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Modeling electrochemical reactions at the solid-liquid interface using density functional calculations

机译:使用密度函数计算建模在固液界面处的电化学反应

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Charged interfaces are physical phenomena found in various natural systems and artificial devices within the fields of biology, chemistry and physics. In electrochemistry, this is known as the electrochemical double layer, introduced by Helmholtz over 150 years ago. At this interface, between a solid surface and the electrolyte, chemical reactions can take place in a strong electric field. In this presentation, a new computational method is introduced for creating charged interfaces and to study charge transfer reactions on the basis of periodic DFT calculations. The electrochemical double layer is taken as an example, in particular the hydrogen electrode. With this method the mechanism of forming hydrogen gas is studied. The method is quite general and could be applied to a wide variety of atomic scale transitions at charged interfaces.
机译:带电界面是在生物学,化学和物理领域的各种天然系统和人工设备中发现的物理现象。在电化学中,这被称为电化学双层,由Helmholtz引入150年前。在该界面处,在固体表面和电解质之间,化学反应可以在强电场中进行。在本介绍中,引入了一种新的计算方法,用于创建带电接口,并基于周期性DFT计算研究电荷转移反应。电化学双层作为示例,特别是氢电极。利用这种方法,研究了形成氢气的机制。该方法非常一般,可以应用于充电接口的各种原子尺度转换。

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