Claims
- 1. An antiperspirant active composition, comprising:
- (1) at least one basic aluminum material having the empirical formula:
- Al.sub.2 (OH).sub.6-a X.sub.a,
- where 0.5.ltoreq.a.ltoreq.5.0; and X is a univalent complex oxoanion of nitrogen or a univalent complex oxoanion of a halogen, which forms salts with Al.sup.3+ in aqueous solution, so that these salts are essentially completely dissociated, which is readily soluble in water with metallic ions in the solution, and which forms conjugate acids that are strong acids, the at least one basic aluminum material being further characterized by:
- (a) size exclusion high performance liquid chromatography peaks corresponding to peak 3 and peak 4 of the size exclusion chromatogram produced from a high performance liquid chromatography technique;
- (b) a peak 4 relative area of at least 25%, and a peak 3 relative area of less than 60%, the sum of the relative peak 3 and peak 4 areas being at least 50%;
- (c) less than 10% chromatographic peaks eluting at shorter retention times than peak 3, corresponding to peaks 1 and 2;
- (d) less than 25% of the aluminum being in the form of Al.sup.b Polyhydroxyaquoaluminum;
- (e) an .sup.27 Al NMR spectrum wherein 5% to 30% of the total area under the spectrum from 140 ppm to -80 ppm is contained in a resonance line at 71.5-73.5 ppm; and
- (f) an .sup.27 Al NMR spectrum in which the area of the 71.5-73.5 ppm resonance line includes more than 50% of the combined areas of the 62.5-63.5 ppm and 71.5-73.5 ppm resonance lines, and
- (2) at least one other antiperspirant active material, which is selected from the group consisting of antiperspirant active Zr salts, antiperspirant active Hf salts, antiperspirant active Ti salts and antiperspirant active Sn salts.
- 2. An antiperspirant active composition according to claim 1, wherein X is selected from the group consisting of NO.sub.3.sup.-, ClO.sub.3.sup.-, ClO.sub.4.sup.- and IO.sub.4.sup.-.
- 3. An antiperspirant active composition according to claim 1, wherein X is NO.sub.3.sup.-.
- 4. An antiperspirant active composition according to claim 1, which further include a neutral amino acid.
- 5. A method of forming the antiperspirant active composition according to claim 1, including the step of mixing a solution of the at least one basic aluminum material with a solution of said at least one other antiperspirant active material.
- 6. An antiperspirant active composition according to claim 1, wherein the compositions have a peak 4 relative area of at least 25% and a peak 3 relative area of less than 50%, the sum of the peak 3 and peak 4 relative areas being at least 40%.
- 7. An antiperspirant active composition according to claim 6, wherein the compositions contain up to 35% peak 1 relative area, and less than 10% peak 2 relative area.
- 8. An antiperspirant active composition according to claim 1, wherein 8-18% of the total area under the .sup.27 Al spectrum from 140 ppm to -80 ppm is contained in a resonance line at 71.5-73.5 ppm.
- 9. Antiperspirant product comprising said antiperspirant active composition according to claim 1 in a vehicle, the antiperspirant active composition being in the vehicle in an effective antiperspirant amount.
- 10. Antiperspirant product according to claim 9, wherein said vehicle is a vehicle for a solid stick product, the antiperspirant product being an antiperspirant solid stick product.
- 11. An antiperspirant active composition according to claim 1, wherein the at least one other antiperspirant active material has the formula:
- DO.sub.p (OH).sub.m Q.sub.n,
- where p is either 0 or 1; when p=0 then m=0 and n=4, and when p=1 then m+n=2; Q is a halide or X, X having previously been defined; and D is a metal cation selected from the group consisting of Zr, Hf, Ti and Sn.
- 12. An antiperspirant active composition according to claim 11, wherein a molar ratio of the at least one basic aluminum material to the at least one other antiperspirant active material is 0.3:1 to 6.0:1.
- 13. An antiperspirant active composition according to claim 1, wherein the at least one other antiperspirant active material is zirconyl hydroxychloride.
- 14. An antiperspirant active composition according to claim 13, wherein a molar ratio of the at least one basic aluminum material to the at least one other antiperspirant active material is 0.3:1 to 6.0:1.
- 15. An antiperspirant active composition according to claim 1, wherein a molar ratio of the at least one basic aluminum material to the at least one other antiperspirant active material is 0.3:1 to 6.0:1.
- 16. An antiperspirant active composition, comprising:
- (A) at least one basic aluminum material having the empirical formula:
- Al.sub.2 (OH).sub.6-a X.sub.a,
- where 0.5.ltoreq.a.ltoreq.5.0; and X is a univalent complex oxoanion of nitrogen or a univalent complex oxoanion of a halogen, which forms salts with Al.sup.3+ in aqueous solution, so that these salts are essentially completely dissociated, which is readily soluble in water with metallic ions in the solution, and which forms conjugate acids that are strong acids, the at least one basic aluminum material being further characterized by:
- (a) a size exclusion high performance liquid chromatography chromatogram which contains:
- (1) a peak 4 relative area of at least 40%, a peak 3 relative area of less than 30%, the sum of the relative peak 3 and peak 4 areas being at least 50%;
- (2) a combined peak 5 and peak 6 relative area of at least 15%; and
- (3) less than 10% chromatographic peaks eluting at shorter retention times than peak 3, corresponding to peaks 1 and 2;
- (b) a .sup.27 Al NMR spectrum in which:
- (1) a 71.5-73.5 ppm resonance line comprises at least 5% of the total area of the NMR spectrum;
- (2) a 0-5 ppm resonance line comprises at least 5% of the total area of the NMR spectrum; and
- (3) a 62.5-63.5 ppm resonance line comprises less than 10% of the total area of the NMR spectrum; and
- (c) less than 25% of the total aluminum in the form of Al.sup.b polyhydroxyaquoaluminum, and
- (B) at least one other antiperspirant active material, which is selected from the group consisting of antiperspirant active Zr salts, antiperspirant active Hf salts, antiperspirant active Ti salts and antiperspirant active Sn salts.
- 17. An antiperspirant active composition according to claim 16, wherein the 71.5-73.5 ppm resonance line includes up to 30% of the total area of the NMR spectrum.
- 18. An antiperspirant active composition according to claim 17, wherein the 0-5 ppm resonance line includes up to 30% of the total area of the NMR spectrum.
- 19. An antiperspirant active composition according to claim 16, wherein 8-18% of the total area under the .sup.27 Al spectrum from 140 ppm to -80 ppm is contained in a resonance line at 71.5-73.5 ppm.
- 20. An antiperspirant active composition according to claim 16, wherein the compositions have a peak 4 relative area of at least 25% and a peak 3 relative area of less than 50%, the sum of the peak 3 and peak 4 relative areas being at least 40%.
- 21. An antiperspirant active composition according to claim 20, wherein the compositions contain up to 35% peak 1 relative area, and less than 10% peak 2 relative area.
- 22. An antiperspirant active composition comprising:
- (A) at least one basic aluminum material having the empirical formula:
- Al.sub.2 (OH).sub.6-a X.sub.a
- where 0.5.ltoreq.a.ltoreq.5.0; and X is a univalent complex oxoanion of nitrogen or a univalent complex oxoanion of a halogen, which forms salts with Al.sup.3+ in aqueous solution, so that these salts are essentially completely dissociated, which is readily soluble in water with metallic ions in the solution, and which forms conjugate acids that are strong acids, the at least one basic aluminum material being further characterized by:
- (a) a size exclusion high performance liquid chromatography chromatogram which contains:
- (1) a peak 4 relative area of at least 60%, a peak 3 relative area of less than 25%, the sum of the relative peak 3 and peak 4 areas being at least 70%;
- (2) a combined peak 5 and peak 6 relative area of less than 20%; and
- (3) less than 10% chromatographic peaks eluting at shorter retention times than peak 3, corresponding to peaks 1 and 2;
- (b) a .sup.27 Al NMR spectrum in which:
- (1) a 71.5-73.5 ppm resonance line comprises at least 5% of the total area of the NMR spectrum;
- (2) a 0-5 ppm resonance line comprises less than 10% of the total area of the NMR spectrum; and
- (3) a 62.5-63.5 ppm resonance line comprises less than 10% of the total area of the NMR spectrum; and
- (c) less than 25% of the total aluminum in the form of Al.sup.b polyhydroxyaquoaluminum, and
- (B) at least one other antiperspirant active material, which is selected from the group consisting of antiperspirant active Zr salts, antiperspirant active Hf salts, antiperspirant active Ti salts and antiperspirant active Sn salts.
- 23. An antiperspirant active composition according to claim 22, wherein the 71.5-73.5 ppm resonance line includes up to and including 30% of the total area of the NMR spectrum.
- 24. An antiperspirant active composition according to claim 22, wherein the compositions have a peak 4 relative area of at least 25% and a peak 3 relative area of less than 50%, the sum of the peak 3 and peak 4 relative areas being at least 40%.
- 25. An antiperspirant active composition according to claim 24, wherein the compositions contain up to 35% peak 1 relative area, and less than 10% peak 2 relative area.
- 26. An antiperspirant active composition according to claim 22, wherein 8-18% of the total area under the .sup.27 Al spectrum from 140 ppm to -80 ppm is contained in a resonance line at 71.5-73.5 ppm.
- 27. An antiperspirant active composition having the formula:
- [Al.sub.2 (OH).sub.6-a X.sub.a ].sub.w [DO.sub.p (OH).sub.m Q.sub.n ].sub.y,
- where 0.5.ltoreq.a.ltoreq.5.0, X is a univalent complex oxoanion of nitrogen or a univalent complex oxoanion of a halogen, which forms salts with Al.sup.3+ in aqueous solution, so that these salts are essentially completely dissociated, which is readily soluble in water with metallic ions in the solution, and which forms conjugate acids that are strong acids, w:y ranges from about 0.3:1 to about 6.0:1, p is either 0 or 1, where p is 0 m is 0 and n is 4, and when p is 1 then m+n is 2, D is a metal cation selected from the group consisting of Zr, Hf, Ti and Sn, and Q is a halide or X, Al.sub.2 (OH).sub.6-a X.sub.a further being characterized by:
- (a) size exclusion high performance liquid chromatography peaks corresponding to peak 3 and peak 4 of the size exclusion chromatogram produced by a high performance liquid chromatography technique;
- (b) a peak 4 relative area of at least 25%, and a peak 3 relative area of less than 60%, the sum of the relative peak 3 and peak 4 areas being at least 50%;
- (c) less than 10% chromatographic peaks eluting at shorter retention times than peak 3, corresponding to peaks 1 and 2;
- (d) less than 25% of the aluminum being in the form of Al.sup.b polyhydroxyaquoaluminum;
- (e) an .sup.27 Al NMR spectrum wherein 5%-30% of the total area under the spectrum from 140 ppm to -80 ppm is contained in a resonance line at 71.5-73.5 ppm; and
- (f) an .sup.27 Al NMR spectrum in which the area of the 71.5-73.5 ppm resonance line includes more than 50% of the combined areas of the 62.5-63.5 ppm and 71.5-73.5 ppm resonance lines.
- 28. An antiperspirant active composition, formed by a process comprising:
- (a) providing at least one basic aluminum material having the empirical formula:
- Al.sub.2 (OH).sub.6-a X.sub.a,
- where 0.5.ltoreq.a.ltoreq.5.0; and X is a univalent complex oxoanion of nitrogen or a univalent complex oxoanion of a halogen, which forms salts with Al.sup.3+ in aqueous solution, so that these salts are essentially completely dissociated, which is readily soluble in water with metallic ions in the solution, and which forms conjugate acids that are strong acids, the at least one basic aluminum material being further characterized by:
- (a) size exclusion high performance liquid chromatography peaks corresponding to peak 3 and peak 4 of the size exclusion chromatogram produced from a high performance liquid chromatography technique;
- (b) a peak 4 relative area of at least 25%, and a peak 3 relative area of less than 60%, the sum of the relative peak 3 and peak 4 areas being at least 50%;
- (c) less than 10% chromatographic peaks eluting at shorter retention times than peak 3, corresponding to peaks 1 and 2;
- (d) less than 25% of the aluminum being in the form of Al.sup.b polyhydroxyaquoaluminum;
- (e) an .sup.27 Al NMR spectrum wherein 5% to 30% of the total area under the spectrum from 140 ppm to -80 ppm is contained in a resonance line at 71.5-73.5 ppm; and
- (f) an .sup.27 Al NMR spectrum in which the area of the 71.5-73.5 ppm resonance line includes more than 50% of the combined areas of the 62.5-63.5 ppm and 71.5-73.5 ppm resonance lines, and
- (b) mixing said at least one basic aluminum material with at least one other antiperspirant active material, which is selected from the group consisting of antiperspirant active f Zr salts, antiperspirant active Hf salts, antiperspirant active Ti salts and antiperspirant active Sn Salts.
- 29. An antiperspirant active composition according to claim 28, wherein said at least one basic aluminum material is provided in an aqueous solution and is mixed with said at least one other antiperspirant active material in an aqueous solution, to form a mixture in solution, the mixture in solution being dried to form the antiperspirant active composition.
- 30. An antiperspirant active composition according to claim 29, wherein the dried mixture is a powder.
- 31. An antiperspirant active composition according to claim 29, wherein X is NO.sub.3.sup.-.
- 32. Antiperspirant product comprising said antiperspirant active composition according to claim 29 in a vehicle, the antiperspirant active composition being in the vehicle in an effective antiperspirant amount.
- 33. An antiperspirant active composition according to claim 28, wherein a molar ratio of the at least one basic aluminum material to the at least one other antiperspirant active material is 0.3:1 to 6.0:1.
- 34. An antiperspirant active composition according to claim 28, wherein the at least one other antiperspirant active material has the formula:
- DO.sub.p (OH).sub.m Q.sub.n,
- where p is either 0 or 1; when p=0 then m=0 and n=4, and when p=1 then m+n=2; Q is a halide or X, X having previously been defined; and D is a metal cation selected from the group consisting of Zr, Hf, Ti and Sn.
- 35. An antiperspirant active composition according to claim 34, wherein a molar ratio of the at least one basic aluminum material to the at least one other antiperspirant active material is 0.3:1 to 6.0:1.
- 36. An antiperspirant active composition according to claim 35, wherein the at least one other antiperspirant active material is zirconyl hydroxychloride.
- 37. A method of forming an antiperspirant active composition, comprising the steps of:
- (A) forming at least one basic aluminum material, the at least one basic aluminum material having the empirical formula:
- Al.sub.2 (OH).sub.6-a X.sub.a,
- where 0.5.ltoreq.a.ltoreq.5.0; and X is a univalent complex oxoanion of nitrogen or a univalent complex oxoanion of a halogen, which forms salts with Al.sup.3+ in aqueous solution, so that these salts are essentially completely dissociated, which is readily soluble in water with metallic ions in the solution, and which forms conjugate acids that are strong acids, the at least one basic aluminum material being further characterized by:
- (a) size exclusion high performance liquid chromatography peaks corresponding to peak 3 and peak 4 of the size exclusion chromatogram produced from a high performance liquid chromatography technique;
- (b) a peak 4 relative area of at least 25%, and a peak 3 relative area of less than 60%, the sum of the relative peak 3 and peak 4 areas being at least 50%;
- (c) less than 10% chromatographic peaks eluting at shorter retention times than peak 3, corresponding to peaks 1 and 2;
- (d) less than 25% of the aluminum being in the form of Al.sup.b polyhydroxyaquoaluminum;
- (e) an .sup.27 Al NMR spectrum wherein 5% to 30% of the total area under the spectrum from 140 ppm to -80 ppm is contained in a resonance line at 71.5-73.5 ppm; and
- (f) an .sup.27 Al NMR spectrum in which the area of the 71.5-73.5 ppm resonance line includes more than 50% of the combined areas of the 62.5-63.5 ppm and 71.5-73.5 ppm resonance lines; and
- (B) mixing said at least one basic aluminum material and at least one other antiperspirant active material, the at least one other antiperspirant active material being selected from the group consisting of antiperspirant active Zr salts, antiperspirant active Hf salts, antiperspirant active Ti salts and antiperspirant active Sn salts.
- 38. The method of forming the antiperspirant active composition according to clam 37, herein the at least one basic aluminum material and the at least one other antiperspirant active material are in solution when said mixing is performed.
- 39. The method of forming the antiperspirant active composition according to claim 37, wherein the mixing is performed at room temperature.
- 40. The method of forming the antiperspirant active composition according to claim 37, wherein the mixing is performed at a temperature from room temperature to 140.degree. C.
- 41. A method of forming an antiperspirant active composition according to claim 37, wherein the at least one other antiperspirant active material has the formula:
- DO.sub.p (OH).sub.m Q.sub.n,
- where p is either 0 or 1; when p=0 then m=0 and n=4, and when p=1 then m+n=2; Q is a halide or X, X having previously been defined; and D is a metal cation selected from the group consisting of Zr, Hf, Ti and Sn.
- 42. A method of forming an antiperspirant active composition according to claim 41, wherein a molar ratio of the at least one basic aluminum material to the at least one other antiperspirant active material is 0.3:1 to 6.0:1.
- 43. A method of forming an antiperspirant active composition according to claim 37, wherein the at least one other antiperspirant active material is zirconyl hydroxychloride.
- 44. A method of forming an antiperspirant active composition according to claim 43, wherein a molar ratio of the at least one basic aluminum material to the at least one other antiperspirant active material is 0.3:1 to 6.0:1.
- 45. A method of forming an antiperspirant active composition according to claim 37, wherein a molar ratio of the at least one basic aluminum material to the at least one other antiperspirant active material is 0.3:1 to 6.0:1.
- 46. A method of forming an antiperspirant active composition, comprising the steps of:
- (A) forming at least one basic aluminum material, the at least one basic aluminum material having the empirical formula:
- Al.sub.2 (OH).sub.6-a X.sub.a,
- where 0.5.ltoreq.a.ltoreq.5.0; and X is a univalent complex oxoanion of nitrogen or a univalent complex oxoanion of a halogen, which forms salts with Al.sup.3+ in aqueous solution, so that these salts are essentially completely dissociated, which is readily soluble in water with metallic ions in the solution, and which forms conjugate acids that are strong acids, the at least one basic aluminum material being further characterized by:
- (a) a size exclusion high performance liquid chromatography chromatogram which contains:
- (1) a peak 4 relative area of at least 40%, a peak 3 relative area of less than 30%, the sum of the relative peak 3 and peak 4 areas being at least 50%;
- (2) a combined peak 5 and peak 6 relative area of at least 15%;
- (3) less than 10% chromatographic peaks eluting at shorter retention times than peak 3, corresponding to peaks 1 and 2;
- (b) a .sup.27 Al NMR spectrum in which:
- (1) a 71.5-73.5 ppm resonance line comprises at least 5% of the total area of the NMR spectrum;
- (2) a 0-5 ppm resonance line comprises at least 5% of the total area of the NMR spectrum; and
- (3) a 62.5-63.5 ppm resonance line comprises less than 10% of the total area of the NMR spectrum; and
- (c) less than 25% of the total aluminum in the form of Al.sup.b polyhydroxyaquoaluminum; and
- (B) mixing said at least one basic aluminum material and at least one other antiperspirant active material, the at least one other antiperspirant active material being selected from the group consisting of antiperspirant active Zr salts, antiperspirant active Hf salts, antiperspirant active Ti salts and antiperspirant active Sn salts.
- 47. The method of forming the antiperspirant active composition according to claim 46, wherein the mixing is performed at room temperature.
- 48. A method of forming an antiperspirant active composition, comprising the steps of:
- (A) forming at least one basic aluminum material, the at least one basic aluminum material having the empirical formula:
- Al.sub.2 (OH).sub.6-a X.sub.a
- where 0.5.ltoreq.a.ltoreq.5.0; and X is a univalent complex oxoanion of nitrogen or a univalent complex oxoanion of a halogen, which forms salts with Al.sup.3+ in aqueous solution, so that these salts are essentially completely dissociated, which is readily soluble in water with metallic ions in the solution, and which forms conjugate acids that are strong acids, the at least one basic aluminum material being further characterized by:
- (a) a size exclusion high performance liquid chromatography chromatogram which contains:
- (1) a peak 4 relative area of at least 60%, a peak 3 relative area of less than 25%, the sum of the peak 3 and peak 4 relative areas being at least 70%;
- (2) a combined peak 5 and peak 6 relative area of less than 20%; and
- (3) less than 10% chromatographic peaks eluting at shorter retention times than peak 3, corresponding to peaks 1 and 2;
- (b) a .sup.27 Al NMR spectrum in which:
- (1) a 71.5-73.5 ppm resonance line comprises at least 5% of the total area of the NMR spectrum;
- (2) a 0-5 ppm resonance line comprises less than 10% of the total area of the NMR spectrum; and
- (3) a 62.5-63.5 ppm resonance line comprises less than 10% of the total area of the NMR spectrum; and
- (c) less than 25% of the total aluminum being in the form of Al.sup.b hydroxyaquoaluminum,
- (B) mixing said at least one basic aluminum material and at least one other antiperspirant active material, the at least one other antiperspirant active material being selected from the group consisting of antiperspirant active Zr salts, antiperspirant active Hf salts, antiperspirant active Ti salts and antiperspirant active Sn salts.
- 49. The method of forming the antiperspirant active composition according to claim 48, wherein the mixing is performed at room temperature.
Parent Case Info
This application is a continuing application of application Ser. No. 07/550,683, filed on Jul. 1990 abandoned.
US Referenced Citations (10)
Foreign Referenced Citations (8)
Number |
Date |
Country |
0006739 |
Jun 1979 |
EPX |
0191628 |
Feb 1986 |
EPX |
0274252 |
Dec 1987 |
EPX |
0285282 |
Mar 1988 |
EPX |
0393275 |
Apr 1989 |
EPX |
0366230 |
Aug 1989 |
EPX |
586235A2 |
Sep 1993 |
EPX |
1568831 |
Jan 1976 |
GBX |
Non-Patent Literature Citations (3)
Entry |
Michniak, "Studies on the Mechanism of Topical Anhidrosis Due to Polyvalent Cations", International Journal of Cosmetic Science (1980), pp. 29-36. |
Chem. Abstracts, vol. 103, No. 22 (2 Dec. 1985) p. 39. |
Aluminum Chlorohydrate II: Physicochemical Properties, vol. 70, No. 7 (Jul. 1981). |
Continuations (1)
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Number |
Date |
Country |
Parent |
550683 |
Jul 1990 |
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