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聚电解质吸附的分子动力学模拟

Molecular dynamics simulations of polyelectrolyte adsorption.

作者信息

Carrillo Jan-Michael Y, Dobrynin Andrey V

机构信息

Polymer Program, Institute of Materials Science and Department of Physics, University of Connecticut, Storrs, CT 06269, USA.

出版信息

Langmuir. 2007 Feb 27;23(5):2472-82. doi: 10.1021/la063079f. Epub 2007 Jan 30.

Abstract

We have performed molecular dynamics simulations of polyelectrolyte adsorption at oppositely charged surfaces from dilute polyelectrolyte solutions. In our simulations, polyelectrolytes were modeled by chains of charged Lennard-Jones particles with explicit counterions. We have studied the effects of the surface charge density, surface charge distribution, solvent quality for the polymer backbone, strength of the short-range interactions between polymers and substrates on the polymer surface coverage, and the thickness of the adsorbed layer. The polymer surface coverage monotonically increases with increasing surface charge density for almost all studied systems except for the system of hydrophilic polyelectrolytes adsorbing at hydrophilic surfaces. In this case the polymer surface coverage saturates at high surface charge densities. This is due to additional monomer-monomer repulsion between adsorbed polymer chains, which becomes important in dense polymeric layers. These interactions also preclude surface overcharging by hydrophilic polyelectrolytes at high surface charge densities. The thickness of the adsorbed layer shows monotonic dependence on the surface charge density for the systems of hydrophobic polyelectrolytes for both hydrophobic and hydrophilic surfaces. Thickness is a decreasing function of the surface charge density in the case of hydrophilic surfaces while it increases with the surface charge density for hydrophobic substrates. Qualitatively different behavior is observed for the thickness of the adsorbed layer of hydrophilic polyelectrolytes at hydrophilic surfaces. In this case, thickness first decreases with increasing surface charge density, then it begins to increase.

摘要

我们对稀聚电解质溶液中聚电解质在带相反电荷表面的吸附进行了分子动力学模拟。在我们的模拟中,聚电解质由带有明确抗衡离子的带电 Lennard-Jones 粒子链建模。我们研究了表面电荷密度、表面电荷分布、聚合物主链的溶剂质量、聚合物与底物之间短程相互作用的强度对聚合物表面覆盖率和吸附层厚度的影响。除了亲水性聚电解质在亲水性表面吸附的体系外,几乎所有研究体系中,聚合物表面覆盖率都随表面电荷密度的增加而单调增加。在这种情况下,聚合物表面覆盖率在高表面电荷密度下会饱和。这是由于吸附的聚合物链之间存在额外的单体 - 单体排斥作用,在致密的聚合物层中这种作用变得很重要。这些相互作用还阻止了亲水性聚电解质在高表面电荷密度下使表面过度带电。对于疏水性聚电解质在疏水性和亲水性表面的体系,吸附层厚度对表面电荷密度呈现单调依赖性。在亲水性表面的情况下,厚度是表面电荷密度的递减函数,而对于疏水性底物,厚度随表面电荷密度增加。对于亲水性聚电解质在亲水性表面的吸附层厚度,观察到定性不同的行为。在这种情况下,厚度首先随表面电荷密度增加而减小,然后开始增加。

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