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    • 9. 发明授权
    • Electrodes for three-dimensional lithium batteries and methods of manufacturing thereof
    • 三维锂电池用电极及其制造方法
    • US08865345B1
    • 2014-10-21
    • US12013394
    • 2008-01-11
    • Murali RamasubramanianAshok Lahiri
    • Murali RamasubramanianAshok Lahiri
    • H01M4/04H01M2/02C25D13/12
    • C23C18/1653C25D5/022C25D13/12H01M4/386H01M10/0525
    • Various methods, systems, and apparatus for implementing aspects of the use of alloy anodes in three-dimensional lithium-ion batteries are disclosed, while accounting for volume change that occurs in these alloy anodes during charging and discharging. A three-dimensional lithium-ion battery according to certain embodiments comprises a battery enclosure, and an anode protruding from a first surface within the enclosure, with the anode having a first state and an expanded state, where the volume occupied by said anode is larger in the expanded state than in the first state. A first cathode is separated from the anode along a first direction, and a second cathode is separated from the anode along a second direction. A separator contacts the first cathode, the second cathode, and a portion of the anode. A gap is provided between the anode and the separator, the gap being larger in the first state than in the expanded state.
    • 公开了用于实现三维锂离子电池中合金阳极的使用方面的各种方法,系统和装置,同时考虑了在充电和放电期间在这些合金阳极中发生的体积变化。 根据某些实施例的三维锂离子电池包括电池外壳和从外壳中的第一表面突出的阳极,阳极具有第一状态和膨胀状态,其中由所述阳极占据的体积较大 处于扩张状态,处于第一状态。 第一阴极沿着第一方向与阳极分离,并且第二阴极沿着第二方向与阳极分离。 分离器接触第一阴极,第二阴极和阳极的一部分。 在阳极和隔板之间设置间隙,第一状态下的间隙大于膨胀状态。