Claims
- 1. An electrochemical battery, comprising:
a) a first electrochemical cell comprising:
i) a first anode comprising alkali metal electrically associated with a first anode current collector; ii) terminal for connecting the first anode current collector to an external lead; iii) a first cathode of a first cathode active material electrically associated with a first cathode current collector; iv) terminal for connecting the first cathode current collector to an external lead; and v) a first electrolyte operatively associated with the first anode and the first cathode; and b) a second electrochemical cell comprising:
i) a second anode comprising alkali metal electrically associated with a second anode current collector; ii) terminal for connecting the second anode current collector to an external lead; iii) a second cathode of a second cathode active material electrically associated with a second cathode current collector; iv) terminal for connecting the second cathode current collector to an external lead; and v) a second electrolyte operatively associated with the second anode and the second cathode; and wherein the first cell is connected in parallel to the second cell and wherein the first cathode active material has a relatively high energy density but a relatively low rate capability and the second cathode active material has a relatively low energy density but a relatively high rate capability.
- 2. The electrochemical battery of claim 1 wherein the first and second cells are dischargeable under a substantially constant discharge rate and under a current pulse discharge application.
- 3. The electrochemical battery of claim 1 wherein the first cell and the second cell are housed in the same casing and the first electrolyte and the second electrolyte are the same.
- 4. The electrochemical cell of claim 1 wherein the first 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 second cathode active material is selected from the group consisting of SVO, CSVO, V2O5, MnO2, LiCoO2, LiNiO2, LiMnO2, CuO2, TiS, Cu2S, FeS, FeS2, copper oxide, copper vanadium oxide, and mixtures thereof.
- 6. An electrochemical battery, comprising:
a) a casing; b) a first electrochemical cell housed within the casing, the first cell comprising:
i) a first anode comprising alkali metal electrically associated with a first anode current collector; ii) a first cathode of a first cathode active material electrically associated with a first cathode current collector; and iii) an electrolyte solution operatively associated with the first anode and the first cathode; and c) a second electrochemical cell housed within the casing, the second cell comprising:
i) a second anode comprising alkali metal electrically associated with a second anode current collector; ii) a second cathode of a second cathode active material electrically associated with a second cathode current collector; and iii) the electrolyte solution operatively associated with the second anode and the second cathode; and wherein the first cell is connected in parallel to the second cell and wherein the first cathode active material has a relatively high energy density but a relatively low rate capability and the second cathode active material has a relatively low energy density but a relatively high rate capability.
- 7. The electrochemical battery of claim 6 wherein the first and second cells are dischargeable under a substantially constant discharge rate and under a current pulse discharge application.
- 8. The electrochemical battery of claim 6 wherein the first and second anode current collectors are electrically connected to the casing to provide a case-negative configuration for the first and second cells.
- 9. The electrochemical battery of claim 6 wherein both the first and second cathode current collectors are electrically connected to respective cathode terminals electrically insulated from the casing.
- 10. The electrochemical battery of claim 6 wherein both the first and second anode current collectors are electrically connected to respective anode terminals electrically insulated from the casing.
- 11. The electrochemical battery of claim 6 herein the anode is comprised of lithium.
- 12. The electrochemical battery of claim 6 wherein the anode comprises a lithium-aluminum alloy.
- 13. The electrochemical battery of claim 12 wherein the aluminum comprises from between about 0% to about 50% by weight of the anode alloy.
- 14. The electrochemical battery of claim 6 wherein the nonaqueous electrolyte comprises a first solvent selected from the group consisting of an ester, an ether, a dialkyl carbonate, and mixtures thereof, and a second solvent selected from the group consisting of a cyclic carbonate, a cyclic ester, a cyclic amide, and mixtures thereof.
- 15. The electrochemical battery of claim 6 wherein the first solvent is selected from the group consisting of tetrahydrofuran, methyl acetate, diglyme, triglyme, tetraglyme, 1,2-dimethoxyethane, diisopropylether, 1,2-diethoxyethane, 1-ethoxy,2-methoxyethane, dimethyl carbonate, diethyl carbonate, dipropyl carbonate, ethyl methyl carbonate, methyl propyl carbonate, ethyl propyl carbonate, and mixtures thereof.
- 16. The electrochemical battery of claim 6 wherein the second solvent is selected from the group consisting of propylene carbonate, ethylene carbonate, butylene carbonate, acetonitrile, dimethyl sulfoxide, dimethyl formamide, dimethyl acetamide, γ-valerolactone, γ-butyrolactone, N-methyl-pyrrolidinone, and mixtures thereof.
- 17. The electrochemical battery of claim 6 including providing an alkali metal salt in the electrolyte, the alkali metal salt being selected from the group consisting of LiPFE, LiBF4, LiAsF6, LiSbF6, LiClO4, LiAlCl4, LiGaCl4, LiC(SO2CF3)3, LiO2, LiN(SO2CF3)2, LiSCN, LiO3SCF2CF3, LiC6F5SO3, LiO2CCF3, LiSO3F, LiB(C6H5)4, LiF3SO3, and mixtures thereof.
- 18. The electrochemical battery of claim 6 wherein the first cathode active material is selected from the group consisting of CFx, Ag2O, Ag2O2, CuF, Ag2CrO4, MnO2, SVQ, and mixtures thereof.
- 19. The electrochemical battery of claim 6 wherein the second cathode active material is selected from the group consisting of SVO, CSVQ, V2O5, MnO2, LiCoO2, LiNiO2, LiMnO2, CuO2, TiS, Cu2S, FeS, FeS2, copper oxide, copper vanadium oxide, and mixtures thereof.
- 20. The electrochemical battery of claim 6 wherein both the first and second cathodes comprise from between about 80 weight percent to about 99 weight percent of the respective first and second cathode active materials.
- 21. The electrochemical battery of claim 6 wherein at least one of the first and second cathodes further comprises a binder material and conductive additives.
- 22. The electrochemical battery of claim 21 wherein the binder material is a fluoro-resin powder.
- 23. The electrochemical battery of claim 21 wherein the conductive additives are selected from the group consisting of carbon, graphite powder, acetylene black, and mixtures thereof.
- 24. The electrochemical battery of claim 6 wherein the first and second cathodes comprise about 0 to 3 weight percent carbon, about 1 to 5 weight percent of a powder fluoro-resin and about 94 to 99 weight percent of the respective first and second cathode active materials.
- 25. The electrochemical battery of claim 6 wherein the cathode of the first cell is formed of a cathode sheet associated with the anode in a jellyroll configuration.
- 26. In combination with an implantable medical device requiring electrical power for a monitoring function and a device operating function, a battery comprising:
a) a first cell having a first anode comprising lithium and a first cathode comprising silver vanadium oxide; b) a second cell having a second anode comprising lithium and a second cathode comprising fluorinated carbon; and c) a casing containing both cells connected in parallel and activated by a nonaqueous electrolyte.
- 27. An electrochemical battery, which comprises:
a) a first cell having a first anode and a first cathode of a first cathode active material of a relatively high energy density but a relatively low rate capability; b) a second cell having a second anode and a second cathode of a second cathode active material of a relatively low energy density but a relatively high rate capability, wherein the first cell is connected in parallel to the second cell so that first and second cells are dischargeable together at a relatively low electrical current of about 1 microampere to about 100 milliamperes and wherein the second cell is dischargeable at a relatively high electrical current of about 1 to about 4 amperes such that should a background voltage of the second cell fall below a working voltage of the first cell, the second cell is recharged by the first cell to equalize each of their working voltages.
- 28. The electrochemical battery of claim 27 wherein the first cell is of a Li/CFx couple.
- 29. The electrochemical battery of claim 27 wherein the second cell is of a Li/SVO couple.
- 30. The electrochemical battery of claim 27 powering a cardiac defibrillator.
- 31. A method for providing an electrochemical battery capable of discharge at both a substantially constant discharge rate and under a current pulse discharge application, which comprises:
d) providing a first electrochemical cell, comprising the steps of:
i) providing a first anode comprising alkali metal and electrically associating the alkali metal with a first anode current collector; ii) providing a first cathode of cathode active material and electrically associating the first cathode active material with a first cathode current collector; and iii) activating the first electrochemical cell with an electrolyte solution operatively associated with the first anode and the first cathode; and e) providing a second electrochemical cell, comprising the step of:
i) providing a second anode comprising alkali metal and electrically associating the alkali metal with a second anode current collector; ii) providing a second cathode of cathode active material and electrically associating the second cathode active material with a second cathode current collector; and iii) activating the second electrochemical cell with the electrolyte solution operatively associated with the second anode and the second cathode; wherein the first cell is connected in parallel to the second cell and wherein the first cathode active material has a relatively high energy density but a relatively low rate capability and the second cathode active material has a relatively low energy density but a relatively high rate capability.
- 32. The method of claim 31 including providing the first and the second electrochemical cells dischargeable under a substantially constant discharge rate and under a current pulse discharge application.
- 33. The method of claim 31 including electrically connecting the first and second anode current collectors to the casing to provide a case-negative configuration for the first and second cells.
- 34. The method of claim 31 including electrically connecting both the first and second cathode current collectors to respective cathode terminals electrically insulated from the casing.
- 35. The method of claim 31 including electrically connecting both the first and second anode current collectors connected to respective anode terminals electrically insulated from the casing.
- 36. The method of claim 31 including providing the anode comprised of lithium.
- 37. The method of claim 31 including providing the nonaqueous electrolyte comprising a first solvent selected from the group consisting of an ester, an ether, a dialkyl carbonate, and mixtures thereof, and a second solvent selected from the group consisting of a cyclic carbonate, a cyclic ester, a cyclic amide, and mixtures thereof.
- 38. The method of claim 31 including selecting the first cathode active material from the group consisting of CFx, Ag2O, Ag2O2, CuF, Ag2CrO4, MnO2, SVO, and mixtures thereof.
- 39. The method of claim 31 including selecting the second cathode active material from the group consisting of SVO, CSVO, V2O5, MnO2, LiCoO2, LiNiO2, LiMnO2, CuO2, TiS, Cu2S, FeS, FeS2, copper oxide, copper vanadium oxide, and mixtures thereof.
CROSS REFERENCE TO RELATED APPLICATION
[0001] The present application claims priority based on provisional application Ser. No. 60/183,010, filed Feb. 16, 2000.
Provisional Applications (1)
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Number |
Date |
Country |
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60183010 |
Feb 2000 |
US |