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Electrochemical Behavior of Pd-based Nanocatalysts (Hollow@Me@Pd/C) in Direct Alcohol Oxidation in Alkaline Medium

机译:Pd基纳米催化剂(空心@ ME @ PD / C)在碱性培养基中的直接醇氧化的电化学行为

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The synthesis and application of core@shell nanocatalysts with high morphological organization has become an attractive research area, with potential application in fuel cell devices. Although the use of this class of nanocatalysts has increased, their catalytic performance and oxidation behavior toward alternative fuels such as ethanol, ethylene glycol, and glycerol remain to be elucidated. This paper describes the electrochemical characterization of the Pd-based catalyst (Hollow@Me@Pd/C, Me = Ru, Ni, and Sn), applied to the electrooxidation of ethanol, ethylene glycol, and glycerol in alkaline medium. The nanocatalysts were prepared by the co-reduction method; NaBH_4 and sodium dodecylsulfate (SDS) were used, to promote an electrostatically self-assembled organization. The nanocatalyst compositions responded well in terms of fuel oxidation. Chronoamperometry results indicated the following order of reactivity: ethylene glycol < ethanol < glycerol. The best catalyst composition for glycerol was Hollow@Ni@Pd/C.
机译:具有高形态组织的核心甲壳纳米催化剂的合成和应用已成为一个有吸引力的研究区域,燃料电池装置潜在应用。虽然这种类纳米催化剂的使用增加,但它们对替代燃料如乙醇,乙二醇和甘油的催化性能和氧化行为仍然待阐明。本文描述了Pd基催化剂的电化学表征(空心@ Me @ Pd / c,Me = Ru,Ni和Sn),其应用于乙醇,乙二醇和甘油在碱性介质中的电氧化。纳米催化剂由共减析方法制备;使用NaBH_4和十二烷基硫酸钠(SDS),以促进静电自组装组织。在燃料氧化方面,纳米催化剂组合物响应良好。计时结果结果表明以下反应性顺序:乙二醇<乙醇<甘油。甘油的最佳催化剂组合物是空心的@ ni @ pd / c。

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