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    • 9. 发明授权
    • Electric double layer capacitor and method for manufacturing the same
    • 双电层电容器及其制造方法
    • US08531818B2
    • 2013-09-10
    • US13060383
    • 2009-11-06
    • Yasuhiro HashimotoTakuma AsariHironori KumagaiShigeo Hayashi
    • Yasuhiro HashimotoTakuma AsariHironori KumagaiShigeo Hayashi
    • H01G9/155
    • H01G11/84H01G11/12H01G11/28H01G11/36Y02E60/13Y10T29/417
    • An electric double layer capacitor 200 is configured such that a positive electrode 206, a separator 205, and a negative electrode 207 stacked in this order are contained in a container, and a portion between the positive electrode 206 and the negative electrode 207 is filled with an electrolytic solution. A polar plate of one or each of the positive electrode 206 and the negative electrode 207 includes a current collector 201, 203 and a plurality of electrically-conductive fine fibers 202, 204 formed and standing on a surface of the current collector such that one end of each of the fine fibers is electrically connected to the surface of the current collector. A surface of the polar plate is covered with the separator 205, the surface corresponding to the surface of the current collector. The polar plate and the separator 205 are pressure bonded to be integrated with each other. In the electric double layer capacitor using the electrically-conductive fine fiber, such as a carbon nanotube, as an active material, energy density can be increased by densely compressing the active material.
    • 电双层电容器200被构造成使得按照这个顺序堆叠的正电极206,隔膜205和负电极207被容纳在容器中,并且正电极206和负电极207之间的部分填充有 电解液。 正电极206和负电极207中的一个或每个的极板包括集电体201,203和形成并站立在集电体的表面上的多个导电细纤维202,204,使得一端 的每个细纤维电连接到集电器的表面。 极板的表面被分离器205覆盖,该表面对应于集电体的表面。 极板和分离器205被压接以彼此一体化。 在使用诸如碳纳米管的导电细纤维作为活性材料的双电层电容器中,通过密集地压缩活性材料可以增加能量密度。