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    • 1. 发明申请
    • Membrane-Electrode Assembly, Method for Manufacturing the Same, and Fuel Cell
    • 膜电极组件及其制造方法和燃料电池
    • US20080261095A1
    • 2008-10-23
    • US11993303
    • 2006-06-19
    • Masaki YamauchiYoshihiro HoriYasuo TakebeYasuhiro Seki
    • Masaki YamauchiYoshihiro HoriYasuo TakebeYasuhiro Seki
    • H01M8/10H01M6/00
    • H01M8/0263H01M8/0258H01M8/0267H01M8/1007H01M8/241H01M8/2483Y02P70/56Y10T29/49108
    • A membrane-electrode assembly (1) of the present invention comprises: a quadrate polymer electrolyte membrane (2); a pair of catalyst layers provided to sandwich the polymer electrolyte membrane except for a peripheral portion of the polymer electrolyte membrane; and a pair of gas diffusion layers (3) provided respectively on the pair of the catalyst layers, the membrane-electrode assembly (1) being incorporated into a fuel cell by being sandwiched between a pair of separators on each of which a reaction gas passage (A) or (C) is concavely formed in a gas diffusion layer contacting region of an inner surface thereof, the gas diffusion layer contacting region being a region contacting the gas diffusion layer, wherein: each of the reaction gas passages (A) and (C) in the gas diffusion layer contacting region is formed to have a serpentine shape which extends from upstream to downstream in a direction from a first side (2a) of the polymer electrolyte membrane 1 to a third side (2c) facing the first side along a second side (2b) adjacent to the first side while turning in directions along the first side; reinforced portions (4) for reinforcing the polymer electrolyte membrane are formed at a portion corresponding to the second side and a portion corresponding to a fourth side (2d) facing the second side in the peripheral portion of the polymer electrolyte membrane 2; and the reinforced portion (4) is not formed at a portion corresponding to at least the third side (2c) in the peripheral portion of the polymer electrolyte membrane (2).
    • 本发明的膜 - 电极组件(1)包括:正方形聚合物电解质膜(2); 一对催化剂层,设置成夹持聚合物电解质膜,除了聚合物电解质膜的周边部分; 以及一对分别设置在所述一对催化剂层上的气体扩散层(3),所述膜 - 电极组件(1)通过夹在一对隔板之间而被并入燃料电池,所述隔板中的每一个都具有反应气体通道 (A)或(C)在其内表面的气体扩散层接触区域中凹入地形成,气体扩散层接触区域是与气体扩散层接触的区域,其中:反应气体通道(A)和 气体扩散层接触区域中的(C)形成为具有蛇形形状,从在从高分子电解质膜1的第一侧(2a)到第三面(2c)的方向从上游到下游延伸, 第一侧沿着沿着第一侧的方向转动而沿着与第一侧相邻的第二侧(2b); 在与第二侧对应的部分和与高分子电解质膜2的周边部的面向第二面的第四面(2d)相对应的部分形成用于加强聚合物电解质膜的增强部分(4) 并且所述加强部(4)不形成在与所述高分子电解质膜(2)的周边部的至少第三面(2c)对应的部分。
    • 9. 发明授权
    • Gas diffusion layer and fuel cell using the same
    • 气体扩散层和使用其的燃料电池
    • US07560180B2
    • 2009-07-14
    • US11062749
    • 2005-02-23
    • Akihiko YoshidaMasaki YamauchiYoshihiro HoriMakoto Uchida
    • Akihiko YoshidaMasaki YamauchiYoshihiro HoriMakoto Uchida
    • H01M8/00H01M4/00
    • H01M8/023H01M4/8605H01M8/04156H01M8/1007
    • To provide a gas diffusion layer excellent in micro short-circuit resistance and anti-flooding characteristics by optimizing the surface shape of a gas diffusion layer.In a gas diffusion layer for a gas diffusion electrode including at least a catalyst layer containing an electrode catalyst and a gas diffusion layer having electron conductivity and gas diffusibility, a second surface of the gas diffusion layer, which is positioned opposite to a first surface thereof to be in contact with the catalyst layer, is made rougher than the first surface. The first surface has a maximum height Ry1 of 10 to 50 determined by JIS B 0601 surface roughness measurement method, and the second surface has a maximum height Ry2 of 100 to 500 determined by JIS B 0601 surface roughness measurement method.
    • 通过优化气体扩散层的表面形状,提供微短路电阻和防淹特性优异的气体扩散层。 在至少含有电极催化剂的催化剂层和具有电子传导性和气体扩散性的气体扩散层的气体扩散电极用气体扩散层中,与第一表面相对的气体扩散层的第二表面 与催化剂层接触,比第一表面更粗糙。 第一表面具有由JIS B 0601表面粗糙度测量方法确定的10至50的最大高度Ry1,并且第二表面具有由JIS B 0601表面粗糙度测量方法确定的100至500的最大高度Ry2。