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    • 6. 发明授权
    • Three-dimensional (3D) porous electrode architecture for a microbattery
    • 用于微电池的三维(3D)多孔电极结构
    • US09406938B2
    • 2016-08-02
    • US14235338
    • 2012-07-25
    • William P. KingPaul V. BraunJames H. Pikul
    • William P. KingPaul V. BraunJames H. Pikul
    • H01M4/78H01M4/40H01M4/04H01M4/08H01M6/40
    • H01M4/78H01M4/0404H01M4/08H01M6/40
    • A three-dimensional porous electrode architecture for a microbattery includes a substrate having first and second conductive patterns disposed thereon where the first and second conductive patterns are electrically isolated from each other, a three-dimensional porous cathode disposed on the first conductive pattern, and a three-dimensional porous anode disposed on the second conductive pattern. The porous cathode includes a first conductive scaffold conformally coated with a layer of a cathode active material and having a porosity defined by a network of interconnected pores, where the first conductive scaffold has a lateral size and shape defined by the first conductive pattern and porous side walls oriented substantially perpendicular to the substrate. The porous anode includes a second conductive scaffold conformally coated with a layer of an anode active material and having a porosity defined by a network of interconnected pores.
    • 用于微电池的三维多孔电极结构包括其上布置有第一和第二导电图案的基板,其中第一和第二导电图案彼此电隔离,设置在第一导电图案上的三维多孔阴极,以及 设置在第二导电图案上的三维多孔阳极。 多孔阴极包括第一导电支架,其第一导电支架共形涂覆有阴极活性材料层,并且具有由互连孔的网络限定的孔隙,其中第一导电支架具有由第一导电图案和多孔侧限定的横向尺寸和形状 基本上垂直于衬底取向的壁。 多孔阳极包括第二导电支架,该第二导电支架共形涂覆有阳极活性材料层,并具有由互连孔网络限定的孔隙。