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基于聚电解质溶液介导的表面间振荡相互作用的起源。

On the origin of oscillatory interactions between surfaces mediated by polyelectrolyte solution.

机构信息

Division of Chemistry and Chemical Engineering, California Institute of Technology, Pasadena, California 91125, USA.

Research and Development, The Dow Chemical Company, Midland, Michigan 48674, USA.

出版信息

J Chem Phys. 2019 Dec 7;151(21):214901. doi: 10.1063/1.5123172.

Abstract

We use a numerical implementation of polymer classical density functional theory with an incompressibility condition to study the system consisting of nonadsorbing polyelectrolytes confined by two planar surfaces and quantify the effective interaction between the two planar surfaces as a function of the polyelectrolyte and salt concentrations. Our results indicate that for the uncharged surfaces (and weakly charged surfaces), the effective interaction primarily consists of a short-range attraction due to the depletion followed by repulsion due to the electric double layer overlapping and electrostatic correlations. For salt-free and low salt concentration systems, the magnitude of the repulsion barrier is determined by the overlap between the electric double layers, while at relatively high salt concentrations, the magnitude of the repulsion barrier is determined by the electrostatic correlations. Due to the competition between the electric double layer and the electrostatic correlations, the magnitude of the repulsion barrier varies nonmonotonically. In contrast, a mean-field Poisson-Boltzmann treatment of the electrostatics predicts a monotonically decreasing repulsion barrier with increasing salt concentration. At moderate salt concentrations, our theory predicts oscillatory interaction profiles. A comparison with the mean-field Poisson-Boltzmann treatment of electrostatics suggests that the oscillations are due primarily to electrostatic correlations.

摘要

我们使用聚合物经典密度泛函理论的数值实现和不可压缩条件来研究由两个平面表面限制的非吸附聚合物电解质组成的系统,并将两个平面表面之间的有效相互作用量化为聚合物和盐浓度的函数。我们的结果表明,对于不带电的表面(和弱带电的表面),有效相互作用主要由由于耗尽引起的短程吸引力组成,然后由电双层重叠和静电相关引起的排斥力组成。对于无盐和低盐浓度系统,排斥势垒的大小由电双层的重叠决定,而在相对较高的盐浓度下,排斥势垒的大小由静电相关决定。由于电双层和静电相关之间的竞争,排斥势垒的大小呈非单调变化。相比之下,静电的平均场泊松-玻尔兹曼处理预测随着盐浓度的增加排斥势垒单调减小。在中等盐浓度下,我们的理论预测出了振荡相互作用的轮廓。与静电的平均场泊松-玻尔兹曼处理的比较表明,这些振荡主要是由于静电相关。

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