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    • 18. 发明授权
    • Electric separator, method for the production and use thereof
    • 电分离器,其生产和使用方法
    • US08053102B2
    • 2011-11-08
    • US12870933
    • 2010-08-30
    • Volker HennigeChristian HyingGerhard Hoerpel
    • Volker HennigeChristian HyingGerhard Hoerpel
    • H01M2/14H01M2/16
    • H01M2/162H01M2/1646H01M2/1666
    • The present invention relates to electrical separators and to a process for making them. An electrical separator is a separator used in batteries and other arrangements in which electrodes have to be separated from each other while maintaining ion conductivity for example. The separator is preferably a thin porous insulating material possessing high ion permeability, good mechanical strength and long-term stability to the chemicals and solvents used in the system, for example in the electrolyte of the battery. In batteries, the separator should fully electrically insulate the cathode from the anode. Moreover, the separator has to be permanently elastic and to follow movements in the system, for example in the electrode pack in the course of charging and discharging. This object is achieved by an electrical separator according to the invention, comprising a sheetlike flexible substrate having a multiplicity of openings and having a coating on and in said substrate, said substrate being a polymeric nonwoven and said coating being a porous electrically insulting ceramic coating, said separator being characterized by a thickness of less than 80 μm.
    • 本发明涉及电动分离器及其制造方法。 电分离器是用于电池和其它布置的隔板,其中电极必须彼此分离,同时保持例如离子传导性。 隔膜优选是具有高离子渗透性,良好的机械强度和对系统中使用的化学品和溶剂的长期稳定性的薄多孔绝缘材料,例如在电池的电解质中。 在电池中,分离器应使阴极与阳极完全电绝缘。 此外,分离器必须是永久的弹性的并且可以跟随系统中的运动,例如在充电和放电过程中的电极组中。 该目的通过根据本发明的电气分离器实现,其包括具有多个开口的片状柔性基底,并且在所述基底上和所述基底中具有涂层,所述基底是聚合物非织造材料,所述涂层是多孔电绝缘陶瓷涂层, 所述分离器的特征在于小于80μm的厚度。
    • 20. 发明授权
    • Ion conducting battery separator for lithium batteries, method for the production and use thereof
    • 用于锂电池的离子导电电池隔板,其制造和使用方法
    • US07575832B2
    • 2009-08-18
    • US10519097
    • 2003-07-21
    • Volker HennigeChristian HyingGerhard Hoerpel
    • Volker HennigeChristian HyingGerhard Hoerpel
    • H01M2/16H01M4/00
    • H01M2/162H01B1/122H01M2/145H01M2/1646H01M2/1666H01M10/0525H01M10/4235
    • Separators for lithium batteries based on a sheetlike flexible substrate provided with a plurality of openings and having a porous inorganic electrically insulating coating on and in the substrate, the coating closing the openings in the substrate, the material of the substrate being selected from woven or non-woven electrically nonconductive polymeric fibers and the inorganic electrically conductive coating comprising metal oxide particles, the separators being electrical insulators and having lithium ion conducting properties without the presence of an electrolyte, the separators comprising at least one lithium ion conducting inorganic material which may also contain organic groups chemically bonded to the inorganic coating, which separators, after filling them with an additional lithium ion conducting electrolyte, have much higher ion conduction than conventional combinations of non-lithium ion conducting separators and electrolyte; a process for producing the separators; and batteries, such as high power lithium batteries, containing them.
    • 基于具有多个开口的片状柔性基板的锂电池分离器,并且在基板上和基板中具有多孔无机电绝缘涂层,所述涂层封闭基板中的开口,所述基板的材料选自织造或非织造的 编织的非导电聚合物纤维和包含金属氧化物颗粒的无机导电涂层,隔板是电绝缘体,并且具有不存在电解质的锂离子传导性能,所述隔板包括至少一种锂离子导电无机材料,其也可以含有 化学键合到无机涂层上的有机基团,其中分离器在填充另外的锂离子导电电解质之后,具有比非锂离子传导分离器和电解质的常规组合高得多的离子传导率; 分离器的制造方法; 和电池,如大功率锂电池,包含它们。