Claims
- 1. A cathode electroactive material for use in lithium ion secondary cells, wherein the cathode electroactive material predominantly comprises Li—Mn composite oxide particles with a spinel structure and particles of the electroactive material have an average porosity of 15% or less, the porosity being expressed by the following equation:Porosity (%)=(A/B)×100 (1) (wherein A represents a total cross-section area of pores included in a cross-section of one secondary particle, and B represents the cross-section area of one secondary particle).
- 2. A cathode electroactive material for use in lithium ion secondary cells as claimed in claim 1, wherein the average porosity is 10% or less and the average particle size of primary particles is 0.2 μm-3 μm.
- 3. A cathode electroactive material for use in lithium ion secondary cells as claimed in claim 1, wherein the tapping density of the cathode electroactive material is 1.9 g/ml or more.
- 4. A cathode electroactive material for use in lithium ion secondary cells as claimed in claim 3, wherein the tapping density of the cathode electroactive material is 2.2 g/ml or more.
- 5. A cathode electroactive material for use in lithium ion secondary cells as claimed in claim 1, wherein the size of crystallites contained in the cathode electroactive material is 400 Å-960 Å.
- 6. A cathode electroactive material for use in lithium ion secondary cells as claimed in claim 1, wherein the lattice constant determined with respect to the electroactive material is 8.240 Å or less.
- 7. A cathode electroactive material for use in lithium ion secondary cells as claimed in claim 1, wherein the cathode electroactive material is produced by granulating an Li—Mn composite oxide with the spinel structure serving as a predominant component and at least one component selected from the group consisting of an oxide which is molten at 550° C. -900° C., an oxide which forms a solid solution with lithium or manganese having a melting point of 550° C.-900° C., an oxide which melts to react with lithium or manganese to form a compound having a melting point of 550° C.-900° C., an element which forms one of these oxides, and a compound which converts into one of these oxides; and sintering the formed granules.
- 8. A cathode electroactive material for use in lithium ion secondary cells as claimed in claim 7, wherein the oxide, the element or the compound comprises at least one selected from the group consisting of Bi, B, W, Mo, and Pb; a compound comprising B2O3 and LiF; or a compound comprising MnF2 and LiF.
Priority Claims (1)
Number |
Date |
Country |
Kind |
2000-126494 |
Apr 2000 |
JP |
|
CROSS-REFERENCE TO RELATED APPLICATION
This application is an application filed under 35 U.S.C. §119(e)(1) of the filing date of Provisional Application 60/214,794 filed Jun. 28, 2000 pursuant to 35 U.S.C. §111(e)(b).
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Y. Xia et al, “Studies on Li-Mn-O spinel system (obtained from melt-impregnation method) as a cathode for 4 V lithium batteries Part V. Enhancement of the elevated temperature performance of Li/LiMn2O4 cells”, Journal of Power Sources, vol. 24 (1998), pp. 24-28. |
Provisional Applications (1)
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Number |
Date |
Country |
|
60/214794 |
Jun 2000 |
US |