Claims
- 1. A positive electrode for a non-aqueous lithium cell comprising a LiMn2−xMxO4 spinel structure in which M is one or more cations with an atomic number less than 52, such that the average oxidation state of the manganese ions is equal to or greater than 3.5, and in which 0≦x≦0.15, having one or more lithium spinel oxide LiM′2O4 or lithiated spinel oxide Li1+yM2O4 compounds on the surface thereof in which the M′ cations are selected from one or more of lithium, cobalt, titanium or manganese and in which 0<y≦1.
- 2. An electrode according to claim 1 in which in which M is one or more cations with an atomic number less than 33.
- 3. An electrode according to claim 1 in which M is selected from one or more of H+, Li+, Mg2+, Co2+, Al3+, Co3+, Ti4+ and Zr4+ cations.
- 4. An electrode according to claim 1 in which the M and M′ cations are selected from lithium and/or cobalt.
- 5. An electrode according to claim 4 in which the LiM′2O4 coating is LixCo3−xO4 for 0<x<0.4.
- 6. An electrode according to claim 4 in which the Li1+yM′2O4 coating is Li2Co2O4.
- 7. An electrode according to claim 1 in which the M′ cations are selected from lithium, titanium, manganese or mixtures thereof.
- 8. An electrode according to claim 7 in which the LiM′2O4 coating is Li[Ti1.67Li0.33]O4 or Li[Mn1.67Li0.33]O4.
- 9. An electrode according to claim 8 in which the LiM′2O4 coating is a Li—, Mg— or Al—substituted derivative of Li[Ti1.67Li0.33]O4 or Li[Mn1.67Li0.33]O4.
- 10. An electrode according to claim 9 in which the LiM′2O4 coating is Li[Ti1.67+zLi0.33−z]O4, Li[Ti1.67Li0.33−zMgz]O4, Li[Ti1.67Li0.33−zAlz]O4, Li[Mn1.67Li0.33−zMgz]O4 or Li[Mn1.67Li0.33−zAlz]O4 for 0<z<0.2.
- 11. The positive electrode of claim 1, wherein spinel oxide is present as a coating.
- 12. The positive electrode of claim 1, wherein the concentration of M′ cations increases from the center to the surface of the electrode.
- 13. A non-aqueous lithium electrochemical cell comprising a negative electrode, an electrolyte and a positive electrode, the positive electrode comprising a LiMn2−xMxO4 spinel structure in which M is one or more cations with an atomic number less than 52, such that the average oxidation state of the manganese ions is equal to or greater than 3.5, and in which 0<x<0.15, having one or more lithium spinel oxide LiM′2O4 or lithiated spinel oxide Li1+yM′2O4 compounds in which the M′ cations are selected from one or more of lithium, cobalt, titanium or manganese and in which 0<y≦1.
- 14. A non-aqueous lithium electrochemical cell of claim 13, in which M is selected from one or more of H+, Li+, Mg2+, Co2+, Al3+, Co3+, Ti4+ or Zr4+ cations.
- 15. A non-aqueous lithium electrochemical cell of claim 13, in which the M and M′ cations are selected from lithium, cobalt and mixtures thereof.
- 16. A non-aqueous lithium electrochemical cell of claim 15, in which the LiM′2O4 coating is LixCo3−xO4 for 0<x<0.4.
- 17. A non-aqueous lithium electrochemical cell of claim 15, in which the Li1+yM′2O4 coating is Li2Co2O4.
- 18. A non-aqueous lithium electrochemical cell of claim 13, in which the M′ cations are selected from lithium, titanium, manganese or mixtures thereof.
- 19. A non-aqueous lithium electrochemical cell of claim 18, in which the LiM′2O4 coating is Li[Ti1.67Li0.33]O4 or Li[Mn1.67Li0.33]O4.
- 20. A non-aqueous lithium electrochemical cell of claim 19, in which the LiM′2O4 coating is a Li—, Mg— or Al—substituted derivative of Li[Ti1.67Li0.33]O4 or Li[Mn1.67Li0.33]O4.
- 21. A non-aqueous lithium electrochemical cell of claim 18, in which the LiM′2O4 coating is Li[Ti1.67+zLi0.33−z]O4, Li[Ti1.67Li0.33−zMgz]O4, Li[Ti1.67Li0.33−zAlz]O4, Li[Mn1.67Li0.33−zMgz]O4 or Li[Mn1.67Li0.33−zAlz]O4 for 0<z<0.2.
- 22. The positive electrode of claim 13, wherein spinel oxide is present as a coating.
- 23. The positive electrode of claim 13, wherein the concentration of M′cations increases from the center to the surface of the electrode
- 24. A non-aqueous lithium battery comprising a plurality of electrochemical cells, electrically connected, each cell comprising a negative electrode, an electrolyte and a positive electrode, the positive electrode comprising a LiMn2−xMxO4 spinel structure in which M is one or more cations with an atomic number less than 52, such that the average oxidation state of the manganese ions is equal to or greater than 3.5, and in which 0<x<0.15, having one or more lithium spinel oxide LiM′2O4 or lithiated spinel oxide Li1+yM′2O4 compounds in which the M′ cations are selected from one or more of lithium, cobalt, titanium or manganese and in which 0<y≦1.
- 25. A non-aqueous lithium battery of claim 24, in which M is selected from one or more of H+, Li+, Mg2+, Co2+, Al3+, Co3+, Ti4+ or Zr4+ cations.
- 26. A non-aqueous lithium battery of claim 24, in which the M and M′cations are selected from lithium, cobalt or mixtures thereof.
- 27. A non-aqueous lithium battery of claim 26, in which the LiM′2O4 coating is LixCo3−xO4 for 0<x<0.4.
- 28. A non-aqueous lithium battery of claim 26, in which the Li1+yM′2O4 coating is Li2Co2O4.
- 29. A non-aqueous lithium battery of claim 24, in which the M′ cations are selected from lithium, titanium, manganese or mixtures thereof.
- 30. A non-aqueous lithium battery of claim 29, in which the LiM′2O4 coating is Li[Ti1.67Li0.33]O4 or Li[Mn1.67Li0.33]O4.
- 31. A non-aqueous lithium battery of claim 30, in which the LiM′2O4 coating is a Li—, Mg— or Al—substituted derivative of Li[Ti1.67Li0.33]O4 or Li[Mn1.67Li0.33]O4.
- 32. A non-aqueous lithium battery of claim 31, in which the LiM′2O4 coating is Li[Ti1.67+zLi0.33−z]O4, Li[Ti1.67Li0.33−zMgz]O4, Li[Ti1.67Li0.33−zAlz]O4, Li[Mn1.67Li0.33−zMg]O4 or Li[Mn1.67Li0.33−zAlz]O4 for 0<z<0.2.
- 33. The positive electrode of claim 24, wherein spinel oxide is present as a coating.
- 34. The positive electrode of claim 24, wherein the concentration of M′ cations increases from the center to the surface of the electrode
RELATED APPLICATIONS
[0001] This application, pursuant to 37 C.F.R. § 1.78(c), claims priority based on provisional application serial No. 60/352,899 filed Jan. 29, 2002.
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 (1)
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Number |
Date |
Country |
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60352899 |
Jan 2002 |
US |