POWDER AND LITHIUM NICKEL MIXED METAL OXIDE
    2.
    发明申请
    POWDER AND LITHIUM NICKEL MIXED METAL OXIDE 有权
    粉末和锂镍混合金属氧化物

    公开(公告)号:US20120088145A1

    公开(公告)日:2012-04-12

    申请号:US13375869

    申请日:2010-06-03

    IPC分类号: H01M2/16 H01B1/00 H01M4/525

    摘要: Disclosed is a powder comprising a lithium-containing compound and a nickel-containing mixed metal compound, and satisfying the following requirements of (1) and (2) when the powder is analyzed by plasma emission spectrometry of particles: (1) an absolute deviation of a synchronous distribution chart against an approximated straight-line is 0.10 or less, wherein the approximated straight-line is evaluated from a synchronous distribution chart obtained by plotting an emission intensity of lithium and an emission intensity of nickel of each particle composing of the powder, and (2) a release rate of lithium evaluated by the following formula is 80 or less: Release rate of lithium=(nb/na)×100 wherein, na is the number of particles containing lithium in the powder, and nb is the number of particles containing lithium and not containing nickel in the powder.

    摘要翻译: 公开了包含含锂化合物和含镍混合金属化合物的粉末,当通过等离子体发射光谱法分析粉末时,满足(1)和(2)的以下要求:(1)绝对偏差 相对于近似直线的同步分布图为0.10以下,其中,从通过绘制锂的发射强度和由粉末组成的每个粒子的镍的发射强度获得的同步分布图来评估近似直线 ,(2)由下式计算出的锂的释放速度为80以下:锂的释放率=(nb / na)×100其中,na为粉末中含有锂的粒子数,nb为 在粉末中含有锂并且不含镍的颗粒数。

    Powder and lithium nickel mixed metal oxide
    5.
    发明授权
    Powder and lithium nickel mixed metal oxide 有权
    粉末和锂镍混合金属氧化物

    公开(公告)号:US08993168B2

    公开(公告)日:2015-03-31

    申请号:US13375869

    申请日:2010-06-03

    摘要: Disclosed is a powder comprising a lithium-containing compound and a nickel-containing mixed metal compound, and satisfying the following requirements of (1) and (2) when the powder is analyzed by plasma emission spectrometry of particles: (1) an absolute deviation of a synchronous distribution chart against an approximated straight-line is 0.10 or less, wherein the approximated straight-line is evaluated from a synchronous distribution chart obtained by plotting an emission intensity of lithium and an emission intensity of nickel of each particle composing of the powder, and (2) a release rate of lithium evaluated by the following formula is 80 or less: Release rate of lithium=(nb/na)×100 wherein, na is the number of particles containing lithium in the powder, and nb is the number of particles containing lithium and not containing nickel in the powder.

    摘要翻译: 公开了包含含锂化合物和含镍混合金属化合物的粉末,当通过等离子体发射光谱法分析粉末时,满足(1)和(2)的以下要求:(1)绝对偏差 相对于近似直线的同步分布图为0.10以下,其中,从通过绘制锂的发射强度和由粉末组成的每个粒子的镍的发射强度获得的同步分布图来评估近似直线 ,(2)由下式计算的锂的释放速度为80以下:锂的释放速率=(nb / na)×100其中,na是粉末中含有锂的粒子数,nb是 在粉末中含有锂并且不含镍的颗粒数。

    POLYMER ELECTROLYTE COMPOSITION
    6.
    发明申请
    POLYMER ELECTROLYTE COMPOSITION 审中-公开
    聚合物电解质组合物

    公开(公告)号:US20100330454A1

    公开(公告)日:2010-12-30

    申请号:US12919074

    申请日:2009-02-26

    IPC分类号: H01M8/10 B01J31/06

    摘要: A polymer electrolyte composition comprising a component (A) defined below, and at least one kind of a component (B) selected from the group consisting of a component (B1) defined below and a component (B2) defined below: (A) a polymer electrolyte; (B1) a compound having a degree of affinity for platinum of 10% or more; and (B2) a compound having at least two kinds of atoms having an unshared electron pair, selected from the group consisting of a nitrogen atom, a phosphorus atom, and a sulfur atom in the molecule.

    摘要翻译: 一种包含下述成分(A)的成分的高分子电解质组合物和选自下述定义的成分(B1)和下述(B2)成分的成分(B)的至少一种成分:(A) 聚合物电解质; (B1)铂的亲和度为10%以上的化合物; 和(B2)具有至少两种具有非共享电子对的原子的化合物,其选自分子中的氮原子,磷原子和硫原子。

    NONAQUEOUS ELECTROLYTE SECONDARY BATTERY POROUS LAYER

    公开(公告)号:US20200335757A1

    公开(公告)日:2020-10-22

    申请号:US16848885

    申请日:2020-04-15

    IPC分类号: H01M2/16 H01M10/0525

    摘要: An aspect of the present invention provides a nonaqueous electrolyte secondary battery porous layer that has both favorable ion permeability and favorable peeling strength. A nonaqueous electrolyte secondary battery porous layer in accordance with an aspect of the present invention includes: a resin; and a filler, the nonaqueous electrolyte secondary battery porous layer having a thickness of less than 8.0 μm, the nonaqueous electrolyte secondary battery porous layer having a surface roughness (Ra) of not more than 0.15 μm.