Claims
- 1. An electrochemical device, comprising as an electrolyte an ion conductive material which comprises at least one ionic compound in an aprotic solvent, wherein the ionic compound is represented by one of the formulae: (1/mM)+((FSO2)2N)—, (1/mM)+((FSO2)3C)− or (1/mM)+((FSO2)2CQ)−, wherein:Q is —H, —COZ or Z; each substituent Z independently denotes a fluorine atom; M is a cation selected from the group consisting of an alkali metal, an alkaline-earth metal, a transition metal, zinc, cadmium, mercury, a rare earth, diazonium ion, phosphonium ion, sulphonium ion, oxonium ion, and an organic cation NuR+, wherein Nu is selected from the group consisting of ammonia, alkylamines, pyridines, imidazoles, amidines, guanidines and alkaloids, wherein R is hydrogen, an alkyl group or an oxaalkyl group containing from 1 to 20 carbon atoms or an aryl group containing from 6 to 30 carbon atoms; and m is the valency of the cation M.
- 2. The electrochemical device of claim 1, wherein the aprotic solvent is a liquid solvent selected from the group consisting of linear ethers, cyclic ethers, esters, nitriles, nitro compounds, amides, sulphones, sulpholanes and sulphamides.
- 3. The electrochemical device of claim 1, wherein the aprotic solvent is an optionally crosslinked solvating polymer optionally carrying grafted ionic groups.
- 4. The electrochemical device of claim 3, wherein the solvating polymer is selected from the group consisting of:polyethers of linear, comb and block structure, optionally forming a network, based on poly(ethylene oxide), copolymers containing ethylene oxide, propylene oxide, allyl glycidyl ether unit, and polyphosphazenes, crosslinked networks based on polyethylene glycol crosslinked with isocyanates, networks obtained by polycondensation and bearing groups which allow the incorporation of crosslinkable groups, and block copolymers in which some blocks carry functional groups having redox properties.
- 5. The electrochemical device of claim 1, wherein the aprotic solvent is a mixture of an aprotic liquid solvent and of a solvating polymer solvent.
- 6. The electrochemical device of claim 1, wherein the aprotic solvent consists essentially of an aprotic liquid solvent and a nonsolvating polar polymer solvent including units containing at least one heteroatom selected from the group consisting of sulphur, oxygen, nitrogen and fluorine.
- 7. The electrochemical device of claim 6, wherein the nonsolvating polar polymer is selected from the group consisting of poly(acrylonitrile), poly(fluorovinylidene) and poly(N-vinylpyrrolidone).
- 8. The electrochemical device of claim 1, wherein the electrolyte further comprises at least one second salt.
- 9. The electrochemical device of claim 8, wherein the second salt is selected from the group consisting of perfluoroalkanesulphonates, bis(perfluoroalkylsulphonyl)imides, bis(perfluoroalkylsulphonyl)methanes, tris(perfluoroalkylsulphonyl)methanes and homologues thereof in which at least one sulphonyl group is replaced by a carbonyl group.
- 10. The electrochemical device of claim 1, wherein the electrolyte further comprises a plasticizer or a filler or both.
- 11. A battery, comprising the electrochemical device of claim 1, wherein the negative electrode comprises lithium.
- 12. The battery of claim 11, wherein the negative electrode comprises metallic lithium, a lithium alloy or intercalated ionic lithium.
- 13. The battery of claim 11, wherein the positive electrode has a collector comprising aluminum.
- 14. A battery, comprising an positive electrode, a negative electrode and an electrolyte, wherein the electrolyte comprises at least one ionic compound in an aprotic solvent, wherein the ionic compound is represented by one of the formulae (1/mM)+((FSO2)2N)—, (1/mM)+((FSO2)3C)− or (1/mM)+((FSO2)2CQ)−, wherein:Q is —H, —COZ or Z; each substituent Z independently denotes a fluorine atom; M is a cation selected from the group consisting of an alkali metal, an alkaline-earth metal a transition metal, zinc, cadmium, mercury, a rare earth, diazonium ion, phosphonium ion, sulphonium ion, oxonium ion, and an organic cation NuR+, wherein Nu is selected from the group consisting of ammonia, alkylamines, pyridines, imidazoles, amidines, guanidines and alkaloids, wherein R is hydrogen, an alkyl group or an oxaalkyl group containing from 1 to 20 carbon atoms or an aryl group containing from 6 to 30 carbon atoms; and m is the valency of the cation M.
- 15. The battery of claim 14, wherein the aprotic solvent is an aprotic liquid solvent selected from the group consisting of linear ethers, cyclic ethers, esters, nitriles, nitro compounds, amides, sulphones, sulpholanes and sulphamides.
- 16. The battery of claim 14, wherein the aprotic solvent is an optionally crosslinked solvating polymer optionally carrying grafted ionic groups.
- 17. The battery of claim 16, wherein the solvating polymer is selected from the group consisting of:polyethers of linear, comb and block structure, optionally forming a network, based on poly(ethylene oxide), copolymers containing ethylene oxide, propylene oxide, allyl glycidyl ether unit, and polyphosphazenes, crosslinked networks based on polyethylene glycol crosslinked with isocyanates, networks obtained by polycondensation and bearing groups which allow the incorporation of crosslinkable groups, and block copolymers in which some blocks carry functional groups which have redox properties.
- 18. The battery of claim 14, wherein the aprotic solvent comprises a mixture of an aprotic liquid solvent and of a solvating polymer solvent.
- 19. The battery of claim 14, wherein the aprotic solvent consists essentially of an aprotic liquid solvent and a nonsolvating polar polymer solvent including units containing at least one heteroatom selected from the group consisting of sulphur, oxygen, nitrogen and fluorine.
- 20. The battery of claim 19, wherein the nonsolvating polar polymer is selected from the group consisting of poly(acrylonitrile), poly(fluorovinylidene) and poly(N-vinylpyrrolidone).
- 21. The battery of claim 14, wherein the electrolyte further comprises at least one second salt.
- 22. The battery of claim 21, wherein the second salt is selected from the group consisting of perfluoroalkanesulphonates, bis(perfluoroalkylsulphonyl)imides, bis(perfluoroalkylsulphonyl)methanes, tris(perfluoroalkylsulphonyl)methanes or the homologues thereof in which at least one sulphonyl group is replaced by a carbonyl group.
- 23. The battery of claim 14, wherein the electrolyte further comprises a plasticizer or a filler or both.
- 24. The battery of claim 14, wherein the negative electrode comprises lithium.
- 25. The battery of claim 24, wherein the positive electrode has a collector comprising aluminum.
- 26. The battery of claim 14, wherein the negative electrode comprises of metallic lithium, a lithium alloy or intercalated ionic lithium.
Priority Claims (2)
Number |
Date |
Country |
Kind |
94 03277 |
Mar 1994 |
FR |
|
94 03276 |
Mar 1994 |
FR |
|
Parent Case Info
This application is a Divisional Application of U.S. application Ser. No. 09/274,883, filed on Mar. 23, 1999, now U.S. Pat. No. 6,254,797, issued on Jul. 3, 2001, which is a Continuation Application of U.S. application Ser. No. 08/537,944, filed Nov. 21, 1995, now U.S. Pat. No. 5,916,475, issued Jun. 29, 1999, which is the National Stage Application of International Application PCT/FR95/00343, filed on Mar. 21, 1995.
US Referenced Citations (2)
Number |
Name |
Date |
Kind |
4851307 |
Armand et al. |
Jul 1989 |
A |
5021308 |
Armand et al. |
Jun 1991 |
A |
Continuations (1)
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Parent |
08/537944 |
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US |
Child |
09/274883 |
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US |