Claims
- 1. A basic aluminum material, with enhanced antiperspirant activity, 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 an anion that is a univalent complex oxoanion of nitrogen or a halogen, which anion forms salts with Al.sup.3+ in aqueous solution so that these salts are substantially completely dissociated, which anion is readily soluble in water with metallic ions in the solutions, and which anion forms conjugate acids that are strong acids; wherein said material is characterized by:
- (a) size exclusion high performance liquid chromatography peaks corresponding to peak 3 and peak 4 of size exclusion chromatograms formed by HPLC technique;
- (b) a peak 4 relative area of at least 25%, a peak 3 relative area of less than 60%, the sum of the relative peak 3 and peak 4 areas being at least 50%; and
- (c) less than 10% chromatographic peaks eluting at shorter retention times than peak 3, corresponding to peaks 1 and 2.
- 2. A basic aluminum material according to claim 1, wherein the anion is selected from the group consisting of ClO.sub.3.sup.-, ClO.sub.4.sup.-, and IO.sub.4.sup.-.
- 3. A basic aluminum material according to claim 1, wherein the anion is NO.sub.3.sup.-.
- 4. A basic aluminum material according to claim 1, wherein 0.9.ltoreq.a.ltoreq.2.5.
- 5. A basic aluminum material according to claim 4, wherein the peak 4 area is at least 35% but less than 80%, and the peak 3 area is less than 50%, the sum of the peak 3 and peak 4 areas being at least 60% and less than 90%, with essentially no peaks 1 and 2.
- 6. A basic aluminum material according to claim 1, wherein the anions are labile with respect to undergoing reduction, and the products of a reduction reaction occurring during formation of the material include gases or soluble substances, of lower oxidation states of a non-oxygen component of a starting anion in forming the material, than in the starting anion.
- 7. A basic aluminum material according to claim 1, wherein the anions are anions having been produced from a starting anion that is labile with respect to undergoing reduction.
- 8. A basic aluminum material according to claim 1, wherein at least 25% by weight of the basic aluminum material is in the form of Al.sup.b polyhydroxyaquoaluminum.
- 9. A basic aluminum material according to claim 1, wherein the peak 4 relative area is at least 40% and the peak 3 relative area is less than 50%.
- 10. A basic aluminum material according to claim 9, wherein the peak 4 area is at least 40% but less than 70%, and the peak 3 area is less than 40%, the sum of the peak 3 and peak 4 areas being at least 70% and less than 95%, with essentially no peaks 1 and 2.
- 11. An aqueous solution comprising the basic aluminum material of claim 1 dissolved in water.
- 12. A dried powder of said basic aluminum material of claim 1.
- 13. A basic aluminum material, with enhanced antiperspirant activity, 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 an anion that is a univalent complex oxoanion of nitrogen or a halogen, which anion forms salts with Al.sup.3+ in aqueous solution so that these salts are substantially completely dissociated, which anion is readily soluble in water with metallic ions in the solutions, and which anion forms conjugate acids that are strong acids; wherein said material is characterized by:
- (a) size exclusion high performance liquid chromatography peaks corresponding to peak 3 and peak 4 of size exclusion chromatograms formed by HPLC technique; and
- (b) at least 25% by weight of the basic aluminum material is in the form of Al.sup.b polyhydroxyaquoaluminum species.
- 14. A basic aluminum material according to claim 13, wherein the peak 4 relative area of the material is at least 25%, the peak 3 relative area of the material is less than 60%, and the sum of the relative peak 3 and peak 4 areas is at least 50%.
- 15. A basic aluminum material according to claim 13, wherein the material has less than 10% chromatographic peaks eluting at shorter retention times than peak 3, corresponding to peaks 1 and 2.
- 16. A method of forming a basic aluminum material having enhanced antiperspirant activity, comprising the steps of:
- (a) dissolving Al(Y.sup.w O.sub.n).sub.3 in water so as to form a solution, where Y is nitrogen or a halogen, w is the oxidation state of Y, and n is dependent on the oxidation state of Y; and
- (b) reacting aluminum metal with Al(Y.sup.w O.sub.n).sub.3 in solution so as to form a reaction product of Al.sub.2 (OH).sub.6-a (Y.sup.z O.sub.n).sub.a, where (Y.sup.z O.sub.n) is a univalent oxoanion of nitrogen or a halogen, which oxoanion forms salts with Al.sup.3+ in aqueous solutions so that these salts are substantially completely dissociated, which oxoanion is readily soluble in water with metallic ions in the solutions, and which oxoanion forms conjugate acids that are strong acids, and where 0.5.ltoreq.a.ltoreq.5.0 and o<z.ltoreq.w, the reacting being performed at a temperature, and for a time, such that the reaction product is characterized by:
- (A) size exclusion high performance liquid chromatography peaks corresponding to peak 3 and peak 4 of size exclusion chromatograms formed by HPLC technique;
- (B) a peak 4 relative area of at least 25%, a peak 3 relative area of less than 60%, the sum of the relative peak 3 and peak 4 areas being at least 50%; and
- (C) less than 10% chromatographic peaks eluting at shorter retention time than peak 3, corresponding to peaks 1 and 2.
- 17. A method of forming a basic aluminum material according to claim 16, wherein the peak 4 relative area is at least 40% and the peak 3 relative area is less than 50%.
- 18. A method of forming a basic aluminum material according to claim 16, wherein during the reacting the solution is at a temperature of 45.degree. C.-100.degree. C.
- 19. A method of forming a basic aluminum material according to claim 18, wherein during the reacting the solution is at a temperature of 45.degree. C.-90.degree. C.
- 20. A method of forming a basic aluminum material according to claim 16, wherein during the reacting the solution is at a temperature of 45.degree. C.-140.degree. C., and the reacting is continued for 0.5-17 hours.
- 21. A method of forming a basic aluminum material according to claim 16, wherein the Al(Y.sup.w O.sub.n).sub.3 is dissolved in water so as to provide a solution containing 19-45% by weight Al(Y.sup.w O.sub.n).sub.3.
- 22. A method of forming a basic aluminum material according to claim 16, wherein the Al(Y.sup.w O.sub.n).sub.3 is prepared in situ from aluminum metal and inorganic acid HY.sup.w O.sub.n.
- 23. A method of forming a basic aluminum material according to claim 22, wherein the inorganic acid is selected from the group consisting of HNO.sub.3, HIO.sub.4, HClO.sub.3, and HClO.sub.4.
- 24. A method of forming a basic aluminum material according to claim 23, wherein the inorganic acid is HNO.sub.3.
- 25. A method of forming a basic aluminum material according to claim 16, wherein the reaction product is characterized by having at least 25% by weight thereof being in the form of Al.sup.b polyhydroxyaquoaluminum species.
- 26. A method of forming a basic aluminum material according to claim 16, wherein in said reacting, a further reaction product Y.sub.p.sup.v O.sub.h is formed, where v is the oxidation state of Y in the further reaction product, p is 1 or 2, o.ltoreq.v<w and o.ltoreq.h.ltoreq.5.
- 27. A method of forming a basic aluminum material according to claim 16, wherein said further reaction product is a gas or is a soluble anion, of lower oxidation state of Y than in Al(Y.sup.w O.sub.n).sub.3, dissolved in water to form said solution.
- 28. A method of forming a basic aluminum material having enhanced antiperspirant activity, comprising the steps of dissolving aluminum nitrate nonahydrate in water so as to form a solution; and reacting aluminum metal with the aluminum nitrate nonahydrate in solution so as to form aluminum nitratohydrate, the reacting being performed at a temperature, and for a time, such that the aluminum nitratohydrate is characterized by:
- (a) size exclusion high performance liquid chromatography peaks corresponding to peak 3 and peak 4 of size exclusion chromatograms formed by HPLC technique;
- (b) a peak 4 relative area of at least 25%, a peak 3 relative area of less than 60%, the sum of the relative peak 3 and peak 4 areas being at least 50%; and
- (c) less than 10% chromatographic peaks eluting at shorter retention times than peak 3, corresponding to peaks 1 and 2.
- 29. A method according to claim 28, wherein during the reacting the solution is held at temperatures less than 90.degree. C.
- 30. A method according to claim 28, wherein the peak 4 relative area is at least 40%, and the peak 3 relative area is less than 50%.
- 31. A basic aluminum material according to claim 1, having substantially no species with a size greater than 100 .ANG..
- 32. A basic aluminum material according to claim 13, having substantially no species with a size greater than 100 .ANG..
- 33. Product formed by the method of claim 16.
- 34. Product formed by the method of claim 25.
- 35. Product formed by the method of claim 28.
- 36. A method of forming a basic aluminum material having enhanced antiperspirant activity, comprising the steps of:
- (a) dissolving Al(Y.sup.w O.sub.n).sub.3 in water so as to form a solution, where Y is nitrogen or a halogen, w is the oxidation state of Y, and n is dependent on the oxidation state of Y; and
- (b) reacting aluminum metal with Al(Y.sup.w O.sub.n).sub.3 in solution so as to form a reaction product of Al.sub.2 (OH).sub.6-a (Y.sup.z O.sub.n).sub.a, where (Y.sup.z O.sub.n) is a univalent oxoanion of nitrogen or a halogen, which oxoanion forms salts with Al.sup.3+ in aqueous solutions so that these salts are substantially completely dissociated, which oxoanion is readily soluble in water with metallic ions in the solutions, and which oxoanion forms conjugate acids that are strong acids, and where 0.5.ltoreq.a.ltoreq.5.0 and o.ltoreq.Z.ltoreq.w, the reacting being performed at a temperature, and for a time, such that the reaction product is characterized by:
- (A) size exclusion high performance liquid chromatography peaks corresponding to peak 3 and peak 4 of size exclusion chromatograms formed by HPLC technique; and
- (B) at least 25% by weight of the basic aluminum material is in the form of Al.sup.b polyhydroxyaquoaluminum species.
- 37. A method of forming a basic aluminum material according to claim 36, wherein 25%-50% by weight of the basic aluminum material is in the form of Al.sup.b polyhydroxyaquoaluminum species.
- 38. Product formed by the method of claim 36.
Parent Case Info
This application is a divisional application of application Ser. No. 07/518,516, filed May 2, 1990, now Pat. No. 5,202,115 which is a continuation-in-part application of application Ser. No. 07/233,008, filed Aug. 17, 1988 now abandoned.
US Referenced Citations (4)
Number |
Name |
Date |
Kind |
4223010 |
Rubino et al. |
Sep 1980 |
|
4775528 |
Callaghan et al. |
Oct 1988 |
|
4871525 |
Giovanniello et al. |
Oct 1989 |
|
4900534 |
Inward |
Feb 1990 |
|
Divisions (1)
|
Number |
Date |
Country |
Parent |
518516 |
May 1990 |
|
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
233008 |
Aug 1988 |
|