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A Facile Diethylene Glycol Reduction Method for the Synthesis of Ultrafine Pd/C Electrocatalyst with High Electrocatalytic Activity for Methanol Oxidation

机译:一种简便的二乙二醇还原方法,用于合成具有高电催化活性的超细Pd / C甲醇氧化甲醇催化剂

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摘要

The high-quality carbon supported Pd nanoparticles (Pd/C) composites have wide applications in catalysis. In this work, we demonstrate an efficient diethylene glycol (DEG) reduction method for the synthesis of a Pd/C catalyst with high dispersion and small particle size. During the synthesis, no surfactants and halogen ions are introduced in the reaction system, and DEG efficiently acts as solvent and reducing agent, which results in a "clean'' Pd surface. Meanwhile, compared to the classic ethylene glycol (EG) reduction method, the present DEG reduction method can produce the high-quality Pd/C composites. As a result, the as-prepared Pd/C electrocatalyst exhibits a large electrochemical active surface area and good electrocatalytic performance for the methanol oxidation reaction in an alkaline media, due to the high dispersion and small particle size. This result indicates the as-prepared Pd/C electrocatalyst has potential applications in alkaline direct methanol fuel cells.
机译:高质量的碳载Pd纳米颗粒(Pd / C)复合材料在催化中具有广泛的应用。在这项工作中,我们演示了一种高效的二甘醇(DEG)还原方法,用于合成具有高分散度和小粒径的Pd / C催化剂。在合成过程中,反应体系中没有引入表面活性剂和卤素离子,DEG有效地充当了溶剂和还原剂,从而形成了“干净的” Pd表面,同时,与传统的乙二醇(EG)还原方法相比,这种DEG还原方法可以生产高质量的Pd / C复合材料,因此,所制得的Pd / C电催化剂在碱性介质中表现出较大的电化学活性表面积和对甲醇氧化反应的良好电催化性能,该结果表明,所制备的Pd / C电催化剂在碱性直接甲醇燃料电池中具有潜在的应用前景。

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