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    • 45. 发明申请
    • Lithium-ion battery
    • 锂离子电池
    • US20060093871A1
    • 2006-05-04
    • US10978722
    • 2004-10-29
    • William HowardCraig SchmidtErik Scott
    • William HowardCraig SchmidtErik Scott
    • H01M12/00H01M4/50H01M4/48H01M4/52
    • H01M10/4235H01M4/131H01M4/505H01M4/525H01M10/052
    • A battery includes a positive electrode having a current collector and a first active material and a negative electrode having a current collector and a second active material. The battery also includes an auxiliary electrode having a current collector and a third active material. The auxiliary electrode is configured for selective electrical connection to one of the positive electrode and the negative electrode. The first active material, second active material, and third active material are configured to allow doping and undoping of lithium ions. The third active material exhibits charging and discharging capacity below a corrosion potential of the current collector of the negative electrode and above a decomposition potential of the first active material.
    • 电池包括具有集电体和第一活性物质的正极和具有集电体和第二活性物质的负极。 电池还包括具有集电器和第三活性材料的辅助电极。 辅助电极被配置为选择性地电连接到正极和负极中的一个。 第一活性材料,第二活性材料和第三活性材料被配置为允许锂离子的掺杂和去掺杂。 第三活性物质具有低于负极集电体的腐蚀电位并高于第一活性物质的分解电位的充放电能力。
    • 49. 发明授权
    • Electrical energy storage device and method of charging and discharging
same
    • 蓄电装置及其充放电方法
    • US5439756A
    • 1995-08-08
    • US203098
    • 1994-02-28
    • Anaba A. AnaniFrank P. MalaspinaGerald W. Blanton
    • Anaba A. AnaniFrank P. MalaspinaGerald W. Blanton
    • H01M10/44H01G9/00H01M10/30H01M10/42H01M16/00H01M12/00
    • H01G9/00H01M10/42H01M10/4264H01M10/30
    • Briefly, according to the invention, there is provided an energy storage device (5) with three electrodes. A first electrolyte (15)is situated between the first (10) and second (20) electrodes so that it is contact with each of the electrodes, forming a battery cell (80). A second electrolyte (25) is placed between the second (20) and third (30) electrodes so that it is also in contact with each electrode, forming an electrochemical capacitor (70). The battery and capacitor each share a common electrode (20). After charging, the energy storage device can be linked to an electrical device to power it by discharging the battery portion to provide a substantially constant voltage, and discharging the capacitor portion to provide a substantially constant current when the device requires higher levels of current than the battery portion is capable of providing.
    • 简而言之,根据本发明,提供一种具有三个电极的能量存储装置(5)。 第一电解质(15)位于第一电极(10)和第二电极(20)之间,使其与每个电极接触,形成电池单元(80)。 第二电解质(25)被放置在第二电极(20)和第三电极(30)之间,使得它也与每个电极接触,形成电化学电容器(70)。 电池和电容器各自共用公共电极(20)。 在充电之后,能量存储装置可以连接到电气装置以通过将电池部分放电以提供基本上恒定的电压来供电,并且当该装置需要比电流高的电流时,放电电容器部分以提供基本上恒定的电流 电池部分能够提供。