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使用相对熵优化的局部密度势的液-液相平衡可转移粗粒度模型。

Transferable Coarse-Grained Models of Liquid-Liquid Equilibrium Using Local Density Potentials Optimized with the Relative Entropy.

机构信息

Department of Chemical Engineering , University of California, Santa Barbara , Santa Barbara , California , United States.

出版信息

J Phys Chem B. 2018 May 31;122(21):5678-5693. doi: 10.1021/acs.jpcb.7b12446. Epub 2018 Mar 2.

Abstract

Bottom-up coarse-grained (CG) models are now regularly pursued to enable large length and time scale molecular simulations of complex, often macromolecular systems. However, predicting fluid phase equilibria using such models remains fundamentally challenging. A major problem stems from the typically low transferability of CG models beyond the densities and/or compositions at which they are parametrized, which is necessary if they are to describe distinct structural and thermodynamic properties unique to each phase. CG model transferability is compounded by the representation of the inherently multibody coarse interactions using pair potentials that neglect higher order effects. Here, we propose to construct transferable single site CG models of liquid mixtures by supplementing traditional CG pair interactions with local density potentials, which constitute a computationally inexpensive mean-field approach to describe many-body effects, in that site energies are modulated by the local solution environment. To illustrate the approach, we use intra- and interspecies local density potentials to develop CG models of benzene-water solutions that show impressive transferability in structural metrics (pair correlation functions, density profiles) throughout composition space, in contrast to pair-only CG representations. While further refinement may be necessary to represent more complex thermodynamic properties, like the liquid-liquid interfacial tension, the generality and improvement offered by the local density approach are highly encouraging for enabling complex phase equilibrium modeling using CG models.

摘要

自下而上的粗粒化(CG)模型现在被广泛应用于复杂的、通常是大分子体系的长程和大时间尺度的分子模拟。然而,使用这种模型来预测流体相平衡仍然具有挑战性。一个主要的问题源于 CG 模型的转移能力通常较低,无法超越其参数化的密度和/或组成范围,如果要描述每个相独特的结构和热力学性质,则需要进行转移。CG 模型的转移能力受到使用忽略高阶效应的对势表示的内在多体粗相互作用的影响。在这里,我们通过在传统 CG 对相互作用中补充局部密度势来构建可转移的单站点 CG 混合物模型,这构成了一种计算上廉价的方法来描述多体效应,即通过局部溶液环境来调制位能。为了说明该方法,我们使用同种和异种的局部密度势来开发苯-水混合物的 CG 模型,这些模型在整个组成范围内的结构度量(对关联函数、密度分布)上显示出令人印象深刻的转移能力,与仅使用对相互作用的 CG 表示形成对比。虽然可能需要进一步的细化来表示更复杂的热力学性质,如液-液界面张力,但局部密度方法提供的通用性和改进对于使用 CG 模型进行复杂的相平衡建模非常有希望。

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