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    • 3. 发明授权
    • Method for manufacturing lithium ion capacitor and lithium ion capacitor manufactured using the same
    • 制造锂离子电容器和锂离子电容器的方法
    • US08379368B2
    • 2013-02-19
    • US12926672
    • 2010-12-02
    • Hong Seok MinBae Kyun KimHyun Chul JungDong Hyeok ChoiHak Kwan Kim
    • Hong Seok MinBae Kyun KimHyun Chul JungDong Hyeok ChoiHak Kwan Kim
    • H01G9/035
    • H01G11/06H01G11/84Y02E60/13Y10T29/417
    • A method for manufacturing a lithium ion capacitor, and a lithium ion capacitor manufactured using the method are provided. The method for manufacturing a lithium ion capacitor includes: disposing a lithium metal on a capacitor cell including a cathode, a separation film, and an anode; impregnating the capacitor cell with electrolyte including a lithium salt; changing the cathode and the anode to allow lithium ions within the electrolyte to be occluded into the anode; performing a primary reaction in which the cathode and the lithium metal are short-circuited to emit anions from the cathode and lithium ions from the lithium metal and a secondary reaction that the lithium ions emitted from the lithium metal are occluded into the cathode; and recharging the cathode and the anode to allow the lithium ions, which have been occluded into the cathode and the lithium ions within the electrolyte, to be occluded into the anode.
    • 提供一种制造锂离子电容器的方法和使用该方法制造的锂离子电容器。 锂离子电容器的制造方法包括:将锂金属配置在包括阴极,分离膜和阳极的电容器单元上; 用包含锂盐的电解质浸渍电容器电池; 改变阴极和阳极以允许电解液中的锂离子被吸入阳极; 进行阴极和锂金属短路以从阴极发出阴离子和来自锂金属的锂离子的初级反应和从锂金属发射的锂离子被吸留到阴极中的二次反应; 并且对阴极和阳极进行再充电,以使已经封入阴极中的锂离子和电解液内的锂离子被封闭到阳极中。