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Ion association at discretely-charged dielectric interfaces: Giant charge inversion

机译:离散充电的电介质接口处:巨大电荷反转

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摘要

Giant charge reversal has been identified for the first time by Monte Carlo simulation for a discretely charged surface in contact with a trivalent electrolyte solution. It takes place regardless of the surface charge density under study and the monovalent salt. In stark contrast to earlier predictions based on the 2-dimensional Wigner crystal model to describe strong correlation of counterions at the macroion surface, we find that giant charge reversal reflects an intricate interplay of ionic volume effects, electrostatic correlations, surface charge heterogeneity, and the dielectric response of the confined fluids. While the novel phenomenon is yet to be confirmed with experiment, the simulation results appear in excellent agreement with a wide range of existing observations in the subregime of charge inversion. Our findings may have far-reaching implications to understanding complex electrochemical phenomena entailing ionic fluids under dielectric confinements. Published by AIP Publishing.
机译:巨电荷反转已被确定为在第一时间通过蒙特卡罗模拟中与三价电解质溶液接触的离散电荷的表面。这需要所研究的表面电荷密度和单价盐的地方不管。形成鲜明对比的基础上,2维的Wigner晶体模型来描述在macroion表面抗衡离子的强相关性先前的预测,我们发现,巨电荷反转反映的离子体积效应,静电的相关性,表面电荷异质性的复杂的相互作用,并且承压流体的介电响应。虽然新颖的现象有待与实验证实,模拟结果显示在具有宽范围中的电荷反转subregime现有观测的极好的一致性。我们的研究结果可能要理解复杂的电化学现象下电介质接产将会导致离子流体产生深远的影响。通过AIP发布发布。

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