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Competitive Adsorption and Ordered Packing of Counterions near Highly Charged Surfaces: From Mean-Field Theory to Monte Carlo Simulations

机译:竞争吸附和反离子的有序填料附近高电荷的表面:从平均场理论蒙特卡罗模拟法

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摘要

Competitive adsorption of counterions of multiple species to charged surfaces is studied by a size-effect included mean-field theory and Monte Carlo (MC) simulations. The mean-field electrostatic free-energy functional of ionic concentrations, constrained by Poisson’s equation, is numerically minimized by an augmented Lagrangian multiplier method. Unrestricted primitive models and canonical ensemble MC simulations with the Metropolis criterion are used to predict the ionic distributions around a charged surface. It is found that, for a low surface charge density, the adsorption of ions with a higher valence is preferable, agreeing with existing studies. For a highly charged surface, both of the mean-field theory and MC simulations demonstrate that the counterions bind tightly around the charged surface, resulting in a stratification of counterions of different species. The competition between mixed entropy and electrostatic energetics leads to a compromise that the ionic species with a higher valence-to-volume ratio has a larger probability to form the first layer of stratification. In particular, the MC simulations confirm the crucial role of ionic valence-to-volume ratios in the competitive adsorption to charged surfaces that had been previously predicted by the mean-field theory. The charge inversion for ionic systems with salt is predicted by the MC simulations but not by the mean-field theory. This work provides a better understanding of competitive adsorption of counterions to charged surfaces and calls for further studies on the ionic size effect with application to large-scale biomolecular modeling.
机译:通过包括尺寸效应的尺寸效应和蒙特卡罗(MC)模拟,研究了多种物种对抗对带状表面的竞争吸附。由泊松等式限制的离子浓度的平均静电自由能功能通过增强拉格朗日乘法器方法数量最小化。具有大都会标准的不受限制的原始模型和规范集合MC模拟用于预测带电表面周围的离子分布。结果发现,对于低表面电荷密度,优选具有更高效果的离子的吸附,同意现有的研究。对于高电压的表面,两个平均场理论和MC模拟都表明抗衡离子紧密束缚在带电表面周围,导致不同物种的反逆分。混合熵和静电能量之间的竞争导致妥协,使得具有更高的价量比的离子物质具有更大的概率来形成第一层分层。特别地,MC仿真确保了离子价对体积比在竞争吸附到先前被平均场理论预测的带电表面中的关键作用。 MC仿真预测了具有盐的离子系统的电荷转化,而是由平均场理论预测。这项工作更好地了解对带电表面的竞争吸附,并呼吁进一步研究离子尺寸效应与大规模生物分子建模。

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