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聚电解质在具有形貌图案化表面上吸附的布朗动力学模拟

Brownian dynamics simulations of polyelectrolyte adsorption onto topographically patterned surfaces.

作者信息

Hoda Nazish, Kumar Satish

机构信息

Department of Chemical Engineering and Materials Science, University of Minnesota, Minneapolis, Minnesota 55455, USA.

出版信息

Langmuir. 2007 Nov 6;23(23):11747-60. doi: 10.1021/la701356a. Epub 2007 Oct 13.

Abstract

The effect of patterned surface topography on the adsorption of single polyelectrolyte molecules is explored using Brownian dynamics simulations. The polyelectrolyte is modeled as a free-draining, freely jointed bead-rod chain, and electrostatic interactions are incorporated using a screened Coulombic potential with excluded volume interactions accounted for by the repulsive part of a Lennard-Jones potential. Topography consisting of periodically spaced valleys of square cross section separated by flat hills is considered. Chain conformations are characterized for a wide range of valley widths, depths, and spacings as well as for several different types of surface charge distributions. Depending on the parameter values describing the topography, the chains are found to adopt conformations ranging from flat and extended to those associated with bridge-, brush-, or semi-bridge-like structures. The formation of these structures is rationalized on the basis of a free-energy model that takes into account the increase in free energy due to entropic confinement, excluded volume interactions, and chain stretching as well as the decrease in free energy due to bead-surface electrostatic attraction. The results of this work are expected to be useful in designing patterned surface topography to control the conformations of adsorbed polyelectrolyte molecules.

摘要

利用布朗动力学模拟研究了图案化表面形貌对单个聚电解质分子吸附的影响。聚电解质被建模为自由排水、自由连接的珠-杆链,并使用屏蔽库仑势纳入静电相互作用,同时通过 Lennard-Jones 势的排斥部分考虑了排除体积相互作用。考虑了由方形横截面的周期性间隔谷和扁平山丘隔开的形貌。针对广泛的谷宽、深度和间距以及几种不同类型的表面电荷分布,对链构象进行了表征。根据描述形貌的参数值,发现链会采用从扁平伸展到与桥状、刷状或半桥状结构相关的构象。这些结构的形成基于一个自由能模型得到合理解释,该模型考虑了由于熵限制、排除体积相互作用和链拉伸导致的自由能增加,以及由于珠子与表面静电吸引导致的自由能降低。预计这项工作的结果将有助于设计图案化表面形貌以控制吸附的聚电解质分子的构象。

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