Claims
- 1. A cathode material for a rechargeable electrochemical cell, said cell also comprising an anode and an electrolyte, the cathode material comprising a compound having the formula LiMPO4, where M is at least one first-row transition-metal cation.
- 2. The cathode material of claim 1, where M is further defmed as being selected from the group consisting of Mn, Fe, Co, and Ni.
- 3. The cathode material of claim 1, where M is further defined as being a combination of cations, at least one of which is selected from the group consisting of Mn, Fe, Co and Ni.
- 4. The cathode material of claim 3, where M is Fe1-xMnx or Fe1-xTix and 0<x<1.
- 5. The cathode material of claim 2, wherein the cathode material has the formula LiFePO4.
- 6. A cathode material for a rechargeable electrochemical cell, said cell also comprising an anode and an electrolyte, the cathode material comprising a rhombohedral NASICON material having the formula YxM2(PO4)3, where M is at least one first-row transition-metal cation and 0≦x≦5 and Y is Li or Na.
- 7. The cathode material of claim 5, where M is selected from the group consisting of Fe, V, Mn, and Ti.
- 8. The cathode material of claim 7, wherein the cathode material has the formula Li3+xFe2(PO4)3, where 0≦x≦2.
- 9. The cathode material of claim 7, wherein the cathode material has the formula Li3Fe2(PO4)3.
- 10. The cathode material of claim 7, having the formula Li1+xTi2(PO4)3.
- 11. The cathode material of claim 7, having the formula Li2FeTi(PO4)3.
- 12. The cathode material of claim 7, having the formula LixTiNb(PO4)3, where 0≦x≦2.
- 13. The cathode material of claim 7, having the formula Li1+xFeNb(PO4)3, where 0≦x≦2.
- 14. The cathode material of claim 7, prepared by the process comprising the steps:
(a) preparing Na2Fe2(PO4)3; and (b) contacting said Na2Fe2(PO4)3 with a molten lithium salt, such that an ionic exchange reaction occurs.
- 15. The cathode material of claim 7, prepared by a direct solid state reaction.
- 16. A cathode material for a rechargeable electrochemical cell, said cell also comprising an anode and an electrolyte, the cathode material comprising a rhombohedral NASICON material having the formula YxM2(PO4)y(XO4)3-y, where 0<y≦3, M is a transition-metal atom, 0≦x≦5, Y is Li or Na, and X=Si, As, or S.
- 17. The cathode material of claim 16, wherein the cathode material has the formula Li1-+xFe2(SO4)2(PO4), where 0≦x≦2.
- 18. The cathode material of claim 17, prepared by the process comprising the steps:
(a) preparing an aqueous solution comprising FeCl3, (NH4)2SO4, and LiH2PO4; (b) evaporating the solution to obtain dry material; and (c) heating the dry material to about 500° C.
- 19. A cathode material for a rechargeable electrochemical cell also comprising an anode and an electrolyte, the cathode comprising a rhombohedral NASICON material having the formula A3-xV2(PO4)3, where A may be Li, Na or a combination thereof and 0≦x≦2.
- 20. The cathode material of claim 19, wherein the cathode material has the formula
- 21. The cathode material of claim 19, prepared by the process comprising the steps:
(a) preparing Na3V2(PO4)3; and (b) contacting said Na3V2(PO4)3 with a molten lithium salt, such that an ionic exchange reaction occurs.
- 22. The cathode material of claim 19, prepared by a direct solid-state reaction.
- 23. A cathode material for a rechargeable electrochemical cell, said cell also comprising an anode and an electrolyte, the cathode material comprising a compound having the formula:
- 24. A secondary battery comprising an anode, a cathode and an electrolyte, said cathode comprising an ordered olivine compound having the formula LiMPO4, where M is at least one first-row transition-metal cation.
- 25. The battery of claim 23, where M is further defined as being selected from the group consisting of Mn, Fe, Co, and Ni.
- 26. The battery of claim 23, where M is further defined as being a combination of cations, at least one of said cations being selected from the group consisting of Mn, Fe, Co, and Ni.
- 27. The battery of claim 25, wherein M is Fe1-xMnx or Fe1-xTix, where 0≦x≦1.
- 28. A secondary battery comprising an anode, a cathode and an electrolyte, said cathode comprising a modified olivine compound as set forth in claim 23.
- 29. The battery of claim 28, wherein the anode comprises a compound selected from the group consisting of a metallic lithium, a lithium alloy, a lithium-carbon intercalation compound, a lithium-transition metal mixed nitride of antifluorite and a lithium-titanium spinel having the formula Li1+x+zTi2-xO4 where 0≦x≦⅓ and 0≦z≦1−2x.
- 30. The battery of claim 29, wherein said cathode further comprises a conductive additive.
- 31. The battery of claim 30, wherein said conductive additive is carbon.
- 32. The battery of claim 29, wherein said cathode further comprises an intercalation material with fast diffusion kinetics.
- 33. The battery of claim 32, wherein said intercalation material is selected from the group consisting of a lamellar dichalcognenide, a vanadium oxide having the formula VOx where 2.1≦x≦2.5, and a NASICON-related material.
- 34. The battery of claim 33, wherein said NASICON-related material is selected from the group consisting of Li3Fe2(PO4)3 and Li3-xFe2-xTix(PO4)3.
- 35. The battery of claim 29, wherein said cathode further comprises a polymeric binder.
- 36. The battery of claim 35, wherein said polymeric binder is selected from the group consisting of a homopolymer of tetrafluoroethylene, a copolymer of tetrafluoroethylene, an ethylene-propylene-diene terpolymer, a polyether, a polyester, a methylmethacrylate-based polymer, an acrylonitrile-based polymer, and a vinylidene fluoride-based polymer.
- 37. The battery of claim 36, wherein said polymeric binder is a polyether.
- 38. The battery of claim 37, wherein said polyether further comprises a salt comprising Li+ cations.
- 39. The battery of claim 38, wherein said polyether is crosslinked.
- 40. The battery of claim 35, wherein said polymeric binder has an ionic conductivity of between about 10−7 and about 10−2 (Scm−1).
- 41. The battery of claim 38, wherein said polymeric binder is swollen by an aprotic solvent.
- 42. The battery of claim 41, wherein said aprotic solvent is selected from the group consisting of: ethylene carbonate, propylene carbonate, dimethylcarbonate, diethylcarbonate, methyl-ethylcarbonate, γ-butyrolactone, a tetraalkylsulfamide, a dialkylether of an ethylene glycol having a molecular weight ≦2000.
- 43. The battery of claim 42, wherein said aprotic solvent is a dialkylether of an ethylene glycol having a molecular weight ≦2000.
- 44. The battery of claim 43, wherein said dialkylether comprises a mono-ethylene glycol.
- 45. The battery of claim 43, wherein said dialkylether comprises a di-ethylene glycol.
- 46. The battery of claim 43, wherein said dialkylether comprises a tri-ethylene glycol.
- 47. The battery of claim 43, wherein said dialkylether comprises a tetra-ethylene glycol.
- 48. The battery of claim 43, wherein said dialkylether comprises an oligo-ethylene glycol higher than a tetra-ethylene glycol.
- 49. The battery of claim 42, wherein said dialkylether comprises a mixture of mono-, di-, tri-, tetra-, and higher oligo-ethylene glycols.
- 50. A secondary battery comprising an anode, a cathode and an electrolyte, said cathode comprising a rhombohedral NASICON material having the formula YxM2(PO4)3, where M is at least one first-row transition-metal cation and 0≦x≦5 and Y is Li or Na, other than Li2+xFeTi(PO4)3.
- 51. The battery of claim 27, where M is 'selected from the group consisting of Fe, V, Mn, and Ti.
- 52. The battery of claim 28, wherein the cathode material has the formula Li3+xFe2(PO4)3, where 0≦x≦2.
- 53. The battery of claim 29, wherein the cathode material has the formula Li3Fe2(PO4)3.
- 54. The battery of claim 28, wherein the cathode material has the formula Li2FeTi(PO4)3.
- 55. The battery of claim 28, wherein the cathode material has the formula LixTiNb(PO4)3, where 0≦x≦2.
- 56. The battery of claim 28, wherein the cathode material has the formula Li1+xFeNb(PO4)3, 0≦x≦2.
- 57. A secondary battery comprising an anode, a cathode and an electrolyte, said cathode, comprising a rhombohedral NASICON material having the formula YxM2(PO4)y(XO4)3-y, where 0≦y≦3, M is a transition-metal atom, 0≦x≦5, Y is Li or Na, and X=Si, As, or S.
- 58. The battery of claim 34, wherein said cathode material has the formula
- 59. A secondary battery comprising an anode, a cathode and an electrolyte, said cathode comprising a rhombohedral NASICON material having the formula A3-xV2(PO4)3, where A may be Li, Na or a combination thereof and 0≦x≦2.
- 60. The battery of claim 36, wherein the cathode material has the formula
- 61. A variable optical transmission device comprising transparent semi-conductor coated glass or plastic, and including at least one positive electrode and at least one negative electrode separated by a solid or gel electrolyte, wherein at least one electrode comprises a modified olivine compound as set forth in claim 23.
Parent Case Info
[0001] This application is a conitinuation-in-part of application Ser. No. 0/840.523, filed Apr. 21, 1997, which is a continuation-in-part of provisional patent application No. 60/032,346 filed Dec. 4, 1996, and a continuation-in-part of provisional patent application No. 60/016,060, filed Apr. 23, 1996. The entire text of each of the above-referenced disclosures is specifically incorporated by reference herein without disclaimer. The Robert A. Welch Foundation, Houston, Tex., supported research related to the present invention.
Provisional Applications (2)
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Number |
Date |
Country |
|
60032346 |
Dec 1996 |
US |
|
60016060 |
Apr 1996 |
US |
Continuations (1)
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Number |
Date |
Country |
Parent |
08998264 |
Dec 1997 |
US |
Child |
10307346 |
Dec 2002 |
US |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
08840523 |
Apr 1997 |
US |
Child |
08998264 |
Dec 1997 |
US |