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首页> 外文期刊>The Journal of Chemical Physics >Charge neutrality breakdown in confined aqueous electrolytes: Theory and simulation
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Charge neutrality breakdown in confined aqueous electrolytes: Theory and simulation

机译:密闭水性电解质中的电荷中和击穿:理论与模拟

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We study, using Density Functional theory (DFT) and Monte Carlo simulations, aqueous electrolyte solutions between charged infinite planar surfaces, in contact with a bulk salt reservoir. In agreement with recent experimental observations [Z. Luo et al., Nat. Commun. 6, 6358 (2015)], we find that the confined electrolyte lacks local charge neutrality. We show that a DFT based on a bulk-HNC expansion properly accounts for strong electrostatic correlations and allows us to accurately calculate the ionic density profiles between the charged surfaces, even for electrolytes containing trivalent counterions. The DFT allows us to explore the degree of local charge neutrality violation, as a function of plate separation and bulk electrolyte concentration, and to accurately calculate the interaction force between the charged surfaces. Published by AIP Publishing.
机译:我们使用密度泛函理论(DFT)和蒙特卡洛模拟研究了带电荷的无限平面之间的电解质水溶液,该溶液与大量盐储层接触。与最近的实验观察一致[Z. Luo等,Nat。社区6,6358(2015)],我们发现受限电解质缺乏局部电荷中性。我们表明,基于本体HNC膨胀的DFT适当地说明了强的静电相关性,并允许我们精确地计算带电表面之间的离子密度分布,即使对于包含三价抗衡离子的电解质也是如此。 DFT使我们能够探索局部电荷中和违规的程度(取决于极板分离和整体电解质浓度的函数),并准确计算带电表面之间的相互作用力。由AIP Publishing发布。

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