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首页> 外文期刊>Angewandte Chemie >Single-Molecule Nanocatalysis Shows InSitu Deactivation of Pt/C Electrocatalysts during the Hydrogen-Oxidation Reaction
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Single-Molecule Nanocatalysis Shows InSitu Deactivation of Pt/C Electrocatalysts during the Hydrogen-Oxidation Reaction

机译:单分子纳米催化显示氢氧化反应过程中Pt / C电催化剂的原位失活

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摘要

By coupling a Pt-catalyzed fluorogenic reaction with the Pt-electrocatalyzed hydrogen-oxidation reaction (HOR), we combine single-molecule fluorescence microscopy with traditional electrochemical methods to study the real-time deactivation kinetics of a Pt/C electrocatalyst at single-particle level during electrocatalytic hydrogen-oxidation reaction. The decay of the catalytic performance of Pt/C could be mainly attributed to the electrocatalysis-induced etching or dissolution of Pt nanoparticles. Spontaneous regeneration of activity and incubation period of the Pt electrocatalyst were also observed at single-particle level. All these new insights are practically useful for the understanding and rational design of highly efficient electrocatalysts for application in fuel cells.
机译:通过将Pt催化的荧光反应与Pt电催化的氢氧化反应(HOR)耦合,我们将单分子荧光显微镜与传统的电化学方法相结合,以研究Pt / C电催化剂在单颗粒下的实时失活动力学电催化氢氧化反应过程中的水平。 Pt / C催化性能的下降主要归因于电催化诱导的Pt纳米颗粒的蚀刻或溶解。在单颗粒水平上也观察到了Pt电催化剂的活性的自发再生和潜伏期。所有这些新见解对于理解和合理设计用于燃料电池的高效电催化剂都非常有用。

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