Claims
- 1. A solid state ion conducting electrolyte, comprising a polymer matrix having an alkali metal salt dissolved therein, wherein said salt has an anion with a long or branched chain having not less than 5 carbon or silicon atoms therein.
- 2. The solid state ion conducting electrolyte of claim 1, wherein the polymer matrix has ether oxygens.
- 3. The solid state ion conducting electrolyte of claim 1, wherein the polymer matrix is a polyether.
- 4. The solid state ion conducting electrolyte of claim 1, wherein the polymer matrix includes poly(ethylene oxide) or poly(propylene oxide) or mixtures thereof or co-polymers.
- 5. The solid state ion conducting electrolyte of claim 1, wherein the polymer matrix includes poly(ethylene oxide) or poly(propylene oxide) or poly(n-propylene oxide) or mixtures or co-polymers thereof.
- 6. The solid state ion conducting electrolyte of claim 1, wherein the salt contains a long or branched chain alkyl having not less than 5 carbon atoms or silane chain having not less than a combination of 5 carbon and silicon atoms.
- 7. The solid state ion conducting electrolyte of claim 1, wherein the polymer matrix is one or more of poly(ethylene oxide), poly(propylene oxide), poly(n-propylene oxide), mixtures thereof or co-polymers thereof and the alkali metal is Li.
- 8. The solid state ion conducting electrolyte of claim 7, wherein the Li salt is a carbonate or a sulfate or a sulfonate.
- 9. The solid state ion conducting electrolyte of claim 8, wherein the Li salt contains one or more of CH3(CH2)5-50, CH3(CH2CH2O)5-50 or CH3(CH2)5-50(CH2CH2O)5-50.
- 10. The solid state ion conducting electrolyte of claim 1, wherein the alkali metal is lithium and the polymer matrix has ether oxygens and the ratio of the number of oxygen atoms in the matrix to the number of lithium ions in the salt is between about 5 and about 60.
- 11. The solid state ion conducting electrolyte of claim 10, wherein the ratio of the number of oxygen atoms in the matrix to the number of lithium ions in the salt is about 8.
- 12. The solid state ion conducting electrolyte of claim 10, wherein the ratio of the number of oxygen atoms in the matrix to the number of lithium ions in the salt is about 24.
- 13. The solid state ion conducting electrolyte of claim 10, wherein the ratio of the number of oxygen atoms in the matrix to the number of lithium ions in the salt is about 50.
- 14. The solid state ion conducting electrolyte of claim 10, wherein the polymer matrix is poly(ethylene oxide) and the lithium salt anion is dodecyl sulfate.
- 15. The solid state ion conducting electrolyte of claim 14, wherein the electrolyte is flexible.
- 16. The solid state ion conducting electrolyte of claim 14, wherein the electrolyte is a film.
- 17. The solid state ion conducting electrolyte of claim 16, wherein the film is birefringent.
- 18. The solid state ion conducting electrolyte of claim 16, wherein the film has anisotropic conductivity.
- 19. The solid state ion conducting electrolyte of claim 14, wherein said matrix has dissolved and undissolved salt therein.
- 20. An ion conducting electrolyte comprising a polymer matrix having dissolved therein a salt with a lithium cation and an anion having an alkyl moiety with at least 5 carbon atoms to inhibit the mobility of the anion in said polymer matrix.
- 21. The ion conducting electrolyte of claim 20, wherein more than about 20% by weight of the polymer matrix is amorphous.
- 22. The ion conducting electrolyte of claim 21, wherein the polymer matrix is a polyether.
- 23. The ion conducting electrolyte of claim 22, wherein the polymer matrix is one or more of poly(ethylene oxide), poly(propylene oxide), poly(n-propylene oxide), mixtures thereof or co-polymers thereof.
- 24. The ion conducting electrolyte of claim 20, wherein the molecular weight of the polymer matrix is not less than about 1000.
- 25. The ion conducting electrolyte of claim 24, wherein the molecular weight of the polymer matrix is between about 1000 and about 2 million.
- 26. The ion conducting electrolyte of claim 25, wherein the alkyl moiety of the anion has between about 5 carbon atoms and about 150 carbon atoms.
- 27. The ion conducting electrolyte of claim 26, wherein the alkyl salt is one of a sulfate, a carbonate and a sulfonate.
- 28. The ion conducting electrolyte of claim 27, wherein the alkyl moiety sulfate is a long or branched chain alkane.
- 29. A rechargeable battery having a cathode containing alkali metal atoms and an anode separated by a solid state ion conducting electrolyte comprising a polymer matrix having an alkali metal salt dissolved therein, wherein said salt has an anion with a long or branched chain having not less than 5 carbon or silicon atoms therein.
- 30. The rechargeable battery of claim 29, wherein said cathode contains lithium atoms, said electrolyte contains lithium ions and said polymer matrix is a polymer ether.
- 31. The rechargeable battery of claim 30, wherein the polymer matrix includes poly(ethylene oxide) or poly(propylene oxide) or poly(n-propylene oxide) or mixtures of copolymers thereof.
- 32. The rechargeable battery of claim 31, wherein the Li salt is a carbonate or a sulfate or a sulfonate.
- 33. The rechargeable battery of claim 32, wherein the Li salt anion includes one or more of CH3(CH2)5-50, CH3(CH2CH2O)5-50 or CH3(CH2)5-50(CH2CH2O)5-50.
- 34. The rechargeable battery of claim 33, wherein the alkali metal is lithium and the polymer matrix has ether oxygens and the ratio of the number of oxygen atoms in the matrix to the number of lithium ions in the salt is between about 5 and about 60.
- 35. The rechargeable battery of claim 34, wherein the polymer matrix is poly(ethylene oxide) and the lithium salt anion is dodecyl sulfate.
- 36. The rechargeable battery of claim 29, wherein said electrolyte is a flexible film having anisotropic conductivity.
- 37. The rechargeable battery of claim 29, wherein the electrolyte is a film.
- 38. A rechargeable battery having a cathode containing lithium atoms and an anode separated by a solid state ion conducting electrolyte comprising a polymer matrix with ether oxygens, said polymer matrix having dissolved therein lithium cations and anions with an alkyl or silyl group, said alkyl or silyl moieties having each or a combination of at least 5 carbon or silicon atoms, wherein said anions containing alkyl or silyl moieties have a lower transport than said lithium cations.
- 39. The rechargeable battery of claim 38, wherein said alkyl or silyl group-containing anions are alkyl or silyl sulfates or carbonates or sulfonates.
- 40. The rechargeable battery of claim 39, wherein the alkyl or silyl moiety is a long or branched chain alkane or silane.
- 41. The rechargeable battery of claim 40, wherein the alkyl or silyl moiety has between about 5 carbon/silicon atoms and about 150 carbon/silicon atoms.
- 42. The rechargeable battery of claim 41, wherein the polymer matrix is one or more of poly(ethylene oxide), poly(propylene oxide), poly(n-propylene oxide), mixtures thereof or copolymers thereof.
- 43. The rechargeable battery of claim 38, wherein said electrolyte is a flexible film having anisotropic conductivity.
- 44. The rechargeable battery of claim 38, wherein the electrolyte is a film.
- 45. The rechargeable battery of claim 44, wherein said anion containing an alkyl or silyl group is a sulfate of one or more of CH3(CH2)5-50, CH3(CH2CH2O)5-50 or CH3(CH2)5-50(CH2CH2O)5-50 or SiH3(SiH2)5-50, SiH3(SiH2SiH2O)5-50 or SiH3(SiH2)5-50(SiH2SiH2O)5-50.
RELATED APPLICATIONS
[0001] This application claims priority under 35 U.S.C. §1.78(a)(3) provisional application Serial No. 60/339,619 filed Dec. 12, 2001, the entire contents of which are incorporated herein by reference.
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 (2)
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Number |
Date |
Country |
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60339619 |
Dec 2001 |
US |
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60339812 |
Dec 2001 |
US |