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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Thermodynamic analysis of the temperature dependence of OH adsorption on Pt(111) and Pt(100) electrodes in acidic media in the absence of specific anion adsorption
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Thermodynamic analysis of the temperature dependence of OH adsorption on Pt(111) and Pt(100) electrodes in acidic media in the absence of specific anion adsorption

机译:在没有特定阴离子吸附的情况下,在酸性介质中OH吸附在Pt(111)和Pt(100)电极上的温度依赖性的热力学分析

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摘要

The effect of temperature on the voltammetric OH adsorption on Pt(111) and Pt(100) electrodes in perchloric acid media has been studied. From a thermodynamic analysis based on a generalized adsorption isotherm, Delta G degrees, Delta H degrees, and Delta S degrees values for the adsorption of OH have been determined. On Pt(111), the adsorption enthalpy ranges between -265 and -235 kJ mol(-1), becoming less exothermic as the OH coverage increases. These values are in reasonable agreement with experimental data and calculated values for the same reaction in gas phase. The adsorption entropy for OH adsorption on Pt(111) ranges from -200 J mol(-1) K-1 (low coverage) to -110 J mol(-1) K-1 (high coverage). On the other hand, the enthalpy and entropy of hydroxyl adsorption on Pt(100) are less sensitive to coverage variations, with values ca. Delta H degrees = -280 kJ mol(-1) and Delta S degrees = -180 J mol(-1) K-1. The different dependence of Delta S degrees with coverage on both electrode surfaces stresses the important effect of the substrate symmetry on the mobility of adsorbed OH species within the water network directly attached to the metal surface.
机译:研究了温度对高氯酸介质中Pt(111)和Pt(100)电极上伏安OH吸附的影响。从基于广义吸附等温线的热力学分析,已经确定了用于OH吸附的ΔG度,ΔH度和ΔS度值。在Pt(111)上,吸附焓在-265至-235 kJ mol(-1)之间,随着OH覆盖率的增加,放热变得较小。这些值与气相中相同反应的实验数据和计算值合理地吻合。 OH在Pt(111)上的吸附熵为-200 J mol(-1)K-1(低覆盖率)至-110 J mol(-1)K-1(高覆盖率)。另一方面,Pt(100)上羟基吸附的焓和熵对覆盖率变化的敏感性较小,其值约为。 Delta H度= -280 kJ mol(-1)和Delta S度= -180 J mol(-1)K-1。 Delta S度对两个电极表面的覆盖率的不同依赖关系强调了基材对称性对直接附着在金属表面上的水网络内吸附的OH物种迁移率的重要影响。

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