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首页> 外文期刊>Angewandte Chemie >Co-adsorption of Cations as the Cause of the Apparent pH Dependence of Hydrogen Adsorption on a Stepped Platinum Single-Crystal Electrode
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Co-adsorption of Cations as the Cause of the Apparent pH Dependence of Hydrogen Adsorption on a Stepped Platinum Single-Crystal Electrode

机译:阳离子的共吸收作为氢吸收在阶梯式铂单晶电极上表观pH依赖性的原因

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The successful deployment of advanced energy-conversion systems depends critically on our understanding of the fundamental interactions of the key adsorbed intermediates (hydrogen *H and hydroxyl *OH) at electrified metal-aqueous electrolyte interfaces. The effect of alkali metal cations (Li+, Na+, K+, Cs+) on the non-Nernstian pH shift of the step-related voltammetric peak of the Pt(553) electrode is investigated over a wide pH window (1 to 13) by means of experimental and computational methods. The co-adsorbed alkali cations along the step weaken the OH adsorption at the step sites, causing a positive shift of the potential of the step-related peak on Pt(553). Density functional calculations explain the observations on the identity and concentration of alkali cations on the non-Nernstian pH shift, and demonstrate that cation-hydroxyl co-adsorption causes the apparent pH dependence of "hydrogen" adsorption in the step sites of platinum electrodes.
机译:先进的能量转换系统的成功部署尺寸依赖于我们对电气化金属 - 水电解质界面处的键吸附中间体(氢气* H和羟基)的基本相互作用的理解。 碱金属阳离子(Li +,Na +,K +,CS +)对Pt(553)电极的阶梯相关伏安峰的非Nernstian pH偏移的影响通过宽pH窗口(1至13)进行研究 实验与计算方法。 沿着该步骤的共吸收碱阳离子削弱了步进位点的OH吸附,导致PT(553)上的阶梯相关峰的电位正偏移。 密度函数计算解释了对非NERNSTIAN pH变速器上碱阳离子的身份和浓度的观察,并证明阳离子 - 羟基辅助吸收导致“氢气”在铂电极的步位位点中的表观pH依赖性。

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