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    • 7. 发明授权
    • Internally neutralizing a power source
    • 内部中和电源
    • US08535819B2
    • 2013-09-17
    • US12715630
    • 2010-03-02
    • Bouziane YebkaJoseph Anthony HolungTin-Lup WongKenneth Scott Seethaler
    • Bouziane YebkaJoseph Anthony HolungTin-Lup WongKenneth Scott Seethaler
    • H01M2/16H01M2/34H01M10/056
    • H01M10/04H01M10/052H01M10/058H01M10/613H01M10/625H01M10/637Y10T29/49108
    • A battery is disclosed that includes two contact areas, an electrolyte, and an electronically conductive material that, at a neutralization trip point temperature, increases electronic conductivity internal to the battery between the first contact area and the second contact area. In one embodiment, the electronically conductive material is void from being activated external to the battery. In another embodiment, the battery includes a semiconductor material that includes custom doping to provide the increased electron conductivity at the neutralization trip point temperature. In yet another embodiment, the battery includes an insulator for separating the electronically conductive material until a temperature internal to the battery reaches the neutralization trip point temperature, at which point permits the electronically conductive material to increase the electronic conductivity between the first contact area and the second contact area.
    • 公开了一种电池,其包括两个接触区域,电解质和电导体材料,其在中和跳变点温度下增加在第一接触区域和第二接触区域之间的电池内部的电子传导性。 在一个实施例中,电子导电材料无法在电池外部被激活。 在另一个实施例中,电池包括半导体材料,其包括定制掺杂以在中和跳变点温度下提供增加的电子传导性。 在另一个实施例中,电池包括用于分离电子导电材料的绝缘体,直到电池内部的温度达到中和跳变点温度,此时允许电子导电材料增加第一接触面积和 第二接触区域。