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带电可极化粒子间屏蔽多体静电相互作用的理论分析。

Theoretical analysis of screened many-body electrostatic interactions between charged polarizable particles.

机构信息

Aachen Institute for Advanced Study in Computational Engineering Science (AICES), RWTH Aachen University, Schinkelstr. 2, 52062 Aachen, Germany.

Shenzhen International Center for Mathematics, and Department of Mathematics, Southern University of Science and Technology, Shenzhen, China.

出版信息

J Chem Phys. 2019 Jan 28;150(4):044901. doi: 10.1063/1.5079515.

Abstract

This paper builds on two previous studies [Lindgren et al., J. Comput. Phys. 371, 712 (2018) and Quan et al., "A domain decomposition method for the Poisson-Boltzmann solvation models," SIAM J. Sci. Comput. (to be published); e-print arXiv:1807.05384] to devise a new method to solve the problem of calculating electrostatic interactions in a system composed by many dielectric particles, embedded in a homogeneous dielectric medium, which in turn can also be permeated by charge carriers. The system is defined by the charge, size, position, and dielectric constant of each particle, as well as the dielectric constant and the Debye length of the medium. The effects of taking into account the dielectric nature of the particles are explored in selected scenarios where the presence of electrolytes in the medium can significantly influence the total undergoing interactions. The description of the mutual interactions between all particles in the system as being truly of many-body nature reveals how such effects can effectively influence the magnitudes and even directions of the resulting forces, especially those acting on particles that have a null net charge. Particular attention is given to a situation that can be related to colloidal particles in an electrolyte solution, where it is shown that polarization effects alone can substantially raise or lower-depending on the dielectric contrast between the particles and the medium-the energy barrier that divides particle coagulation and flocculation regions, when an interplay between electrostatic and additional van der Waals forces is considered. Overall, the results suggest that for an accurate description of the type of system in question, it is essential to consider particle polarization if the separation between the interacting particles are comparable to or smaller than the Debye length of the medium.

摘要

本文基于之前的两项研究[Lindgren 等人,J. Comput. Phys. 371, 712 (2018) 和 Quan 等人,“用于泊松-玻尔兹曼溶剂化模型的区域分解方法”,SIAM J. Sci. Comput. (即将出版);预印本 arXiv:1807.05384],设计了一种新方法来解决由许多介电粒子组成的系统中静电相互作用的计算问题,这些粒子嵌入在均匀介电介质中,而介质中又可以渗透电荷载流子。该系统由每个粒子的电荷、大小、位置和介电常数以及介质的介电常数和德拜长度来定义。在考虑到介质介电性质的某些情况下,探索了这些性质的影响,其中介质中电解质的存在会显著影响总相互作用。系统中所有粒子之间相互作用的描述被认为是真正的多体性质,揭示了这些效应如何有效地影响产生的力的大小甚至方向,特别是对那些具有零净电荷的粒子的力。特别关注可以与电解质溶液中的胶体粒子相关的情况,结果表明,仅极化效应就可以根据粒子和介质之间的介电对比度,大大提高或降低——当考虑静电和额外范德华力之间的相互作用时,将划分粒子凝聚和絮凝区域的能量势垒。总的来说,结果表明,如果相互作用粒子之间的距离与介质的德拜长度相当或小于德拜长度,则为了准确描述所讨论的系统类型,必须考虑粒子极化。

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