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Density functional theory-based electrochemical models for the oxygen reduction reaction: Comparison of modeling approaches for electric field and solvent effects

机译:基于密度泛函理论的氧还原反应电化学模型:电场和溶剂效应的建模方法比较

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摘要

A series of density functional theory (DFT) based electrochemical models are applied to systematically examine the effect of solvent, local electric field, and electrode potential on oxygen reduction reaction (ORR) kinetics. Specifically, the key elementary reaction steps of molecular oxygen dissociation, molecular oxygen protonation, and reduction of a hydroxyl adsorbate to water over the Pt(111) surface were considered. The local electric field has slight influence on reaction energetics at the vacuum interface. Solvent molecules stabilize surface adsorbates, assisting oxygen reduction. A collective solvation-potential coupled effect is identified by including long range solvent-solvent interactions in the DFT model. The dominant path of the ORR reaction varies with electrode potential and among the modeling approaches considered. The potential dependent reaction path determined from the solvated model qualitatively agrees with experiment ORR kinetics.
机译:一系列基于密度泛函理论(DFT)的电化学模型被应用于系统地研究溶剂,局部电场和电极电势对氧还原反应(ORR)动力学的影响。具体来说,考虑了分子氧离解,分子氧质子化和羟基吸附物在Pt(111)表面上还原为水的关键基本反应步骤。局部电场对真空界面的反应能有轻微的影响。溶剂分子可稳定表面吸附物,帮助减少氧气。通过在DFT模型中包括长期的溶剂-溶剂相互作用,可以确定集体的溶剂化-电位耦合效应。 ORR反应的主要路径随电极电势以及所考虑的建模方法而变化。从溶剂化模型确定的电位依赖性反应路径与实验ORR动力学定性一致。

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