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Hot Electrons at Solid-Liquid Interfaces: A Large Chemoelectric Effect during the Catalytic Decomposition of Hydrogen Peroxide

机译:固液界面上的热电子:过氧化氢催化分解过程中的大化学电效应

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摘要

The study of energy and charge transfer during chemical reactions on metals is of great importance for understanding the phenomena involved in heterogeneous catalysis. Despite extensive studies, very little is known about the nature of hot electrons generated at solid-liquid interfaces. Herein, we report remarkable results showing the detection of hot electrons as a chemicurrent generated at the solid-liquid interface during decomposition of hydrogen peroxide (H2O2) catalyzed on Schottky nanodiodes. The chemicurrent reflects the activity of the catalytic reaction and the state of the catalyst in real time. We show that the chemicurrent yield can reach values up to 10(-1) electrons/O-2 molecule, which is notably higher than that for solid-gas reactions on similar nanodiodes.
机译:对金属化学反应过程中的能量和电荷转移的研究对于理解多相催化中涉及的现象非常重要。尽管进行了广泛的研究,但对于在固液界面产生的热电子的性质知之甚少。在本文中,我们报告了令人瞩目的结果,这些结果表明检测到在肖特基纳米二极管上催化的过氧化氢(H2O2)分解过程中,在固液界面产生的化学流中存在电子流的热电子。化学电流实时反映催化反应的活性和催化剂的状态。我们表明,化学流产率可以达到高达10(-1)电子/ O-2分子的值,这明显高于类似纳米二极管上的固相气体反应的值。

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