Claims
- 1. A method for providing an electrochemical cell, which comprises:providing a casing; housing the electrochemical cell within the casing, comprising the steps of: a) providing an anode; b) providing a cathode, consisting essentially of the steps of: i) forming a substantially homogeneous admixture of starting materials comprising vanadium oxide and silver nitrate, wherein the homogeneous admixture is formed at a mixing temperature below a decomposition temperature of the homogeneous admixture; ii) heating the homogeneous admixture to the decomposition temperature without further mixing or stirring once decomposition begins; iii) cooling the thusly produced mixed phase metal oxide; and iv) contacting the mixed phase metal oxide to a current collector; and c) positioning the anode and the cathode inside the casing segregated from each other by a separator; and d) activating the anode and the cathode with an electrolyte filled in the casing.
- 2. The method of claim 1 including heating the substantially homogeneous admixture to the decomposition temperature of at least about 280° C.
- 3. The method of claim 1 including heating the substantially homogenous admixture in an oxygen-containing atmosphere.
- 4. The method of claim 1 including providing the mixed metal oxide admixture such that the resulting mixed phase metal oxide substantially consists of an active material having the general formula Ag2V2Oy and wherein 0.30≦x≦2.0 and 4.5≦y≦6.0.
- 5. The method of claim 1 including providing the anode comprised of a Group IA metal.
- 6. The method of claim 1 including providing the electrolyte operatively associated with the anode and the cathode comprising an ion-forming alkali metal salt dissolved in a nonaqueous solvent.
- 7. A method for providing a cathode for an electrochemical cell, the cathode comprising a mixed phase metal oxide, which method consists essentially of the steps of:a) forming a substantially homogeneous admixture of starting materials comprising vanadium oxide and silver nitrate, wherein the homogeneous admixture is formed at a mixing temperature below a decomposition temperature of the homogeneous admixture; b) heating the homogeneous admixture to the decomposition temperature without further mixing or stirring once decomposition begins; and c) forming the mixed phase metal oxide into the cathode.
- 8. The method of claim 7 including heating the substantially homogeneous admixture to the decomposition temperature of at least about 280° C.
- 9. The method of claim 7 including heating the substantial homogenous admixture in an oxygen-containing atmosphere.
- 10. The method of claim 7 including providing the mixed metal oxide admixture such that the resulting mixed phase metal oxide substantially consists of an active material having the general formula AgxV2Oy and wherein 0.30≦x≦2.0 and 4.5≦y≦6.0.
- 11. A method for providing a mixed phase metal oxide as a cathode active material, which method consists essentially of the steps of:a) forming a substantially homogeneous admixture of starting materials comprising vanadium oxide and silver nitrate, wherein the homogeneous admixture is formed at a mixing temperature below a decomposition temperature of the homogeneous admixture, b) heating the homogeneous admixture to the decomposition temperature without further mixing or stirring once decomposition begins; and c) utilizing the mixed phase metal oxide as a cathode active material.
- 12. The method of claim 11 including heating the substantially homogeneous admixture to the decomposition temperature of at least about 280° C.
- 13. The method of claim 11 including heating the substantially homogeneous admixture in an oxygen-containing atmosphere.
- 14. The method of claim 11 including providing the mixed metal oxide admixture such that the resulting mixed phase metal oxide substantially consists of an active material having the general formula AgxV2Oy and wherein 0.30≦x≦2.0 and 4.5≦y≦6.0.
CROSS-REFERENCE TO RELATED APPLICATION
The present application is a divisional application of Ser. No. 09/439,872, now U.S. Pat. No. 6,558,845 to Leising et al. filed Nov. 12, 1999, which is a continuation-in-part application of Ser. No. 08/917,072, filed Aug. 22, 1997, now abandoned.
US Referenced Citations (9)
Number |
Name |
Date |
Kind |
4310609 |
Liang et al. |
Jan 1982 |
A |
4391729 |
Liang et al. |
Jul 1983 |
A |
5221453 |
Crespi |
Jun 1993 |
A |
5435874 |
Takeuchi et al. |
Jul 1995 |
A |
5472810 |
Takeuchi et al. |
Dec 1995 |
A |
5498494 |
Takeuchi et al. |
Mar 1996 |
A |
5516340 |
Takeuchi et al. |
May 1996 |
A |
5545497 |
Takeuchi et al. |
Aug 1996 |
A |
5716422 |
Muffoletto et al. |
Feb 1998 |
A |
Foreign Referenced Citations (2)
Number |
Date |
Country |
0478303 |
Sep 1990 |
EP |
0618630 |
Mar 1994 |
EP |
Non-Patent Literature Citations (1)
Entry |
Leising, R.A.: Takeuchi, E.S. Chem Matr. 1994, 6, 489-495 “Solid-State Synthesis and Characterization of Silver Vanadium Oxide For Use As A Cathode Material For Lithium Batteries.” no specific month available. |
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
08/917072 |
Aug 1997 |
US |
Child |
09/439872 |
|
US |