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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Molecular Dynamics Study on Microheterogeneity and Preferential Solvation in Methanol/Chloroform Mixtures
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Molecular Dynamics Study on Microheterogeneity and Preferential Solvation in Methanol/Chloroform Mixtures

机译:甲醇/氯仿混合物中微异质性和优先溶剂化的分子动力学研究

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Molecular dynamics simulations have been used to study the structure and properties of methanol/chloroform mixtures with varying molecular fractions. The results of the simulations of the neat liquids have been validated by comparing the calculated radial distribution functions with those previously published. Experimental and calculated densities of the mixture at various molar ratios were in very good agreement. The analysis of radial distribution functions of the mixtures at different concentrations revealed clustering effects in the solvent mixture. To provide a more detailed insight into this phenomenon, local molecular fractions at varying distances are presented that clearly show these clustering effects. It was also demonstrated, that in such a mixture hydrophilic and hydrophobic parts of amphiphilic solutes are preferentially solvated by methanol or chloroform, respectively.
机译:分子动力学模拟已用于研究具有不同分子分数的甲醇/氯仿混合物的结构和性质。通过将计算出的径向分布函数与先前发布的函数进行比较,可以验证纯净液体的模拟结果。在各种摩尔比下混合物的实验和计算密度非常一致。对不同浓度混合物的径向分布函数的分析表明,溶剂混合物中存在聚集效应。为了提供对该现象的更详细的了解,提出了不同距离的局部分子部分,这些分子部分清楚地显示了这些聚集效应。还证明,在这种混合物中,两亲性溶质的亲水和疏水部分分别被甲醇或氯仿优先溶解。

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