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    • 9. 发明申请
    • Secondary Battery Electrode, and Secondary Battery Using the Same
    • 二次电池电极和使用其的二次电池
    • US20090139787A1
    • 2009-06-04
    • US12084691
    • 2006-11-09
    • Yasuhiko OhsawaMikio KawaiMieko Kawai
    • Yasuhiko OhsawaMikio KawaiMieko Kawai
    • B60R16/04H01B1/02H01M4/40
    • H01M4/131H01M4/364H01M4/505H01M4/525H01M10/0525H01M2004/021Y02T10/7011
    • A secondary battery electrode, which is formed by stacking an electrode active material layer (I) containing spinel-structured lithium manganate as an electrode active material and an electrode active material layer (II) containing, as an electrode active material, a composite oxide represented by the following Chemical formula (1) in a thickness direction of the electrode, in which the electrode active material layer (I) is disposed in contact with a current collector, and an average particle diameter of the composite oxide is smaller than an average particle diameter of the spinel-structured lithium manganate. In such a way, it is possible to provide a secondary battery electrode capable of realizing a secondary battery excellent in both of a volumetric energy density and a volumetric output density. LiCovNiXMnYMZO2  (1)
    • 通过堆叠含有尖晶石结构的锰酸锂作为电极活性物质的电极活性物质层(I)和含有作为电极活性物质的电极活性物质层(II)形成的二次电池电极,所述复合氧化物为 通过以下化学式(1)在电极的厚度方向上电极活性物质层(I)与集电体接触,并且复合氧化物的平均粒径小于平均粒子 尖晶石结构的锰酸锂的直径。 以这种方式,可以提供能够实现体积能量密度和体积输出密度都优异的二次电池的二次电池电极。 <?in-line-formula description =“In-line Formulas”end =“lead”?> LiCovNiXMnYMZO2(1)<?in-line-formula description =“In-line Formulas”end =“tail”?>