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首页> 外文期刊>Chemistry Select >One-step Simultaneous Synthesis of Graphene and Pt Nanoparticles under the Action of Pulsed Alternating Current and Electrochemical Performance of Pt/Graphene Catalysts
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One-step Simultaneous Synthesis of Graphene and Pt Nanoparticles under the Action of Pulsed Alternating Current and Electrochemical Performance of Pt/Graphene Catalysts

机译:在脉冲交替的电流和PT/石墨烯催化剂的电化学性能的作用下,同时合成石墨烯和PT纳米颗粒的一步合成

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摘要

Pt/graphene electrocatalyst for fuel elements has been obtained via the simultaneously electrochemical dispersion of Pt foil and expanded graphite by applying the alternating current. Raman spectroscopy and transmission electron microscopy (TEM) have revealed multilayered structure of graphene (3-5 layers) with linear defects of graphene sheets near 1 μm. The microstructural characteristics and catalytic activity of synthesized Pt/graphene catalyst have been compared with those of Pt/Vulcan catalyst prepared under the same conditions. Pt nanoparticles of Pt/Graphene catalyst exhibit smaller average dimensions and narrower particle size distribution. It follows from the electrochemical study that the electrochemical surface area of Pt/graphene catalyst is 2.5 times higher than for Pt/Vulcan. Besides this, the activity in the electrooxidation of methanol and the stability of Pt/graphene catalyst are found to be superior to the analogous parameters of Pt/Vulcan specimen.
机译:燃料元件的PT/石墨烯电催化剂是通过同时通过施加交流电流的PT箔的电化学分散和扩展的石墨来获得的。 拉曼光谱和透射电子显微镜(TEM)显示了石墨烯的多层结构(3-5层),线性缺陷在1μm附近的石墨烯片。 将合成PT/石墨烯催化剂的微结构特性和催化活性与在相同条件下制备的PT/Vulcan催化剂的微结构特性和催化活性进行了比较。 PT/石墨烯催化剂的PT纳米颗粒表现出较小的平均尺寸和较窄的粒度分布。 从电化学研究中,PT/石墨烯催化剂的电化学表面积比PT/Vulcan高2.5倍。 除此之外,发现甲醇的电氧化和PT/石墨烯催化剂的稳定性的活性优于PT/Vulcan标本的类似参数。

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