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    • 7. 发明申请
    • COMPOSITE GRAPHITE PARTICLES AND LITHIUM SECONDARY BATTERY USING THE SAME
    • 使用该复合石墨颗粒和锂二次电池
    • US20120196193A1
    • 2012-08-02
    • US13254408
    • 2009-03-02
    • Chiaki SotowaAkinori SudohMasataka TakeuchiKyung-hee HanJung-min HanJung-hun Oh
    • Chiaki SotowaAkinori SudohMasataka TakeuchiKyung-hee HanJung-min HanJung-hun Oh
    • H01M4/583H01M10/0569H01M10/052H01M4/04H01M4/64
    • H01M4/587C01B32/20H01M4/133H01M4/1393H01M10/052
    • The present invention provides composite graphite particles, which are useful for a negative electrode in a secondary battery having high capacitance, good charge-discharge characteristics and good charge-discharge cycle characteristics; and a paste for negative electrode, a negative electrode and a lithium secondary battery which use the composite graphite particles.The composite graphite particles of the present invention comprises a core material consisting of graphite having a interlayer distance d(002) of 0.337 nm or less in which the intensity ratio ID/IG (R value) between the peak intensity (ID) in a range of 1300 to 1400 cm−1 and the peak intensity (IG) in a range of 1580 to 1620 cm−1 as measured by Raman spectroscopy spectra is from 0.01 to 0.1 and a carbonaceous surface layer in which the intensity ratio ID/IG(R value) between the peak intensity (ID) in a range of 1300 to 1400 cm−1 and the peak intensity (IG) in a range of 1580 to 1620 cm−1 as measured by Raman scattering spectroscopy is 0.2 or higher; wherein the peak intensity ratio I110/I004 between the peak intensity (I110) of face (110) and the peak intensity (I004) of face (004) obtained by XRD measurement on the graphite crystal is 0.2 or higher when the particles are mixed with a binder and pressure-molded to a density of 1.55 to 1.65 g/cm3.
    • 本发明提供了复合石墨粒子,其对具有高电容,良好的充放电特性和良好的充放电循环特性的二次电池中的负极是有用的; 以及使用该复合石墨粒子的负极,负极和锂二次电池用糊料。 本发明的复合石墨粒子包括由石墨构成的芯材,其中层间距离d(002)为0.337nm以下,其中峰强度(ID)在一定范围内的强度比ID / IG(R值) 为1300〜1400cm -1,通过拉曼光谱测定的1580〜1620cm -1范围内的峰强度(IG)为0.01〜0.1,强度比ID / IG(R 通过拉曼散射光谱法测定的在1300〜1400cm -1范围内的峰强度(ID)与1580〜1620cm -1范围内的峰强度(IG)之差为0.2以上; 其中,当将颗粒与石墨晶体的XRD测量获得的面(110)的峰强度(I110)和石墨晶体上的XRD测量获得的峰值强度(I004)之间的峰强度比I110 / I004为0.2或更高时, 粘合剂,并以1.55-1.65g / cm3的密度进行压塑。
    • 9. 发明申请
    • Positive Electrode For A Lithium Battery And Lithium Battery Employing The Same
    • 锂电池正极和使用锂电池的正极
    • US20070202410A1
    • 2007-08-30
    • US11660280
    • 2005-08-12
    • Masataka TakeuchiChiaki Sotowa
    • Masataka TakeuchiChiaki Sotowa
    • H01M4/62H01M4/58H01M4/48
    • H01M4/625H01M4/131H01M4/133H01M4/1391H01M4/1393H01M4/505H01M4/525H01M10/052H01M2004/021H01M2010/4292Y02E60/122
    • The present invention relates to a lithium battery positive electrode comprising an active substance that can occlude and release lithium ion, a carbon-based conductivity enhancer, and a binder, characterized in that the positive electrode contains the carbon-based conductivity enhancer in an amount of 0.1 to 2 mass % on the basis of the entire mass of the positive electrode, and that the carbon-based conductivity enhancer contains a carbon fiber having a mean fiber diameter of 1 to 200 nm, wherein the active substance that can occlude and release lithium ion is contained in an amount, as calculated from the true density of the active substance, of 70% by volume or more on the basis of the total volume of the positive electrode; and relates to a lithium battery using the a lithium battery positive electrode. The positive electrode obtained by the present invention has an excellent electrolyte permeability and electrolyte retention. Therefore, it is better adapted to high-density lithium battery.
    • 本发明涉及一种锂电池正极,其包含可以吸留和释放锂离子的活性物质,碳系导电性增强剂和粘合剂,其特征在于,所述正极含有碳系导电性增强剂 基于整个正极的质量为0.1〜2质量%,碳基导电性增强剂含有平均纤维直径为1〜200nm的碳纤维,其中可以吸留和释放锂的活性物质 根据活性物质的真实密度计算出的离子的含量为70体积%以上,基于正极的总体积; 涉及使用锂电池正极的锂电池。 通过本发明获得的正极具有优异的电解质渗透性和电解质保留性。 因此,它更适合高密度锂电池。