[0131] Human hair was washed with shampoo and placed under mechanical tension with curlers. The above composition was then applied to the hair and left for 15 minutes at 40° C. The composition was then rinsed off with water. Next, the inventive composition 1 and comparative composition 1 of Example 1 stored for one year were applied to hair and left at room temperature for 15 minutes. The hair was then released from tension and the curlers were removed. The hair was then rinsed, washed with shampoo, and dried with a hair dryer. The hair was strongly curled with inventive composition 1 and had a good cosmetic feel, whereas the hair treated with comparative composition 1 had poor hair feel and low curl strength.

Claims

1. a) hydrogen peroxide, and b) a molecule having the following structure: 【Chemistry 1】 [In the formula, R 1 , R 2 , and R 3 is H and CH 3 are independently selected from and / or mixtures thereof. Including, the concentration of the compound of a) is greater than 5% by weight and not more than 20% by weight, calculated relative to the total weight of the composition; the total concentration of the compounds of b) is equal to or greater than 0.001% by weight and equal to or less than 0.5% by weight, calculated relative to the total weight of the composition; An aqueous cosmetic oxidizing composition having a pH in the range of 1-6.

2. 2. The composition according to claim 1, characterized in that at least one compound in b) is caffeine.

3. 3. Composition according to claim 1 or 2, characterized in that the total concentration of compounds of b) ranges from 0.03% to 0.08% by weight, calculated relative to the total weight of the composition.

4. 4. The composition according to claim 1, wherein the compound c) is one or more lipophilic compounds.

5. c) the compound of C 12 ~C 22 Fatty alcohols, C 3 ~C 22 Alcohol and C 12 ~C 22 Esters with fatty acids, C 8 ~C 22 5. Composition according to claim 4, characterized in that it is chosen from fatty acids, vegetable oils, and / or silicones, and / or hydrocarbon-based products, and / or mixtures thereof.

6. 6. Composition according to claim 4 or 5, characterized in that the concentration of compound c) ranges from 1% to 20% by weight, calculated relative to the total weight of the composition.

7. 7. The composition according to claim 1, comprising as compound d) one or more surfactants selected from nonionic surfactants, anionic surfactants, cationic surfactants and / or amphoteric / zwitterionic surfactants, and / or mixtures thereof.

8. 8. The composition according to claim 1, wherein the viscosity of the composition is in the range of 1,000 mPa s to 25,000 mPa s, as determined by a cone and plate viscometer at 25°C under atmospheric conditions.

9. 1. A method for stabilizing an aqueous oxidizing cosmetic composition, comprising: i) providing an aqueous composition containing hydrogen peroxide at a concentration of more than 5% by weight and not more than 20% by weight, calculated relative to the total weight of the composition; ii) adding to the composition defined in step i) a compound having the following structure: 【Chemistry 2】 [In the formula, R 1 , R 2 , and R 3 is H and CH 3 are independently selected from and / or a mixture thereof at a concentration of 0.001% by weight to 0.5% by weight calculated relative to the total weight of the composition; A method comprising:

10. 1. A method for oxidative dyeing of keratin fibers, comprising: iii) providing an aqueous cosmetic oxidizing composition according to any one of claims 1 to 8; iv) mixing said composition with an aqueous composition having a pH in the range of 7 to 12 and comprising one or more oxidative dye precursors and / or one or more oxidative dye couplers to prepare a ready-to-use composition having a pH in the range of 7 to 12; v) applying the ready-to-use composition to the keratin fibers and leaving it for 1 to 60 minutes; vi) rinsing the keratinous fibers and optionally shampooing the keratinous fibers; A method comprising:

11. 1. A method for bleaching and / or lightening keratin fibers, comprising: vii) providing an aqueous cosmetic oxidizing composition according to any one of claims 1 to 8; viii) mixing said composition with a bleaching powder composition comprising one or more persalts and / or peroxy salts and one or more alkalizing agents to prepare a ready-to-use composition having a pH in the range of 7 to 12; ix) applying the ready-to-use composition to the keratin fibers and leaving it for a period ranging from 1 to 60 minutes; x) rinsing the keratin fibers and optionally shampooing the keratin fibers; A method comprising:

12. 1. A method for bleaching and / or lightening keratin fibers, comprising: xi) providing an aqueous cosmetic oxidizing composition according to any one of claims 1 to 8; xii) mixing said composition with an aqueous lightening composition comprising one or more alkalizing agents to prepare a ready-to-use composition having a pH in the range of 7 to 12; xiii) applying the ready-to-use composition to the keratin fibers and leaving it for a period ranging from 1 to 60 minutes; xiv) rinsing the keratinous fibers and optionally shampooing the keratinous fibers; A method comprising:

13. 1. A method for permanently shaping keratinous fibers, comprising: xv) optionally washing the keratin fibers with shampoo; xvi) placing the keratin fibers under mechanical tension; xvii) applying to the keratin fibers an aqueous composition having a pH in the range of 3 to 12 and comprising one or more reducing agents and one or more alkalizing agents, and leaving the composition for a period in the range of 1 minute to 60 minutes; xviii) optionally rinsing the composition; xix) preparing an aqueous cosmetic oxidizing composition according to any one of claims 1 to 8, applying it to keratin fibres and leaving it for a period ranging from 1 minute to 30 minutes; xx) releasing the mechanical tension from the keratin fibers; xxi) rinsing the keratinous fibers and optionally shampooing the keratinous fibers; Including, With the proviso that steps xvi) and xvii) and steps xx) and xxi) may be performed in any order.

14. of the following general formula: 【Transformation 3】 [In the formula, R 1 , R 2 , and R 3 is H and CH 3 are independently selected from 1. Use of a compound of formula (I) for improving the storage stability of an aqueous cosmetic oxidizing composition containing hydrogen peroxide at a concentration of more than 5% by weight and not more than 20% by weight, calculated relative to the total weight of the composition, The total concentration of the compounds of the general formula is adjusted to 0.001% by weight or more and 0.5% by weight or less, calculated based on the total weight of the composition.

15. An aqueous oxidizing cosmetic composition according to any one of claims 1 to 8; an aqueous composition having a pH in the range of from 7 to 12 and comprising one or more oxidation dye precursors and / or oxidation dye couplers; a bleaching powder composition comprising one or more persalts and / or peroxy salts and one or more alkalizing agents; an aqueous lightening composition comprising one or more alkalizing agents and having a pH in the range of 7 to 12; an aqueous composition having a pH in the range of 3 to 12, comprising one or more reducing agents and one or more alkalizing agents; and one or more compositions selected from Kit of parts including.

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