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    • 33. 发明申请
    • Fuel cell having patterned solid proton conducting electrolytes
    • 具有图案化固体质子传导电解质的燃料电池
    • US20080003485A1
    • 2008-01-03
    • US11479737
    • 2006-06-30
    • Ramkumar KrishnanWilliam J. DauksherChowdary R. Koripella
    • Ramkumar KrishnanWilliam J. DauksherChowdary R. Koripella
    • H01M4/86H01M8/10B05D5/12H01M4/88
    • H01M4/8885H01M4/8605H01M4/98H01M8/1006H01M8/1023H01M8/1039H01M8/1076Y02P70/56
    • A method is provided for patterning a solid proton conducting electrolyte (22, 60) for a micro fuel cell. The method comprises patterning a first side (30, 63) of a solid proton conducting electrolyte (22, 60) to increase the surface area, coating the patterned first side (22, 60) with an electrocatalyst (33, 66), providing a first electrical conductor (20) to the first side (22, 60), and providing a second electrical conductor (15, 16) to a second side (19) of the solid proton conducting electrolyte (22, 60) opposed to the first side (22, 60). One exemplary embodiment comprises depositing a solid proton conducting electrolyte (60) over a substrate (12), patterning the solid proton conducting electrolyte (60) to form a plurality of pedestals (28), each pedestal (28) having an anode side adjacent a anode region (42) and a cathode side adjacent a cathode region (43), coating the anode (42) and cathode (43) sides with an electrocatalyst (33), providing a first electrical conductor (15, 16) to the anode side (42); and providing a second electrical conductor (20) to the cathode side (43).
    • 提供了用于图案化用于微型燃料电池的固体质子传导电解质(22,60)的方法。 该方法包括图案化固体质子传导电解质(22,60)的第一侧(30,63)以增加表面积,用电催化剂(33,66)涂覆图案化的第一侧(22,60),从而提供 将第一电导体(20)连接到第一侧(22,60),并且向与第一侧相对的固体质子传导电解质(22,60)的第二侧(19)提供第二电导体(15,16) (22,60)。 一个示例性实施例包括在基板(12)上沉积固体质子传导电解质(60),图案化固体质子传导电解质(60)以形成多个基座(28),每个基座(28)具有邻近的阳极侧 阳极区域(42)和与阴极区域(43)相邻的阴极侧,用电极催化剂(33)涂覆阳极(42)和阴极(43)侧,向阳极侧提供第一电导体(15,16) (42); 以及向阴极侧(43)提供第二电导体(20)。
    • 40. 发明授权
    • Method for forming a micro fuel cell
    • 微型燃料电池的形成方法
    • US07776386B2
    • 2010-08-17
    • US11669712
    • 2007-01-31
    • Chowdary R. KoripellaKurt W. EisenbeiserRamkumar Krishnan
    • Chowdary R. KoripellaKurt W. EisenbeiserRamkumar Krishnan
    • H01M4/88H01M8/02H01M8/10
    • H01M8/1097H01M8/1286H01M8/2404H01M8/241H01M8/2418Y10T29/49108
    • A method is provided for fabricating an integrated micro fuel cell that derives power from a three-dimensional fuel/oxidant interchange having increased surface area and that is positioned on a second substrate that may be either porous or flexible with gas access holes, thereby avoiding precise alignment requirements of the openings providing fuel thereto. The method comprises forming on a first substrate, a plurality of pedestals including an anode and a cathode each comprising a porous metal; positioning an electrolyte between the anode and the cathode; and forming first metal contacts on the anode and cathode. The first substrate is removed and a second substrate is positioned against the fuel cell wherein the first metal contacts are selectively positioned to make electrical contact with second metal contacts on the second substrate.
    • 提供了一种用于制造集成的微型燃料电池的方法,其从具有增加的表面积的三维燃料/氧化剂交换器导出功率,并且位于第二基板上,该第二基板可以是具有气体进入孔的多孔或柔性的,从而避免精确 对其提供燃料的开口的对准要求。 该方法包括在第一基板上形成多个基座,包括阳极和阴极,每个基座包括多孔金属; 在阳极和阴极之间定位电解质; 并在阳极和阴极上形成第一金属接触。 去除第一衬底,并且第二衬底抵靠燃料电池定位,其中第一金属触点被选择性地定位成与第二衬底上的第二金属触点电接触。