首页> 外文会议>Polymer Electrolyte Fuel Cell Symposium;Meeting of the Electrochemical Society >Hydrogen Oxidation and Evolution Reaction (HOR/HER) on Pt Electrodes in Acid vs. Alkaline Electrolytes: Mechanism, Activity and Particle Size Effects
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Hydrogen Oxidation and Evolution Reaction (HOR/HER) on Pt Electrodes in Acid vs. Alkaline Electrolytes: Mechanism, Activity and Particle Size Effects

机译:酸与碱性电解质Pt电极上Pt电极的氢氧和进化反应(Hor / Her):机理,活性和粒度效应

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In this study, we provide an overview regarding our recent finding on the mechanism, activity and particle size effect for the hydrogen oxidation and evolution reaction (HOR/HER) on Pt-group metal electrodes, under both acid and alkaline conditions. We show that there is an activity decrease of about two orders of magnitude when going from acid to base conditions on electrodes which are able to form a H-UPD layer like Pt, Ir, Pd and Rh. Similarities in the HOR/HER process between acid and base conditions have been found: the rate determining step, which has been identified by means of electrochemical impedance spectroscopy measurements to be the Volmer reaction, remains the same and there is no particle size dependency on the reactivity of Pt electrodes. In the light of these finding, Volcano plots of the HOR/HER activities in acid and base have been proposed.
机译:在这项研究中,我们提供了关于我们最近发现对Pt-Group金属电极的氢氧化和演化反应(Hor / Her)的机理,活性和粒度效应的概要。 我们表明,当能够形成Pt,IR,Pd和Rh等H-UPD层的电极上的酸性时,存在大约两个数量级的活动减少了两个数量级。 发现了酸和碱条件之间的过程中的相似性:速率确定步骤,通过电化学阻抗光谱测量值鉴定为Volmer反应,保持不变,并且没有粒度依赖性 PT电极的反应性。 鉴于这些发现,已经提出了Hor / Shiss in酸和碱活性的火山曲线。

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