Claims
- 1. An active material composition for a nickel positive electrode comprising:
a nickel hydroxide material; and an additive material comprising a metal oxide; wherein said metal oxide is one or more of: a) a single metal oxide containing one metal selected from the group consisting of Ce, Ti, Mo, V, W, Sn, Mn, In, Y, Sm, and Nb; and b) a binary or higher non-stoichiometric, solid solution, oxide containing two or more metals selected from the group consisting of Ti, Mo, V, W, Sn, Mn, In, Y, Sm, Nb, Ce, and Mm.
- 2. The active material composition according to claim 1, wherein said metal oxide is cerium oxide.
- 3. The active material composition according to claim 2, wherein said cerium oxide is doped with a divalent oxide.
- 4. The active material composition according to claim 2, wherein said cerium oxide is doped with a trivalent oxide.
- 5. The active material composition according to claim 2, wherein said cerium oxide is doped with a tetravalent oxide.
- 6. The active material composition according to claim 1, wherein said metal oxide is titanium oxide.
- 7. The active material composition according to claim 6, wherein said titanium oxide has the formula TiOx, wherein 0.65≦x≦1.25.
- 8. The active material composition according to claim 6, wherein said titanium oxide is comprised of two or more sub-oxides having the formula TiOx, wherein 0.65≦x≦1.25.
- 9. The active material composition according to claim 1, wherein said binary or higher non-stoichiometric, solid solution, oxide includes cerium.
- 10. The active material composition according to claim 9, wherein said binary or higher non-stoichiometric, solid solution, oxide includes cerium and titanium.
- 11. The active material composition according to claim 1, wherein said single oxide has the formula AnO2n-1, wherein 4.0≦n≦50 and A is titanium or vanadium.
- 12. The active material composition according to claim 1, wherein said single oxide has the formula AnO3n-1, wherein 4.0≦n≦50 and A is molybdenum or tungsten.
- 13. The active material composition according to claim 1, wherein said single oxide has the formula AnO3n-2, wherein 4.0≦n≦50 and A is molybdenum or tungsten.
- 14. The active material composition according to claim 1, wherein said binary or higher non-stoichiometric, solid solution oxide has the formula (AnO2n-1), wherein 4.0≦n≦50, and A is titanium and vanadium.
- 15. The active material composition according to claim 1, wherein said binary or higher non-stoichiometric, solid solution oxide has the formula (AnO3n-1), wherein 4.0≦n≦50, A is molybdenum and tungsten.
- 16. The active material composition according to claim 1, wherein said binary or higher non-stoichiometric, solid solution oxide has the formula (AnO3n-2), wherein 4.0≦n≦50, A is molybdenum and tungsten.
- 17. The active material composition according to claim 1, wherein said binary or higher non-stoichiometric, solid solution oxide has the formula Bx(AnO2n-1)1-x, wherein 0.0≦x≦1.0, 4.0≦n≦50, A is titanium and/or vanadium, and B is one or more metals chosen from the group of Ti, Mo, V, W, Sn, Mn, In, Y, Sm, Nb, Ce, and Mm.
- 18. The active material composition according to claim 1, wherein said binary or higher non-stoichiometric, solid solution oxide has the formula Bx(AnO3n-1)1-x, wherein 0.0<x≦1.0, 4.0≦n≦50, A is molybdenum and/or tungsten, and B is one or more metals chosen from the group of Ti, Mo, V, W, Sn, Mn, In, Y, Sm, Nb, Ce, and Mm.
- 19. The active material composition according to claim 1, wherein said binary or higher non-stoichiometric, solid solution oxide has the formula Bx(AnO3n-2)1-x, wherein 0.0<x≦1.0, 4.0≦n≦50, A is molybdenum and/or tungsten, and B is one or more metals chosen from the group of Ti, Mo, V, W, Sn, Mn, In, Y, Sm, Nb, Ce, and Mm.
- 20. The active material composition according to claim 1, wherein said active material composition comprises:
78.6 to 85.6 weight percent nickel hydroxide; 3.0 to 6.0 weight percent cobalt; 3.0 to 8.0 weight percent cobalt oxide; 3.0 to 10.0 weight percent of said additive material; and 0.4 weight percent binder material.
- 21. The active material composition according to claim 20, wherein said active material comprises 5.0 to 9.0 weight percent of said additive material.
- 22. An active material composition for a nickel positive electrode comprising:
a nickel hydroxide material; and an additive material comprising a titanium oxide.
- 23. The active material composition according to claim 22, wherein said titanium oxide has the formula TiOx, wherein 0.65≦x≦1.25.
- 24. The active material composition according to claim 22, wherein said titanium oxide is comprised of two or more sub-oxides having the formula TiOx, wherein 0.65≦x≦1.25.
- 25. The active material composition according to claim 22, wherein said active material composition comprises:
78.6 to 85.6 weight percent nickel hydroxide; 3.0 to 6.0 weight percent cobalt; 3.0 to 8.0 weight percent cobalt oxide; 3.0 to 10.0 weight percent of said additive material; and 0.4 weight percent binder material.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] The present invention is a continuation-in-part of, and is entitled to the benefit of the earlier filing date and priority of, co-pending U.S. patent application Ser. No. ______, to Ovshinsky et al., which is assigned to the same assignee as the current application, entitled “PERFORMANCE ENHANCING ADDITIVE MATERIAL FOR THE NICKEL HYDROXIDE POSITIVE ELECTRODE IN RECHARGEABLE ELECTROCHEMICAL CELLS”, filed Mar. 3, 2003, the disclosure of which is hereby incorporated by reference.