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    • 5. 发明授权
    • Polymeric solid electrolyte and lithium secondary cell using the same
    • 聚合物固体电解质和使用其的锂二次电池
    • US06806004B1
    • 2004-10-19
    • US09807124
    • 2001-07-31
    • Kazuya IwamotoTakafumi OuraShinji NakanishiAtsushi UedaHizuru Koshina
    • Kazuya IwamotoTakafumi OuraShinji NakanishiAtsushi UedaHizuru Koshina
    • H01M1040
    • H01M10/052C08F230/08H01B1/122H01M4/62H01M4/622H01M10/0565H01M2300/0082Y02T10/7011
    • A polymeric solid electrolyte capable of conducting lithium ions which contains silylamide bonds in its polymer skeleton structure, for example, which is obtained by a method comprising subjecting a mixture of lithium silylamide and an organic compound having at least one carbon—carbon double bond to a polymerization in a dry atmosphere; and a lithium secondary cell using the polymeric solid electrolyte. The polymeric solid electrolyte is a “dry” polymeric solid electrolyte which contains counter ions forming lithium salts with lithium ions in its polymer skeleton structure and thus has a single ion electron conducting system wherein lithium ions alone are mobile ions, and hence has excellent conductivity, and further is easy to produce. The polymeric solid electrolyte can therefore be used for producing a novel lithium secondary cell which is an alternative for conventional lithium cells using an organic solvent and is safe and excellent in the capability of corresponding to a variety of shapes and has a high cell voltage.
    • 能够在其聚合物骨架结构中导电含有甲硅烷基酰胺键的锂离子的聚合物固体电解质,例如通过包括将具有至少一个碳 - 碳双键的锂甲硅烷基酰胺和有机化合物的混合物 在干燥气氛中聚合; 和使用聚合物固体电解质的锂二次电池。 聚合物固体电解质是一种“干”聚合物固体电解质,其包含在其聚合物骨架结构中与锂离子形成锂盐的反离子,因此具有单独的离子电子传导系统,其中单独的锂离子是移动离子,因此具有优异的导电性, 并且进一步易于生产。 因此,聚合物固体电解质可用于制造新的锂二次电池,其是使用有机溶剂的常规锂电池的替代方案,并且对于各种形状的能力安全且优异且具有高的电池电压。
    • 7. 发明授权
    • Method for fabricating lithium ion secondary battery
    • 锂离子二次电池的制造方法
    • US07252689B2
    • 2007-08-07
    • US10378610
    • 2003-03-05
    • Akiko FujinoShinji NakanishiHizuru Koshina
    • Akiko FujinoShinji NakanishiHizuru Koshina
    • H01M4/82H01M6/00H01M2/18
    • H01M10/0587H01M4/0402H01M4/0404H01M4/0416H01M4/043H01M4/0471H01M4/0483H01M4/621H01M4/623H01M4/661H01M10/0525Y10T29/49108Y10T29/49112Y10T29/49115
    • By using a winding type electrode plate assembly resistant to displacement by wind-up and buckling, a lithium ion secondary battery, capable of suppressing deterioration in cycle and storage characteristic caused by expansion and shrinkage of the electrode plate due to charge/discharge cycles or by generation of gas during storage at high temperatures or the like, is accomplished. An electrode plate A comprising a binder mainly composed of a polymer material “a” and an electrode plate B, having the opposite polarity to the electrode plate A, with a porous polymer layer mainly composed of the polymer material “a” or a copolymer of the polymer material “a” formed thereon, are wound up in flat form to give a flat electrode plate assembly, which is soaked in a non-aqueous electrolyte and then heated and cooled, with the soaked state maintained, while pressure is applied in the direction of the thickness of the flat electrode plate assembly, to integrate the electrode plate assembly.
    • 通过使用通过卷绕和弯曲来抵抗位移的绕组式电极板组件,能够抑制由于充电/放电循环引起的电极板的膨胀和收缩引起的循环损耗和存储特性的锂离子二次电池,或者由 在高温储存期间产生气体等。 包括主要由聚合物材料“a”组成的粘合剂的电极板A和与电极板A具有相反极性的电极板B和主要由聚合物材料“a”组成的多孔聚合物层或共聚物 形成在其上的聚合物材料“a”以扁平形式卷绕,得到平坦的电极板组件,其浸泡在非水电解质中,然后加热和冷却,同时保持浸泡状态,同时施加压力 平板电极板组件的厚度方向,以整合电极板组件。