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通过分子动力学计算四元液体混合物的菲克扩散系数矩阵

Fick Diffusion Coefficient Matrix of a Quaternary Liquid Mixture by Molecular Dynamics.

作者信息

Guevara-Carrion Gabriela, Fingerhut Robin, Vrabec Jadran

机构信息

Thermodynamics and Process Engineering, Technical University Berlin, 10587 Berlin, Germany.

出版信息

J Phys Chem B. 2020 Jun 4;124(22):4527-4535. doi: 10.1021/acs.jpcb.0c01625. Epub 2020 Apr 6.

Abstract

For the first time, the Fick diffusion coefficient matrix of a quaternary liquid mixture is sampled consistently by means of molecular dynamics simulation. The required phenomenological diffusion coefficient and thermodynamic factor matrices of the mixture water + methanol + ethanol + 2-propanol are determined following the Green-Kubo formalism and Kirkwood-Buff theory. Further, a system size correction methodology for the Fick diffusion coefficient of multicomponent mixtures is proposed. Ten compositions are studied under ambient conditions and validated by analyzing the ternary limits of the quaternary Fick diffusion matrix. Because of complex intermolecular interactions due to the presence of hydrogen bonding, the elements of the Fick diffusion coefficient matrix exhibit a significant composition dependence. The magnitude of several cross coefficients indicates important coupling effects mainly affecting the diffusive flux of water. These effects are explained in the light of the structural information given by the radial distribution functions of the mixture. This work that solely rests on molecular dynamics simulation techniques to predict the Fick diffusion coefficient matrix of quaternary mixtures is expected to be a significant step forward for the understanding of multicomponent diffusion.

摘要

首次通过分子动力学模拟一致地采样了四元液体混合物的菲克扩散系数矩阵。按照格林 - 库博形式理论和柯克伍德 - 布夫理论确定了混合体系水 + 甲醇 + 乙醇 + 2 - 丙醇所需的唯象扩散系数和热力学因子矩阵。此外,还提出了一种针对多组分混合物菲克扩散系数的体系尺寸校正方法。在环境条件下研究了十种组成,并通过分析四元菲克扩散矩阵的三元极限进行了验证。由于氢键的存在导致分子间相互作用复杂,菲克扩散系数矩阵的元素表现出显著的组成依赖性。几个交叉系数的大小表明存在重要的耦合效应,主要影响水的扩散通量。根据混合物径向分布函数给出的结构信息对这些效应进行了解释。这项仅依靠分子动力学模拟技术来预测四元混合物菲克扩散系数矩阵的工作有望成为理解多组分扩散的重要一步。

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