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    • 1. 发明授权
    • Battery separator and method for producing the same, and lithium ion secondary battery and method of producing the same
    • 电池隔板及其制造方法以及锂离子二次电池及其制造方法
    • US08592072B2
    • 2013-11-26
    • US13062447
    • 2009-09-07
    • Hiroyoshi TakeShunsuke NoumiChiharu OdaneTakuji Shintani
    • Hiroyoshi TakeShunsuke NoumiChiharu OdaneTakuji Shintani
    • H01M2/16B05D3/00
    • H01M10/0525H01M2/166H01M2/1686Y10T29/4911
    • A battery separator (13) of the present invention includes a porous film (12) serving as a substrate and a crosslinked polymer layer (11) supported on the porous film (12). The crosslinked polymer layer (11) contains a crosslinked polymer and inorganic particles, and is non-porous. The crosslinked polymer is obtained by reacting a reactive polymer having a functional group in its molecule with a polyfunctional compound reactive with the functional group so as to crosslink at least a part of the reactive polymer. A lithium ion secondary battery of the present invention includes a positive electrode (14), a negative electrode (15), the battery separator (13) of the present invention disposed between the positive electrode (14) and the negative electrode (15), and a non-aqueous electrolyte solution. The battery separator (13) is disposed so that the porous film (12) faces the negative electrode (15) and the crosslinked polymer layer (11) faces the positive electrode (14).
    • 本发明的电池用隔膜(13)具备作为基材的多孔质膜(12)和支撑在多孔膜(12)上的交联聚合物层(11)。 交联聚合物层(11)含有交联聚合物和无机颗粒,并且是无孔的。 交联聚合物通过使其分子中具有官能团的反应性聚合物与与官能团反应的多官能化合物反应以使至少一部分反应性聚合物交联而获得。 本发明的锂离子二次电池包括正极(14),负极(15),设置在正极(14)和负极(15)之间的本发明的电池隔板(13) 和非水电解质溶液。 电池隔板(13)配置成多孔膜(12)面对负极(15),交联聚合物层(11)面向正极(14)。