论文标题

用于计算电化学接口的计算模拟的均匀背景方法的进步

Advancement of the Homogeneous Background Method for the Computational Simulation of Electrochemical Interfaces

论文作者

Hagopian, Arthur, Doublet, Marie-Liesse, Filhol, Jean-Sébastien, Binninger, Tobias

论文摘要

基于密度功能理论(DFT)的电化学界面的计算研究在目前关于能量转化和存储电化学过程的研究中起着越来越重要的作用。同质背景方法(HBM)提供了一种直接的方法,可以在DFT模拟中对电化学系统充电,但通常需要根据电极 - 电解质边界的某个选择的某个选择,在存在电极 - 层面含量溶质或explicitflice-sorplice-sorplice-sorbicit溶液或explicit solecules中,这可能是困难的。在这项工作中,我们提出了HBM的方法论进步,既可以促进并扩展其适用性。高级版本既不需要能量校正,也不需要过量电子的“主动”部分的规范,而是在存在吸附物或显式溶剂分子时提供多功能且容易获得的方法。我们的PT(111),AU(111)和LI(100)金属电极中的计算DFT结果与(线性化的)Poisson-Boltzmann模型(PBM)相比,从具有先进HBM的模拟获得的界面充电特性中表现出了极好的一致性。

Computational studies of electrochemical interfaces based on density-functional theory (DFT) play an increasingly important role in present research on electrochemical processes for energy conversion and storage. The homogeneous background method (HBM) offers a straightforward approach to charge the electrochemical system within DFT simulations, but it typically requires the specification of the "active" fraction of excess electrons based on a certain choice of the electrode-electrolyte boundary location, which can be difficult in presence of electrode-surface adsorbates or explicit solvent molecules. In this work, we present a methodological advancement of the HBM, both facilitating and extending its applicability. The advanced version neither requires energy corrections nor the specification of the "active" fraction of excess electrons, providing a versatile and readily available method for the simulation of charged interfaces also when adsorbates or explicit solvent molecules are present. Our computational DFT results for Pt(111), Au(111) and Li(100) metal electrodes in high-dielectric-constant solvents demonstrate an excellent agreement in the interfacial charging characteristics obtained from simulations with the advanced HBM in comparison with the (linearized) Poisson-Boltzmann model (PBM).

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