Claims
- 1. A dye composition comprising, in an aqueous medium suitable for dyeing, at least one oxidation dye, ammonia, and at least one mesomorphic phase present in an amount greater than or equal to 10% by weight, relative to the total weight of the dye composition.
- 2. The dye composition according to claim 1, wherein the at least one mesomorphic phase is present in an amount greater than or equal to 15% by weight, relative to the total weight of the dye composition.
- 3. The dye composition according to claim 1, wherein the at least one mesomorphic phase is present in an amount ranging from 10% to 85% by weight, relative to the total weight of the dye composition.
- 4. The dye composition according to claim 1, wherein the at least one mesomorphic phase is chosen from inverse hexagonal phases (H2), lamellar phases (Lα and Lβ) and inverse cubic phases (I2 and V2).
- 5. The dye composition according to claim 4, wherein the at least one mesomorphic phase is chosen from a lamellar phase Lβ.
- 6. The dye composition according to claim 1, wherein the at least one mesomorphic phase comprises at least one nonionic surfactant with an HLB value of less than or equal to 10.
- 7. The dye composition according to claim 6, wherein the at least one mesomorphic phase comprises at least one nonionic surfactant with an HLB value ranging from 1 to 5.
- 8. The dye composition according to claim 6, wherein the at least one nonionic surfactant is chosen from polyglycerolated fatty alcohols, monooxyethylenated or polyoxyethylenated fatty alcohols, monoglycerolated or polyglycerolated fatty amides comprising from 1 to 5 glycerol groups, monooxyethylenated or polyoxyethylenated alkylphenols comprising greater than or equal to 2 mol of ethylene oxide, condensates of ethylene oxide and of propylene oxide with fatty alcohols, polyoxyethylenated vegetable oils comprising more than 5 mol of ethylene oxide, fatty acid esters of polyethylene glycols, and polyoxyethylenated fatty acid esters of sorbitol.
- 9. The dye composition according to claim 8, wherein the nonionic surfactant is hexadecyl alcohol comprising 2 mol of glycerol.
- 10. The dye composition according to claim 6, wherein the at least one nonionic surfactant is present in the composition in an amount ranging from 5% to 30% by weight, relative to the total weight of the dye composition.
- 11. The dye composition according to claim 10, wherein the at least one nonionic surfactant is present in the composition in an amount ranging from 10% to 20% by weight, relative to the total weight of the dye composition.
- 12. The dye composition according to claim 1, wherein the at least one mesomorphic phase further comprises at least one fatty alcohol comprising from 8 to 30 carbon atoms.
- 13. The dye composition according to claim 12, wherein the at least one fatty alcohol is hexadecanol.
- 14. The dye composition according to claim 12, wherein the at least one fatty alcohol is present in the composition in an amount ranging from 3% to 20% by weight, relative to the total weight of the dye composition.
- 15. The dye composition according to claim 14, wherein the at least one fatty alcohol is present in the composition in an amount ranging from 5% to 15% by weight, relative to the total weight of the dye composition.
- 16. The dye composition according to claim 1, wherein the ammonia is present in the composition in an amount ranging from 0.1% to 5% by weight, relative to the total weight of the dye composition.
- 17. The dye composition according to claim 16, the ammonia is present in the composition in an amount ranging from 1% to 3% by weight, relative to the total weight of the dye composition.
- 18. The dye composition according to claim 1, wherein the at least one oxidation dye is chosen from oxidation bases and couplers.
- 19. The dye composition according to claim 18, wherein the oxidation dye is chosen from at least one oxidation base.
- 20. The dye composition according to claim 19, wherein the at least one oxidation base is chosen from ortho- and para-phenylenediamines, double bases, ortho- and para-aminophenols and heterocyclic bases, and the acid addition salts thereof.
- 21. The dye composition according to claim 20, wherein the para-phenylenediamines are chosen from the compounds of formula (I):
- 22. The dye composition according to claim 21, wherein the nitrogenous groups are chosen from amino, mono(C1-C4)alkylamino, di(C1-C4)alkylamino, tri(C1-C4)alkylamino, monohydroxy(C1-C4)alkylamino, imidazolinium and ammonium groups.
- 23. The dye composition according to claim 21, wherein the halogens are chosen from chlorine.
- 24. The dye composition according to claim 20, wherein the double bases are chosen from the compounds of formula (II):
- 25. The dye composition according to claim 24, wherein the at least one hetero atom is chosen from oxygen, sulfur and nitrogen atoms.
- 26. The dye composition according to claim 24, wherein the nitrogenous groups are chosen from amino, mono(C1-C4)alkylamino, di(C1-C4)alkylamino, tri(C1-C4)alkylamino, monohydroxy(C1-C4)alkylamino, imidazolinium and ammonium groups.
- 27. The dye composition according to claim 20, wherein the para-aminophenols are chosen from the compounds of formula (III):
- 28. The dye composition according to claim 27, wherein the halogens are chosen from fluorine.
- 29. The dye composition according to claim 20, wherein the heterocyclic bases are chosen from pyridine derivatives, pyrimidine derivatives, and pyrazole derivatives.
- 30. The dye composition according to claim 29, wherein the pyrimidine derivatives are chosen from pyrazolopyrimidines.
- 31. The dye composition according to claim 19, wherein the at least one oxidation base is present in the composition in an amount ranging from 0.0005% to 12% by weight, relative to the total weight of the dye composition.
- 32. The dye composition according to claim 18, wherein the at least one coupler is chosen from meta-phenylenediamines, meta-aminophenols, meta-diphenols and heterocyclic couplers, and the acid addition salts thereof.
- 33. The dye composition according to claim 18, wherein the at least one coupler is present in the composition in an amount ranging from 0.0001% to 10% by weight, relative to the total weight of the composition.
- 34. The dye composition according to claim 20, wherein the acid addition salts of the at least one oxidation base are chosen from hydrochlorides, hydrobromides, sulfates, tartrates, lactates and acetates.
- 35. The dye composition according to claim 32, wherein the acid addition salts of the at least one coupler are chosen from hydrochlorides, hydrobromides, sulfates, tartrates, lactates and acetates.
- 36. The dye composition according to claim 1, further comprising at least one direct dye.
- 37. The dye composition according to claim 1, further comprising at least one adjuvants chosen from anionic, cationic, amphoteric, zwitterionic and nonionic surfactants, provided that the nonionic surfactants are those other than nonionic surfactants with an HLB value of less than or equal to 10; thickeners; fragrances; sequestering agents; UV-screening agents; waxes; silicones chosen from volatile and non-volatile, cyclic, linear and branched, organomodified and non-organomodified silicones; preserving agents; ceramides; pseudoceramides; vegetable, mineral and synthetic oils; vitamins and provitamins; opacifiers; reducing agents; and antioxidants.
- 38. The dye composition according to claim 1, wherein the cosmetically acceptable aqueous medium comprises water, and may optionally comprise cosmetically acceptable organic solvents.
- 39. A process for preparing a dye composition comprising:
a) preparing at least one mesomorphic phase by mixing at least one nonionic surfactant with an HLB value of less than or equal to 10, with water and optionally with at least one fatty alcohol, and b) adding at least one oxidation dye to the at least one mesomorphic phase, wherein ammonia is added in step a), step b), or both.
- 40. The process according to claim 39, wherein the at least one nonionic surfactant of step a) has an HLB value ranging from 1 to 5.
- 41. A ready-to-use composition for the oxidation dyeing of keratin fibers, comprising, in a medium suitable for dyeing, at least one dye composition (A) comprising at least one oxidation dye, ammonia, and at least one mesomorphic phase present in composition (A) in an amount greater than or equal to 10% by weight, relative to the weight of composition (A), and at least one composition (B) comprising at least one oxidizing agent.
- 42. The ready-to-use composition according to claim 41, wherein the mesomorphic phase is present in the ready-to-use composition in an amount greater than or equal to 5% by weight, relative to the total weight of the ready-to-use composition.
- 43. The ready-to-use composition according to claim 42, wherein mesomorphic phase is present in the ready-to-use composition in an amount ranging from 10% to 30% by weight, relative to the total weight of the ready-to-use composition.
- 44. The ready-to-use composition according to claim 41, wherein the at least one oxidizing agent is chosen from hydrogen peroxide, urea peroxide, alkali metal bromates and ferricyanides, persalts, and redox enzymes, optionally in the presence of the respective donor or co-factor thereof.
- 45. The ready-to-use composition according to claim 44, wherein the redox enzymes are chosen from laccases, peroxidases, and 2-electron oxidoreductases.
- 46. The ready-to-use composition according to claim 44, wherein the at least one oxidizing agent is hydrogen peroxide.
- 47. The ready-to-use composition according to claim 45, wherein the at least one oxidizing agent is an aqueous hydrogen peroxide solution with a titre ranging from 1 to 40 volumes.
- 48. The ready-to-use composition according to claim 41, wherein the ready-to-use composition has a pH ranging approximately from 4 to 12.
- 49. An oxidizing composition, comprising at least one oxidizing agent chosen from hydrogen peroxide, urea peroxide, alkali metal bromates and ferricyanides, persalts, and redox enzymes, optionally in the presence of the respective donor or co-factor thereof, and at least one mesomorphic phase chosen from inverse hexagonal phases (H2), lamellar phases (Lα and Lβ) and inverse cubic phases (I2 and V2), wherein the at least one mesomorphic phase is present in the oxidizing composition in an amount greater than or equal to 10% by weight, relative to the total weight of the oxidizing composition.
- 50. A method for dyeing keratin fibers, comprising applying to wet or dry keratin fibers, a ready-to-use composition comprising, in a medium suitable for dyeing, at least one composition (A) comprising at least one oxidation dye, ammonia, and at least one mesomorphic phase present in composition (A) in an amount greater than or equal to 10% by weight, relative to the total weight of composition (A), and at least one composition (B) comprising at least one oxidizing agent, wherein the ready-to-use composition is prepared extemporaneously at the time of use, and wherein the ready-to-use composition is left on the keratin fibers to act for a leave-in time ranging from 1 to 60 minutes approximately, rinsing the fibers and then optionally washing them with shampoo, then rinsing them again and drying them.
- 51. The method according to claim 49, wherein the leave-in time ranges approximately from 10 to 45 minutes.
- 52. A multi-compartment kit for the oxidation dyeing of keratin fibers, comprising at least two compartments, wherein at least one compartment contains at least one dye composition comprising at least one oxidation dye, ammonia, and at least one mesomorphic phase present in the dye composition in an amount greater than or equal to 10% by weight, relative to the total weight of the dye composition, and at least one other compartment contains a composition comprising at least one oxidizing agent.
Priority Claims (1)
Number |
Date |
Country |
Kind |
02 16599 |
Dec 2002 |
FR |
|
Parent Case Info
[0001] This application claims benefit of U.S. Provisional Application No. 60/469,407, filed on May 12, 2003.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60469407 |
May 2003 |
US |