Claims
- 1. A silver manganese oxide positive electrode of AgxMnOy for a non-aqueous lithium electrochemical cell, in which x and y are such that the manganese ions in charged or partially charged electrodes have an average oxidation state greater than 3.5.
- 2. The silver manganese oxide positive electrode of claim 1, wherein the manganese ions oxidation state is greater than 3.8.
- 3. The silver manganese oxide positive electrode of claim 1, wherein the manganese ions oxidation state is greater than 3.9.
- 4. The silver manganese oxide positive electrode of claim 1, wherein the manganese ions oxidation state is less than 4.0.
- 5. A positive electrode according to claim 1 in which the AgxMnOy electrodes are mixed with a silver powder current collector.
- 6. A positive electrode according to claim 1 in which the AgxMnOy electrodes are laminated onto a silver foil current collector.
- 7. A method for synthesizing a silver-manganese oxide positive electrode of AgxMnOy for a non-aqueous lithium electrochemical cell, in which x and y are such that the manganese ions in charged or partially charged electrodes have an average oxidation state greater than 3.5 comprising decomposing a permanganate precursor optionally in the presence of silver components or compounds and/or manganese components or compounds to form AgxMnOy.
- 8. A method according to claim 6, in which the permanganate precursor is silver permangante.
- 9. A method according to claim 7, in which the permanganate precursor is decomposed in contact with the electrolyte of the non-aqueous lithium cell.
- 10. A method according to claim 7, in which the permanganate precursor is selected from potassium permanganate, sodium permanganate and/or lithium permanganate and the silver compound if present is selected from silver nitrate and/or silver oxide.
- 11. A method according to claim 7, in which the silver containing compounds if present are selected from silver nitrate or silver oxide.
- 12. A method according to claim 7, in which the manganese compounds are selected from manganese nitrate, manganese sulphate and manganese dioxide.
- 13. A non-aqueous lithium electrochemical cell comprising a negative electrode, an electrolyte and a silver manganese oxide positive electrode of AgxMnOy for a non-aqueous lithium electrochemical cell, in which x and y are such that the manganese ions in charged or partially charged electrodes have an average oxidation state greater than 3.5.
- 14. The non-aqueous lithium electrochemical cell of claim 13, wherein the manganese ions oxidation state is less than 4.0.
- 15. A non-aqueous lithium battery comprising a plurality of electrically connected electrochemical cells, each cell comprising a negative electrode, an electrolyte and a silver manganese oxide positive electrode of AgxMnOy in which x and y are such that the manganese ions in charged or partially charged electrodes have an average oxidation state greater than 3.5.
RELATED APPLICATIONS
[0001] This application, pursuant to 37 C.F.R. 1.78(c), claims priority based on provisional application serial No. 60/409,609 filed on Sep. 10, 2002.
CONTRACTUAL ORIGIN OF THE INVENTION
[0002] The United States Government has rights in this invention pursuant to Contract No. W-31-109-ENG-38 between the U.S. Department of Energy (DOE) and The University of Chicago representing Argonne National Laboratory.
Provisional Applications (1)
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Number |
Date |
Country |
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60409609 |
Sep 2002 |
US |