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首页> 外文期刊>The Journal of Chemical Physics >Density functional theory study of the electrochemical interface between a Pt electrode and an aqueous electrolyte using an implicit solvent method
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Density functional theory study of the electrochemical interface between a Pt electrode and an aqueous electrolyte using an implicit solvent method

机译:用隐式溶剂法研究铂电极与水电解质之间的电化学界面的密度泛函理论

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摘要

We present a computational study of the interface of a Pt electrode and an aqueous electrolyte employing semi-empirical dispersion corrections and an implicit solvent model within first-principles calculations. The electrode potential is parametrized within the computational hydrogen electrode scheme. Using one explicit layer, we find that the most realistic interface configuration is a water bilayer in the H-up configuration. Furthermore, we focus on the contribution of the dispersion interaction and the presence of water on H, O, and OH adsorption energies. This study demonstrates that the implicit water scheme represents a computationally efficient method to take the presence of an aqueous electrolyte interface with a metal electrode into account. (C) 2015 AIP Publishing LLC.
机译:我们介绍了使用半经验弥散校正和第一性原理计算中的隐式溶剂模型对Pt电极和水性电解质的界面进行的计算研究。电极电势在计算的氢电极方案中设定。使用一个显式层,我们发现最现实的界面配置是H-up配置中的水双层。此外,我们关注分散相互作用和水的存在对H,O和OH吸附能的贡献。这项研究表明,隐式水方案代表了一种计算有效的方法,可以考虑到存在水电解质与金属电极的界面。 (C)2015 AIP Publishing LLC。

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