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首页> 外文期刊>Topics in Catalysis >Promotional effects on a PtRu/C catalyst-electrode interfaced with aqueous electrolytes:electrochemical metal support interaction(EMSI) and electrochemical promotion of catalysis(EPOC)
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Promotional effects on a PtRu/C catalyst-electrode interfaced with aqueous electrolytes:electrochemical metal support interaction(EMSI) and electrochemical promotion of catalysis(EPOC)

机译:对水电解质与PtRu / C催化剂电极的促进作用:电化学金属载体相互作用(EMSI)和催化的电化学促进(EPOC)

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摘要

The kinetics of the catalytic oxidation of H2 on PtRu/C gas diffusion electrode(GDE)was studied by interfacing the electrode with aqueous electrolytes at different pH values.The conducting electrolytes were aqueous solutions of varying concentrations of KOH and HClO4 so that the pH was ranging between 2 and 13.The open circuit catalytic reaction rates exhibit the lowest value at pH = 13,while the catalytic activity is progressively increasing with decreasing pH values.The enhancement of the open circuit catalytic reaction rate can be even an order of magnitude higher in the acidic solution with respect to the alkaline electrolyte.It is shown that the nature of the aqueous electrolyte plays the role of an active catalyst support for the PtRu/C electrode,which drastically affects its catalytic properties.This is substantiated through the electrochemical equilibrium charge transfer reactions at the catalyst-electrode/electrolyte interface:H_3O~+ + e~-+ S <-> H_(ad)+ H2O(acidic);OH~-+ S <-> OH_(ad)+ e~-(alkaline).According to the aforementioned interaction,termed electrochemical metal support interaction(EMSI),the electrochemical potential of the electrons at the catalyst Fermi level is equalised with the electrochemical potential of the solvated electron in the aqueous electrolyte.The electrochemical promotion experiments carried out at various pH values showed that the non Faradaic modification of the catalytic activity is more intense when the catalyst-electrode is interfaced with electrolytes with high pH values where the OH~-ionic conduction prevails.It was concluded that similar to the solid state electrochemical systems the non Faradaic electrochemical modification of the catalytic activity proceeds through the formation of a polar adsorbed promoting layer of OH_(ad)~(delta-),electrochemically supplied by the OH~-species,at the three phase boundaries of the gas exposed gas diffusion catalyst-electrode surface.
机译:通过将电极与不同pH值的水性电解质介电,研究了PtRu / C气体扩散电极(HDE)上H2的催化氧化动力学。导电电解质是KOH和HClO4浓度不同的水溶液,因此pH为开环催化反应速率在pH = 13时表现出最低值,而催化活性随着pH值的降低而逐渐增加,开环催化反应速率的提高甚至可以高一个数量级。结果表明,水性电解质的性质起着PtRu / C电极活性催化剂载体的作用,极大地影响了PtRu / C电极的催化性能,这通过电化学平衡得以证实。催化剂-电极/电解质界面的电荷转移反应:H_3O〜+ + e〜-+ S <-> H_(ad)+ H2O(酸性); OH〜-+ S <- > OH_(ad)+ e〜-(碱性)。根据上述相互作用,被称为电化学金属载体相互作用(EMSI),在催化剂费米能级上电子的电化学势等于在溶剂中的溶剂化电子的电化学势。在各种pH值下进行的电化学促进实验表明,当催化剂电极与OH〜离子传导占主导的高pH值的电解质接触时,催化活性的非法拉第改性作用更加强烈。得出的结论是,类似于固态电化学系统,催化活性的非法拉第电化学修饰是通过形成由OH-物种电化学提供的OH_(ad)〜(delta-)的极性吸附促进层而进行的。气体暴露的气体扩散催化剂电极表面的三相边界。

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