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Membrane Electrode Assemblies And Fuel-Cell Systems With Surface-Modified Electrocatalysts And Methods For Electrocatalyst Surface Modification

机译:具有表面改性的电催化剂的膜电极组件和燃料电池系统及电催化剂的表面改性方法

摘要

Fuel-cell assemblies containing a membrane electrode assembly, methods for preparing the membrane electrode assembly, and methods for functionalizing catalytic surfaces of catalyst particles in the membrane electrode assembly of the fuel cell assembly have been described. The fuel-cell assemblies and their membrane electrode assemblies contain cathode catalyst materials having catalytic surfaces that are functionalized with cyano groups to improve catalyst activity. The cathode catalyst materials may include a catalytic metal such as platinum or a platinum alloy. The cyano groups may be derived from a cyanide source that is electro-oxidized onto the catalytic surfaces. Nonlimiting examples of cyanide sources include amino acids such as glycine, alanine, and serine. The cyano groups may improve catalyst activity toward the oxygen-reduction reaction in a hydrogen fuel cell by blocking catalyst surface adsorption of contaminant species such as sulfates or sulfonates while allowing access of oxygen molecules to the catalyst surface.
机译:已经描述了包含膜电极组件的燃料电池组件,用于制备膜电极组件的方法以及用于使燃料电池组件的膜电极组件中的催化剂颗粒的催化表面官能化的方法。燃料电池组件及其膜电极组件包含阴极催化剂材料,该阴极催化剂材料具有被氰基官能化以提高催化剂活性的催化表面。阴极催化剂材料可包括催化金属,例如铂或铂合金。氰基可以衍生自氰化物源,该氰化物源被电氧化到催化表面上。氰化物源的非限制性实例包括氨基酸,例如甘氨酸,丙氨酸和丝氨酸。氰基可通过阻止污染物种类(例如硫酸盐或磺酸盐)在催化剂表面的吸附,同时允许氧分子进入催化剂表面,从而提高氢燃料电池中针对氧还原反应的催化剂活性。

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