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Joint density functional theory of the electrode-electrolyte interface: Application to fixed electrode potentials, interfacial capacitances, and potentials of zero charge

机译:电极-电解质界面的联合密度泛函理论:在固定电极电势,界面电容和零电荷电势中的应用

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This work explores the use of joint density functional theory, an extension of density functional theory for the ab initio description of electronic systems in thermodynamic equilibrium with a liquid environment, to describe electrochemical systems. After reviewing the physics of the underlying fundamental electrochemical concepts, we identify the mapping between commonly measured electrochemical observables and microscopically computable quantities within an, in principle, exact theoretical framework. We then introduce a simple, computationally efficient approximate functional which we find to be quite successful in capturing a priori basic electrochemical phenomena, including the capacitive Stern and diffusive Gouy-Chapman regions in the electrochemical double layer, quantitative values for interfacial capacitance, and electrochemical potentials of zero charge for a series of metals. We explore surface charging with applied potential and are able to place our ab initio results directly on the scale associated with the standard hydrogen electrode (SHE). Finally, we provide explicit details for implementation within standard density functional theory software packages at negligible computational cost over standard calculations carried out within vacuum environments.
机译:这项工作探索了联合密度泛函理论的使用,它是密度泛函理论的扩展,用于从液态环境中进行热力学平衡的电子系统从头开始描述,以描述电化学系统。在回顾了基础电化学基本概念的物理原理之后,我们确定了在原则上精确的理论框架内,通常测量的电化学可观察物与微观可计算量之间的映射。然后,我们介绍一个简单的,计算效率高的近似函数,我们发现该函数非常成功地捕获了先验的基本电化学现象,包括电化学双层中的电容性Stern和扩散Gouy-Chapman区域,界面电容的定量值和电化学势一系列金属的零电荷。我们探索具有施加电势的表面充电,并且能够将我们的从头计算结果直接放在与标准氢电极(SHE)相关的规模上。最后,相对于在真空环境中进行的标准计算,我们以可忽略的计算成本提供了在标准密度泛函理论软件包中实施的明确细节。

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