Claims
- 1. A composite material comprising:
a first component which is a metal phosphate; and a second component which is selected from the group consisting of: metal nitrides, metal oxynitrides, and combinations thereof.
- 2. The material of claim 1, wherein said metal phosphate is a lithiated metal phosphate.
- 3. The composite material of claim 1, wherein said first component comprises a core and said second component is present on at least a portion of the surface of said core.
- 4. The composite material of claim 1, wherein said second component is disposed in at least a portion of the bulk of said first component.
- 5. The composite material of claim 1, wherein said metal phosphate is a transition metal phosphate.
- 6. The composite material of claim 5, wherein said transition metal is selected from the group consisting of Fe, V, Mn, and combinations thereof.
- 7. The composite material of claim 1, wherein said first component has an olivine or nasicon structure.
- 8. The composite material of claim 1, wherein said second component is selected from the group consisting of transition metal nitrides, transition metal oxynitrides, and combinations thereof.
- 9. The composite material of claim 1, further including a dopant.
- 10. The composite material of claim 9, wherein said dopant is selected from the group consisting of: carbon, a metal ion having a +2 valence, a metal ion having a +3 valence, Nb+5, Zr+4, Ti+4, W+6, and combinations thereof.
- 11. The composite material of claim 1, wherein said first component is substitutionally doped at the phosphate site by a member selected from the group consisting of: halogens, (SO4)−2, (SiO4)−4, (TiO4)−4, (AlO3)−3, and combinations thereof.
- 12. An electrode comprising a composite material, said composite material comprising: a first component which is a metal phosphate, and a second component which is selected from the group consisting of: metal nitrides, metal oxynitrides, and combinations thereof.
- 13. The electrode of claim 12, wherein said metal phosphate is a lithiated metal phosphate.
- 14. The electrode of claim 12, wherein said first component comprises a core and said second component is present on at least a portion of the surface of said core.
- 15. The electrode of claim 12, wherein said second component is dispersed in at least a portion of the bulk of said first component.
- 16. The electrode of claim 12, wherein said first component is a transition metal phosphate.
- 17. The electrode of claim 16, wherein said second component is selected from the group consisting of transition metal nitrides, transition metal oxynitrides, and combinations thereof.
- 18. The electrode of claim 12, where said metal phosphate has an olivine or a nasicon structure.
- 19. The electrode of claim 12, wherein said composite material includes a dopant.
- 20. A method of making a composite material, said method comprising the steps of:
providing a plurality of precursor compounds, said precursor compounds including: a metal containing compound, a lithium containing compound, and a phosphorous containing compound; mixing said plurality of precursor compounds so as to form a mixture thereof; calcining said mixture so as to produce a lithiated phosphate of said metal; and subjecting said lithiated phosphate of said metal to a nitriding process wherein a portion of said lithiated phosphate of said metal is converted to a nitride or an oxynitride of said metal.
- 21. The method of claim 20, wherein the step of mixing comprises milling.
- 22. The method of claim 21, wherein said step of milling comprises ball milling.
- 23. The method of claim 20, wherein said compound of a metal comprises a compound of at least one transition metal.
- 24. The method of claim 23, wherein said transition metal is selected from the group consisting of: Fe, V, Mn, and combinations thereof.
- 25. The method of claim 20, wherein the step of providing a plurality of precursor compounds further comprises providing a dopant precursor compound.
- 26. The method of claim 25, wherein said dopant precursor compound includes a member selected from the group consisting of: Nb, Mg, Zr, Ti, Al, and combinations thereof.
- 27. The method of claim 20, wherein the step of subjecting said lithiated phosphate of said metal to a nitriding process comprises heating said lithiated phosphate of said metal to an elevated temperature in the presence of a nitriding atmosphere.
- 28. The method of claim 27, wherein said nitriding atmosphere includes ammonia.
- 29. A lithium battery having a cathode comprised of a composite material said composite material comprising a first component which is a lithiated transition metal phosphate having an olivine or nasicon structure, and a second component which is selected from the group consisting of transition metal nitrides, transition metal oxynitrides, and combinations thereof.
- 30. The battery of claim 29, wherein said composite material further includes a dopant.
- 31. The battery of claim 29, wherein said first component of said composite material comprises a core and said second component is present on at least a portion of the surface of said core.
- 32. The battery of claim 29, wherein said second component of said composite material is disposed in at least a portion of the bulk of said first component of said composite material.
RELATED APPLICATION
[0001] This application claims priority of U.S. Provisional Patent Application Serial No. 60/443,663 filed Jan. 30, 2003 entitled “Electrode Material.”
Provisional Applications (1)
|
Number |
Date |
Country |
|
60443663 |
Jan 2003 |
US |