METHOD OF MANUFACTURING LITHIUM BATTERY
    11.
    发明申请
    METHOD OF MANUFACTURING LITHIUM BATTERY 审中-公开
    制造锂电池的方法

    公开(公告)号:US20140008006A1

    公开(公告)日:2014-01-09

    申请号:US13842322

    申请日:2013-03-15

    Abstract: Provided is a method of manufacturing a lithium battery. The method of manufacturing the lithium battery includes providing a anode part including a anode collector, a anode layer, and a anode electrolyte layer which are successively stacked on a first pouch film, providing a cathode part including a cathode collector, a cathode layer, and a cathode electrolyte layer which are successively stacked on a second pouch film, and sealing the first and second pouch films to couple the anode part to the cathode part.

    Abstract translation: 提供一种制造锂电池的方法。 制造锂电池的方法包括提供包括阳极集电体,阳极层和阳极电解质层的阳极部分,其连续堆叠在第一袋膜上,提供阴极部分,阴极部分包括阴极集电体,阴极层和 阴极电解质层,其依次层叠在第二袋膜上,并密封第一和第二袋膜以将阳极部分耦合到阴极部分。

    Solid polymeric electrolytes and lithium battery including the same
    15.
    发明授权
    Solid polymeric electrolytes and lithium battery including the same 有权
    固体高分子电解质和锂电池包括相同的

    公开(公告)号:US09306240B2

    公开(公告)日:2016-04-05

    申请号:US14690215

    申请日:2015-04-17

    Abstract: A solid polymeric electrolyte having a pattern, and a lithium battery including the same, includes a polymer matrix having a mesh structure and being formed of a cured photo-crosslinking agent; inorganic particles substantially uniformly distributed in the polymer matrix; and a liquid electrolyte comprised of a lithium salt and an organic solvent impregnated between the polymer matrix and the inorganic particles. The liquid electrolyte and the cured photo-crosslinking agent are present in a weight ratio ranging from 50:50 to 99:1. The liquid electrolyte containing the cured photo-crosslinking agent and the inorganic particle are present in a weight ratio ranging from 10:90 to 90:10. The solid polymeric electrolyte has properties suitable for a printing process to provide the pattern including a thickness ranging from about 10 nm to about 500 μm and, prior to curing the photo-crosslinking agent, a viscosity ranging from 100-10,000 poise under a shear rate condition of 1 sec−1.

    Abstract translation: 具有图案的固体高分子电解质和包含该固体高分子电解质的锂电池包括具有网状结构并由固化的光交联剂形成的聚合物基质; 基本上均匀分布在聚合物基质中的无机颗粒; 以及由聚合物基质和无机粒子之间浸渍的锂盐和有机溶剂组成的液体电解质。 液体电解质和固化的光交联剂以50:50至99:1的重量比存在。 包含固化的光交联剂和无机颗粒的液体电解质以10:90至90:10的重量比存在。 固体高分子电解质具有适合于印刷方法的性能,以提供包括约10nm至约500μm的厚度的图案,并且在固化光交联剂之前,在剪切速率下的粘度范围为100-10,000泊 条件1秒-1。

    SOLID POLYMERIC ELECTROLYTES, METHODS OF FABRICATING THE SAME, AND LITHIUM BATTERY INCLUDING THE SAME
    18.
    发明申请
    SOLID POLYMERIC ELECTROLYTES, METHODS OF FABRICATING THE SAME, AND LITHIUM BATTERY INCLUDING THE SAME 有权
    固体聚合电解质,其制造方法和包括其的锂电池

    公开(公告)号:US20130337337A1

    公开(公告)日:2013-12-19

    申请号:US13712528

    申请日:2012-12-12

    Abstract: Provided are a solid polymeric electrolyte and a lithium battery with the same. The electrolyte paste may be formed by controlling composition ratio, dispersion, and thickness of the electrolyte paste to have physical properties suitable for the printing process. The use of the printing process enables to simplify a process of fabricating the lithium battery. In addition, the lithium battery provided with the solid polymeric electrolyte can exhibit improved performance (for example, in electrode-electrolyte interface stability and an internal short property), regardless of the shape of the solid polymeric electrolyte. For example, the lithium battery may exhibit improvement in interface stability between the electrode and the electrolyte and be configured to suppress an internal short therein.

    Abstract translation: 提供固体高分子电解质和具有该高分子电解质的锂电池。 可以通过控制电解质糊剂的组成比,分散度和厚度来形成适于印刷过程的物理性质来形成电解质糊剂。 使用印刷方法能够简化制造锂电池的过程。 此外,无论固体聚合物电解质的形状如何,具有固体聚合物电解质的锂电池可以表现出改进的性能(例如,电极 - 电解质界面稳定性和内部短性能)。 例如,锂电池可能表现出电极和电解质之间的界面稳定性的提高,并且被配置为抑制其中的内部短路。

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