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    • 6. 发明授权
    • Secondary battery
    • 二次电池
    • US09209459B2
    • 2015-12-08
    • US13879042
    • 2010-10-15
    • Hiroki NagaiMasahiro MoritaTakashi Iwao
    • Hiroki NagaiMasahiro MoritaTakashi Iwao
    • H01M4/485H01M4/131H01M4/505H01M4/525
    • H01M4/485H01M4/131H01M4/505H01M4/525Y02E60/122
    • A secondary battery 100 includes a positive electrode current collector 221 and a positive electrode mixture layer 223 which is coated over the positive electrode current collector 221. The positive electrode mixture layer 223 includes a positive electrode active material 610, an electrically conductive material 620, and a binder 630. In addition, the positive electrode active material 610 has secondary particles 910 formed by an aggregation of a plurality of primary particles of a lithium transition metal oxide, a hollow portion 920 formed in the secondary particle 910, and through holes 930 penetrating the secondary particles 910 so as to connect the hollow portion 920 and the outside. A ratio (Vbc/Va) of an inner volume Vbc of holes formed inside the positive electrode mixture layer 223 to an apparent volume Va of the positive electrode mixture layer 223 satisfies 0.25≦(Vbc/Va). In addition, in a section of the positive electrode mixture layer 223, a ratio (Vb/Vc) of an inner volume Vb of holes B formed inside the positive electrode active material 610 to an inner volume Vc of holes C formed outside the positive electrode active material 610 satisfies 0.05≦(Vb/Vc)≦2.5.
    • 二次电池100包括正极集电体221和涂覆在正极集电体221上的正极合剂层223.正极合剂层223包括正极活性物质610,导电材料620和 粘合剂630.另外,正极活性物质610具有通过多次锂过渡金属氧化物的一次粒子,形成在二次粒子910中的中空部920的聚集而形成的二次粒子910和穿透 二次粒子910,以便连接中空部分920和外部。 正极合剂层223内形成的孔的内部体积Vbc与正极合剂层223的表观体积Va的比(Vbc / Va)满足0.25< nlE;(Vbc / Va)。 另外,在正极合剂层223的截面中,形成在正极活性物质610内的孔B的内部容积Vb与形成在正极外侧的孔C的内部容积Vc的比(Vb / Vc) 活性物质610满足0.05≦̸(Vb / Vc)≦̸ 2.5。
    • 9. 发明申请
    • SECONDARY BATTERY
    • 二次电池
    • US20130295456A1
    • 2013-11-07
    • US13884628
    • 2010-11-12
    • Hiroki NagaiMasahiro MoritaTakashi Iwao
    • Hiroki NagaiMasahiro MoritaTakashi Iwao
    • H01M4/485
    • H01M4/485H01M4/131H01M4/1391H01M10/0525H01M10/0587H01M2004/021Y02E60/122Y02P70/54
    • A secondary battery 100 includes a positive electrode current collector 221 and a positive electrode mixture layer 223 coated on the positive electrode current collector 221. The positive electrode mixture layer 223 includes a positive electrode active material 610 and an electrically conductive material 620. A ratio (Vb/Va) of a volume Vb of holes formed inside the positive electrode mixture layer 223 to an apparent volume Va of the positive electrode mixture layer 223 satisfies 0.30≦(Vb/Va). In addition, in a micropore distribution of differential micropore volume with respect to a micropore diameter as measured by the mercury intrusion method, the positive electrode mixture layer 223 has a first peak at which a micropore diameter D1 satisfies D1≦0.25 μm and a second peak at which a micropore diameter D2 is greater than the first peak micropore diameter D1.
    • 二次电池100包括正极集电体221和涂覆在正极集电体221上的正极合剂层223.正极合剂层223包括正极活性物质610和导电材料620。 在正极合剂层223内形成的孔的体积Vb相对于正极合剂层223的表观体积Va满足0.30(Vb / Va)。 此外,在通过水银侵入法测定的微孔体积相对于微孔直径的微孔分布中,正极合剂层223具有第一峰,微孔直径D1满足D1×0.25μm,第二峰 其中微孔直径D2大于第一微孔直径D1。
    • 10. 发明授权
    • Secondary battery
    • 二次电池
    • US09225008B2
    • 2015-12-29
    • US13879132
    • 2010-10-15
    • Hiroki NagaiMasahiro MoritaTakashi Iwao
    • Hiroki NagaiMasahiro MoritaTakashi Iwao
    • H01M4/131H01M10/00H01M4/1391H01M4/505H01M4/525H01M4/02
    • H01M4/131H01M4/1391H01M4/505H01M4/525H01M10/00H01M2004/021H01M2220/20Y02E60/122Y10T29/49108
    • A porosity X of a positive electrode mixture layer 223 of a secondary battery 100 is 30(%)≦X. A mass ratio α of a positive electrode active material 610 in the positive electrode mixture layer 223 is 0.84≦α≦0.925 and a mass ratio β of a conductive material 620 in the positive electrode mixture layer 223 is 0.06≦β≦0.12. In the secondary battery 100, an index Y worked out from an expression below is 30 (mL/100 g)≦Y≦89 (mL/100 g). The index Y is given by the expression below, Y=A×α+B×β; where A is a DBP absorption number (mL/100 g) in the positive electrode active material 610; α is the mass ratio of the positive electrode active material 610 in the positive electrode mixture layer 223; B is a DBP absorption number (mL/100 g) of the conductive material 620; and β is the mass ratio of the conductive material 620 in the positive electrode mixture layer 223.
    • 二次电池100的正极合剂层223的孔隙率X为30(%)×nlE; X。 正极合剂层223中的正极活性物质610的质量比α为0.84< 1;α≦̸ 0.925,质量比&bgr; 正电极混合物层223中的导电材料620的电阻率为0.06< nlE;& nlE; 0.12。 在二次电池100中,从以下表达式得出的指数Y为30(mL / 100g)≦̸ Y< ll; 89(mL / 100g)。 指标Y由下式给出:Y = A×α+ B×&bgr; 其中A是正极活性物质610中的DBP吸收值(mL / 100g) α是正极合剂层223中的正极活性物质610的质量比; B是导电材料620的DBP吸收数(mL / 100g) 和&bgr 是正极合剂层223中的导电材料620的质量比。