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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Molecular Dynamics Simulation Study on Adsorption and Diffusion Processes of a Hydrophilic Chain on a Hydrophobic Surface
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Molecular Dynamics Simulation Study on Adsorption and Diffusion Processes of a Hydrophilic Chain on a Hydrophobic Surface

机译:疏水表面上亲水链吸附扩散过程的分子动力学模拟研究

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摘要

Molecular dynamics simulations are applied to investigate the adsorption and diffusion processes of a single hydrophilic poly(vinyl alcohol)(PVA)chain with different chain lengths on a hydrophobic graphite surface.It is expected that the chain and the surface "dislike" each other because one is hydrophilic and the other is hydrophobic.But surprisingly,a short PVA chain is well adsorbed on the surface,accompanied by large changes in the chain configuration.With increasing degree of polymerization(N),the chain turns gradually from two-dimensional adsorption to possessing certain height in the direction perpendicular to the surface.Moreover,the adsorption energy increases and the diffusion coefficient decreases with increasing N.In particular,for N = 20 in equilibrium,the hydroxyls of this short chain are close to the graphite surface in the stable adsorption configuration.In addition,we change the effective dielectric constant to 76.0 to mimic good solvent condition.The chain configurations and the diffusion coefficients both vary in contrast to the foregoing results.
机译:应用分子动力学模拟研究了具有不同链长的单个亲水性聚乙烯醇(PVA)链在疏水性石墨表面上的吸附和扩散过程。预计该链和表面彼此“不相似”是因为令人惊讶的是,一条短的PVA链在表面上很好地吸附,并伴随着链构型的巨大变化。随着聚合度(N)的增加,链从二维吸附逐渐转向在垂直于表面的方向上具有一定的高度。此外,随着N的增加,吸附能增加,扩散系数减小。特别是当N = 20时,该短链的羟基接近于石墨表面。稳定的吸附构型。此外,我们将有效介电常数更改为76.0以模仿良好的溶剂条件。与前述结果相比,开孔和扩散系数均变化。

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