Claims
- 1. An electrochemical cell, which comprises:
a) an anode; b) a cathode of a first cathode active material having a relatively low energy density but a relatively high rate capability short circuited with a second cathode active material having a relatively high energy density but a relatively low rate capability, wherein the second cathode active material faces the anode; and c) a nonaqueous electrolyte activating the anode and the cathode.
- 2. The electrochemical cell of claim 1 wherein the anode is of an alkali metal.
- 3. The electrochemical cell of claim 1 wherein the first cathode active material is selected from the group consisting of SVO, CSVO, V2O51 MnO2, LiCoO2, LiNiO2, LiMnO2, CUO2, TiS2, Cu2S, FeS, FeS2, copper oxide, copper vanadium oxide, and mixtures thereof.
- 4. The electrochemical cell of claim 1 wherein the second cathode active material is selected from the group consisting of CFx, Ag2O, Ag2O2, CuF, Ag2CrO4, MnO2, SVO, and mixtures thereof.
- 5. The electrochemical cell of claim 1 wherein the cathode has the configuration: CFx/current collector/SVO/current collector/CFx.
- 6. The electrochemical cell of claim 1 wherein the cathode has the configuration: CFx/current collector/CFx/SVO/CFx/current collector/CFx.
- 7. The electrochemical cell of claim 1 wherein the anode is lithium and the cathode has the configuration: CFx/current collector/SVO, with the CFx facing the lithium anode.
- 8. An electrochemical cell, which comprises:
a) an anode; b) a cathode of a first cathode active material having a relatively low energy density but a relatively high rate capability sandwiched between a first and second current collectors with a second cathode active material having a relatively high energy density but a relatively low rate capability contacting at least one of the first and second current collectors opposite the first cathode active material and facing the anode; and c) a nonaqueous electrolyte activating the anode and the cathode.
- 9. The electrochemical cell of claim 8 wherein the anode is of an alkali metal.
- 10. The electrochemical cell of claim 8 wherein the first cathode active material is selected from the group consisting of SVO, CSVO, V2O5, MnO2, LiCoO2, LiNiO2, LiMnO2, CuO2, TiS2, Cu2S, FeS, FeS2, copper oxide, copper vanadium oxide, and mixtures thereof.
- 11. The electrochemical cell of claim 8 wherein the second cathode active material is selected from the group consisting of CFx, Ag2O, Ag2O2, CuF, Ag2CrO4, MnO2, and mixtures thereof.
- 12. The electrochemical cell of claim 8 wherein the first and second current collectors are selected from the group consisting of stainless steel, titanium, tantalum, platinum, gold, aluminum, cobalt nickel alloys, highly alloyed ferritic stainless steel containing molybdenum and chromium, and nickel-, chromium-, and molybdenum-containing alloys.
- 13. The electrochemical cell of claim 8 wherein the first and second current collectors are titanium having a coating selected from the group consisting of graphite/carbon material, iridium, iridium oxide and platinum provided thereon.
- 14. The electrochemical cell of claim 8 wherein the anode is lithium, the first cathode active material is SVO, the second cathode active material is CFx and the first and second current collectors are titanium.
- 15. The electrochemical cell of claim 8 wherein the cathode has the configuration: CFx/current collector/SVO/current collector/CFx.
- 16. The electrochemical cell of claim 8 wherein the cathode has the configuration: CFx/current collector/CFx/SVO/CFx/current collector/CFx.
- 17. The electrochemical cell of claim 8 wherein the electrolyte has a first solvent selected from an ester, a linear ether, a cyclic ether, a dialkyl carbonate, and mixtures thereof, and a second solvent selected from a cyclic carbonate, a cyclic ester, a cyclic amide, and mixtures thereof.
- 18. The electrochemical cell of claim 17 wherein the first solvent is selected from the group consisting of tetrahydrofuran (THF), methyl acetate (MA), diglyme, trigylme, tetragylme, dimethyl carbonate (DMC), 1,2-dimethoxyethane (DME), 1,2-diethoxyethane (DEE), 1-ethoxy,2-methoxyethane (EME), ethyl methyl carbonate, methyl propyl carbonate, ethyl propyl carbonate, diethyl carbonate, dipropyl carbonate, and mixtures thereof, and the second solvent is selected from the group consisting of propylene carbonate (PC), ethylene carbonate (EC), butylene carbonate, acetonitrile, dimethyl sulfoxide, dimethyl formamide, dimethyl acetamide, γ-valerolactone, γ-butyrolactone (GBL), N-methyl-pyrrolidinone (NMP), and mixtures thereof.
- 19. The electrochemical cell of claim 8 including a lithium salt selected from the group consisting of LiPF6, LiBF4, LiAsF6, LiSbF6, LiClO4, LiO2, LiAlCl4, LiGaCl4, LiC (SO2CF3)3, LiN (SO2CF3)2, LiSCN, LiO3SCF3, LiC6F5SO3, LiO2CCF3, LiSO6F, LiB(C6H5)4, LiCF3SO3, and mixtures thereof.
- 20. The electrochemical cell of claim 8 wherein the electrolyte is 0.8M to 1.5M LiAsF6 or LiPF6 dissolved in a 50:50 mixture, by volume, of propylene carbonate as the first solvent and 1,2-dimethoxyethane as the second solvent.
- 21. An electrochemical cell, which comprises:
a) an anode; b) a cathode of a first cathode active material having a relatively low energy density but a relatively high rate capability contacted to one side of a current collector with a second cathode active material having a relatively high energy density but a relatively low rate capability contacting the opposite side of current collector, and wherein the second cathode active material faces the anode; and c) a nonaqueous electrolyte activating the anode and the cathode.
- 22. The electrochemical cell of claim 21 wherein the first cathode active material is selected from the group consisting of SVO, CSVO, V2O5, MnO2, LiCoO2, LiNiO2, LiMnO2, CuO2, TIS2, Cu2S, FeS, FeS2, copper oxide, copper vanadium oxide, and mixtures thereof.
- 23. The electrochemical cell of claim 21 wherein the second cathode active material is selected from the group consisting of CFx, Ag2O, Ag2O2, CuF, Ag2CrO4, MnO2, and mixtures thereof.
- 24. The electrochemical cell of claim 21 wherein the current collectors are selected from the group consisting of stainless steel, titanium, tantalum, platinum, gold, aluminum, cobalt nickel alloys, highly alloyed ferritic stainless steel containing molybdenum and chromium, and nickel-, chromium-, and molybdenum-containing alloys.
- 25. The electrochemical cell of claim 21 wherein the anode is lithium and the cathode has the configuration:
CFx/current collector/SVO, with the CFx facing the lithium anode.
- 26. The electrochemical cell of claim 21 wherein the anode is lithium and the cathode has the configuration: Ag2O/current collector/SVO, with the Ag2O facing the lithium anode.
- 27. The electrochemical cell of claim 21 wherein the anode is lithium and the cathode has the configuration: Ag2O2/current collector/SVO, with the Ag2O2 facing the lithium anode.
- 28. An electrochemical cell, which comprises:
a) a lithium anode; b) a cathode of a first cathode active material selected from the group consisting of SVO, CSVO, V2O5, MnO2, LiCoO2, LiNiO2, LiMnO2, CuO2, TiS2, Cu2S, FeS, FeS2, copper oxide, copper vanadium oxide, and mixtures thereof, sandwiched between a first and second titanium current collectors with a second cathode active material selected from the group consisting of CFx, Ag2O, Ag2O2, CuF, Ag2CrO4, MnO2, and mixtures thereof, contacting at least one of the first and second current collectors opposite the first cathode active material and facing the anode; and c) a nonaqueous electrolyte activating the anode and the cathode.
- 29. A method for providing an electrochemical cell, comprising the steps of:
a) providing an anode; b) providing a cathode of a first cathode active material having a relatively low energy density but a relatively high rate capability short circuited with a second cathode active material having a relatively high energy density but a relatively low rate capability, and providing the second cathode active material facing the anode; and c) activating the anode and cathode with a nonaqueous electrolyte activating the anode and the cathode.
- 30. The method of claim 29 including providing the anode of an alkali metal.
- 31. The method of claim 29 including selecting the first cathode active material from the group consisting of SVO, CSVO, V2O5, MnO2, LiCoO2, LiNiO2, LiMnO2, CuO2, TiS2, Cu2S, FeS, FeS2, copper oxide, copper vanadium oxide, and mixtures thereof.
- 32. The method of claim 29 including selecting the second cathode active material from the group consisting of CFx, Ag2O, Ag2O2, CuF, Ag2CrO4, MnO2, and mixtures thereof.
- 33. The method of claim 29 wherein the anode is lithium, the first cathode active material is SVO, the second cathode active material is CFx and the first and second current collectors are titanium.
- 34. The method of claim 29 including providing the cathode having the configuration: CFx/current collector/SVO/current collector/CFx.
- 35. The method of claim 29 including providing the cathode having the configuration: CFx/current collector/CFx/SVO/CFx/current collector/CFx.
- 36. The method of claim 29 including providing the anode of lithium and the cathode having the configuration: CFx/current collector/SVO, with the CFx facing the lithium anode.
- 37. The method of claim 29 including providing the anode of lithium and the cathode having the configuration: AgO/current collector/SVO, with the AgO facing the lithium anode.
- 38. The method of claim 29 including providing the anode of lithium and the cathode having the configuration: Ag2O2/current collector/SVO, with the Ag2O2 facing the lithium anode.
CROSS REFERENCE TO RELATED APPLICATION
[0001] This application claims priority based on provisional application Ser. No. 60/249,688, filed Nov. 17, 2000.
Provisional Applications (1)
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Number |
Date |
Country |
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60249688 |
Nov 2000 |
US |