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Interplay of structure and diffusion in ternary liquid mixtures of benzene plus acetone plus varying alcohols

机译:苯甲酮加上不同醇的三元液体混合物中结构和扩散的相互作用

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The Fick diffusion coefficient matrix of ternary mixtures containing benzene + acetone + three different alcohols, i.e., methanol, ethanol, and 2-propanol, is studied by molecular dynamics simulation and Taylor dispersion experiments. Aiming to identify common features of these mixtures, it is found that one of the main diffusion coefficients and the smaller eigenvalue do not depend on the type of alcohol along the studied composition path. Two mechanisms that are responsible for this invariant behavior are discussed in detail, i.e., the interplay between kinetic and thermodynamic contributions to Fick diffusion coefficients and the presence of microscopic heterogeneities caused by hydrogen bonding. Experimental work alone cannot explain these mechanisms, while present simulations on the molecular level indicate structural changes and uniform intermolecular interactions between benzene and acetone molecules in the three ternary mixtures. The main diffusion coefficients of these ternary mixtures exhibit similarities with their binary subsystems. Analyses of radial distribution functions and hydrogen bonding statistics quantitatively evidence alcohol self-association and cluster formation, as well as component segregation. Furthermore, the excess volume of the mixtures is analyzed in the light of intermolecular interactions, further demonstrating the benefits of the simultaneous use of experiment and simulation. The proposed framework for studying diffusion coefficients of a set of ternary mixtures, where only one component varies, opens the way for further investigations and a better understanding of multicomponent diffusion. The presented numerical results may also give an impulse to the development of predictive approaches for multicomponent diffusion. Published by AIP Publishing.
机译:含有三元混合物的菲克扩散系数矩阵苯丙酮+ +三种不同的醇,即,甲醇,乙醇,和2-丙醇,是通过分子动力学模拟和泰勒分散实验研究。目的是查明这些混合物的共同的特征,它被发现的主要扩散系数中的一个,而较小的特征值不依赖于醇的沿着所研究的组合物路径的类型。两种机制,它们负责该不变量行为进行了详细讨论,即,菲克扩散系数动力学和热力学贡献和微观非均质的存在之间的相互作用引起的氢键键合。单独的实验工作无法解释这些机制,而在分子水平上存在模拟表明结构变化和三个三元混合物苯和丙酮分子之间的均匀的分子间相互作用。这些三元混合物的主要扩散系数表现出与它们的二元子系统相似之处。的径向分布函数和氢键统计定量证据醇的自缔合和簇形成,以及成分偏析分析。此外,混合物的过量体积中的分子间相互作用的光进行分析,进一步证明了同时使用实验和模拟的好处。拟议的框架研究一套三元混合物,其中只有一个分量变化,打开了进一步调查的方式,更好地理解多元扩散的扩散系数。所提出的数值结果也可能会给出一个冲动的多组分扩散预测方法的发展。通过AIP发布发布。

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