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首页> 外文期刊>Physical review >Electronic Structure Calculations Of Liquid-solid Interfaces: Combination Of Density Functionalrntheory And Modified Poisson-boltzmann Theory
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Electronic Structure Calculations Of Liquid-solid Interfaces: Combination Of Density Functionalrntheory And Modified Poisson-boltzmann Theory

机译:液固界面电子结构计算:密度泛函理论和修正的泊松-玻尔兹曼理论的结合

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摘要

A robust and efficient computational method for electronic structure calculations of liquid-solid interfaces is presented. The theory employs the density functional theory and a modified Poisson-Boltzmann theory, combining them through a smooth dielectric model function. The free energy, including electrostatic and nonelec-trostatic interactions between solutes and the solvation medium, is formulated, and its first derivatives with atomic positions are presented. This methodology is applied to two different topics; one is the potential of zero charge (PZC) of Pt(111), and the other is a poisoning of active sites for the oxygen-reduction reaction (ORR) by interfacial water molecules on Pt(111). The results of the first topic show that induced charge redistributions caused by the adsorption of water molecules form a surface dipole moment that dominates the experimentally observed negative shift in the PZC when platinum is immersed in an aqueous electrolyte. The results of the second topic show the possibility of a decrease in the surface coverage of the first reaction precursor to the ORR due to site blocking by the adsorbed water molecules.
机译:提出了一种鲁棒高效的液固界面电子结构计算方法。该理论采用密度泛函理论和改进的Poisson-Boltzmann理论,通过平滑的介电模型函数将它们组合在一起。公式化了自由能,包括溶质和溶剂化介质之间的静电和非电子-静电相互作用,并给出了其具有原子位置的一阶导数。该方法论适用于两个不同的主题。一种是Pt(111)的零电荷(PZC)电位,另一种是Pt(111)上的界面水分子使氧还原反应(ORR)的活性部位中毒。第一个主题的结果表明,由水分子的吸附引起的感应电荷再分布会形成表面偶极矩,该偶极矩在将铂浸入水性电解质中时在实验中观察到的PZC负位移起主导作用。第二个主题的结果表明,由于吸附水分子的位阻,第一反应前体对ORR的表面覆盖率可能降低。

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