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Osmotic and diffusio-osmotic flow generation at high solute concentration. II. Molecular dynamics simulations

机译:高溶质浓度下的渗透和扩散 - 渗透流动。 在。 分子动力学模拟

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In this paper, we explore osmotic transport by means of molecular dynamics (MD) simulations. We first consider osmosis through a membrane and investigate the reflection coefficient of an imperfectly semi-permeable membrane, in the dilute and high concentration regimes. We then explore the diffusioosmotic flow of a solute-solvent fluid adjacent to a solid surface, driven by a chemical potential gradient parallel to the surface. We propose a novel non-equilibrium MD (NEMD) methodology to simulate diffusio-osmosis, by imposing an external force on every particle, which properly mimics the chemical potential gradient on the solute in spite of the periodic boundary conditions. This NEMD method is validated theoretically on the basis of linear-response theory by matching the mobility with their Green-Kubo expressions. Finally, we apply the framework to more realistic systems, namely, a water-ethanol mixture in contact with a silica or a graphene surface. Published by AIP Publishing.
机译:在本文中,我们通过分子动力学(MD)模拟探索渗透输送。 我们首先考虑通过膜的渗透,并研究稀释和高浓度制度的不完全半透膜的反射系数。 然后,我们探讨了与固体表面相邻的溶质溶剂流体的扩散流动,由平行于表面的化学电位梯度驱动。 我们提出了一种新的非平衡MD(NEMD)方法来模拟扩散渗透,通过对每个颗粒施加外力,这在尽管定期边界条件,适当地模仿溶质上的化学潜在梯度。 通过将流动性与其绿色kubo表达式匹配,理论上是基于线性响应理论理论上验证的。 最后,我们将框架应用于更现实的系统,即与二氧化硅或石墨烯表面接触的水 - 乙醇混合物。 通过AIP发布发布。

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