Claims
- 1. An electrochemical cell, which comprises:
a) an anode; b) a cathode comprising a cathode active material of a particle size of about 75μ or less; c) a separator disposed intermediate the anode and the cathode to prevent direct physical contact between them; and d) an electrolyte activating the anode and the cathode.
- 2. The electrochemical cell of claim 1 wherein the cathode active material is selected from the group consisting of silver vanadium oxide, copper silver vanadium oxide, manganese dioxide, cobalt nickel, nickel oxide, copper oxide, copper sulfide, iron sulfide, iron disulfide, titanium disulfide, copper vanadium oxide, and mixtures thereof.
- 3. The electrochemical cell of claim 2 wherein the silver vanadium oxide has the general formula AgxV2Oy and is selected from the group consisting of β-phase having in the general formula x=0.35 and y=5.18, γ-phase having in the general formula x=0.74 and y=5.37, ε-phase having in the general formula x=1.0 and y=5.5, and mixtures thereof.
- 4. The electrochemical cell of claim 1 wherein cathode active material essentially consists of particles in a range of about 25 to about 75 microns.
- 5. The electrochemical cell of claim 1 wherein the anode is of lithium.
- 6. The electrochemical cell of claim 1 wherein the separator has a thickness of about 0.001 inches, or less.
- 7. The electrochemical cell of claim 1 wherein the separator is a non-woven fabric.
- 8. The electrochemical cell of claim 1 wherein the separator comprises polyethylene.
- 9. The electrochemical cell of claim 1 wherein the separator is of either a multi layer or a single layer construction.
- 10. The electrochemical cell of claim 1 wherein separator is of a material that melts at a temperature less than 180° C.
- 11. The electrochemical cell of claim 1 wherein the cathode comprises a conductive additive.
- 12. The electrochemical cell of claim 11 wherein the conductive additive is selected from the group consisting of carbon and graphite.
- 13. The electrochemical cell of claim 1 wherein the cathode comprises a binder material.
- 14. The electrochemical cell of claim 13 wherein the binder material is a fluoro-resin polymer.
- 15. The electrochemical cell of claim 1 wherein the cathode component comprises between about 0 to 3 weight percent of a conductive additive, 0 to 3 weight percent of a binder material, and between about 94 to 99 weight percent of the silver vanadium oxide.
- 16. The electrochemical cell of claim 1 wherein the cathode comprises a current collector selected from the group consisting of stainless steel, titanium, tantalum, platinum, gold, aluminum, cobalt nickel alloys, nickel-containing alloys, highly alloyed ferritic stainless steel containing molybdenum and chromium, and nickel-, chromium- and molybdenum-containing alloys.
- 17. The electrochemical cell of claim 1 wherein the electrolyte is nonaqueous.
- 18. An electrochemical cell having a lithium anode, a cathode comprising silver vanadium oxide, a nonaqueous electrolyte and a separator disposed between the anode and the cathode, the improvement comprising the silver vanadium oxide having a particle size of about 75μ or less.
- 19. The electrochemical cell of claim 18 wherein the silver vanadium oxide has the general formula AgxV2Oy and is selected from the group consisting of β-phase having in the general formula x=0.35 and y=5.18, γ-phase having in the general formula x=0.74 and y=5.37, ε-phase having in the general formula x=1.0 and y=5.5, and mixtures thereof.
- 20. The electrochemical cell of claim 18 wherein silver vanadium oxide essentially consists of particles in a range of about 25 to about 75 microns.
- 21. The electrochemical cell of claim 18 wherein the separator has a thickness of about 0.001 inches, or less.
- 22. The electrochemical cell of claim 18 wherein the separator is a non-woven fabric.
- 23. The electrochemical cell of claim 18 wherein the separator comprises polyethylene.
- 24. The electrochemical cell of claim 18 wherein the separator is of either a multi layer or a single layer construction.
- 25. The electrochemical cell of claim 18 wherein separator is of a material that melts at a temperature less than 180° C.
- 26. A method for providing an electrochemical cell, comprising the steps of:
a) providing an anode; b) providing a cathode of a cathode active material having a particle size of about 75μ or less; c) positioning a separator between the anode and the cathode; and d) activating the anode and the cathode with an electrolyte.
- 27. The method of claim 26 wherein the silver vanadium oxide has the general formula AgxV2Oy and is selected from the group consisting of β-phase having in the general formula x=0.35 and y=5.18, γ-phase having in the general formula x=0.74 and y=5.37, ε-phase having in the general formula x=1.0 and y=5.5, and mixtures thereof.
- 28. The method of claim 26 wherein silver vanadium oxide essentially consists of particles in a range of about 25 to about 75 microns.
- 29. The method of claim 26 including providing the separator having a thickness of about 0.001 inches, or less.
- 30. The method of claim 26 including providing the separator of a non-woven fabric.
- 31. The method of claim 26 wherein the separator comprises polyethylene.
- 32. The method of claim 26 including providing the separator of either a multi layer or a single layer construction.
- 33. The method of claim 26 including providing the separator of a material that melts at a temperature less than 180° C.
CROSS REFERENCE TO RELATED APPLICATION
[0001] This application claims priority based on provisional application Serial No. 60/323,373, filed Sep. 19, 2001.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60323373 |
Sep 2001 |
US |