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首页> 外文期刊>Catalysis Today >Hot electron flux at solid-liquid interfaces probed with Pt/Si catalytic nanodiodes: Effects of pH during decomposition of hydrogen peroxide
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Hot electron flux at solid-liquid interfaces probed with Pt/Si catalytic nanodiodes: Effects of pH during decomposition of hydrogen peroxide

机译:用Pt / Si催化纳米二极管探测的固液界面处的热电子通量:pH分解过氧化氢的pH值

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摘要

Hydrogen peroxide (H2O2) is an effective oxidizing agent that is commonly used in industry. In the presence of metal catalysts, H2O2 can decompose into water and oxygen. Understanding this process at a fundamental level is extremely important for a number of industrial applications, e.g. the direct synthesis of H2O2 from H-2 and O-2. Here, we studied the rates of H2O2 decomposition on Pt/n-Si catalysts using a chemicurrent approach that is based on the detection of hot electrons created during dissociative adsorption of H2O2 molecules on platinum. We showed that both the rate of H2O2 decomposition and the corresponding chemicurrent are sensitive to the pH of the reactive solution. This phenomenon is explained by variation of the potential barrier for electron transfer at the Pt/solution interface caused by adsorption of H+ and OH- species from the solution on the catalytic surface.
机译:过氧化氢(H2O2)是工业中常用的有效氧化剂。 在金属催化剂存在下,H 2 O 2可以分解成水和氧气。 在基本级别理解这个过程对于许多工业应用来说非常重要,例如, 从H-2和O-2直接合成H 2 O 2。 在这里,我们使用基于在铂在铂在铂在铂在铂中的分离吸附期间产生的热电子检测的化学血液检测来研究H2O2分解对Pt / N-Si催化剂的速率。 我们表明,H 2 O 2分解的速率和相应的化学率均对反应溶液的pH敏感。 通过在催化表面上的溶液中吸附H +和OH-物种的Pt /溶液界面处的电子转移潜在屏障的变化来解释这种现象。

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