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首页> 外文期刊>Molecular physics >Enhanced near-neighbour aggregation of dichloro- and trichloromethane in liquid methane solution from molecular dynamics simulation of radial site-site distribution functions: a simple predictor of solute-solvent compatibility
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Enhanced near-neighbour aggregation of dichloro- and trichloromethane in liquid methane solution from molecular dynamics simulation of radial site-site distribution functions: a simple predictor of solute-solvent compatibility

机译:通过径向站点-站点分布函数的分子动力学模拟,增强液态甲烷溶液中二氯甲烷和三氯甲烷的近邻聚集性:溶质与溶剂相容性的简单预测因子

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Molecular dynamics simulations have been performed for a range of equi-site and site-site radial distribution functions for the five-atom halomethane species dichloro-, trichloro-, and tetrachloromethane dissolved in the low-molecular weight hydrocarbons liquefied methane and cyclopropane, with the general aim of using this approach to predict good or bad solvent characteristics. It was found that methane solutions of dichloro- and trichloromethane showed an enhancement of near-neighbour occupancy, the methane solvent seemingly exhibiting a phobic, structure-promoting solvation behaviour towards the two solutes by increasing the number of nearest neighbours above the values that would result from a pure dilution effect caused by the solvent. It was verified that there were no significant regions of solid-like conformations nor remnants of imperfect average homogeneity within the system at the necessarily low temperature (183 K). On the other hand, simulated site-site radial functions with solvents tetrachloromethane and cyclopropane indicate normal solution characteristics towards solutes dichloro- and trichloromethane. The cause of the phobic solvation behaviour of solvent liquid methane towards di- and trichloromethane is not obvious, except that it seemingly involves the presence of hydrogen atoms on the solute species because the site-site centre-of-mass radial distribution functions of tetrachloromethane in liquid methane implied normal solution behaviour.
机译:已经对溶解在低分子量液化甲烷和环丙烷中的五原子卤代甲烷物种二氯,三氯和四氯甲烷的一系列等位和位点径向分布函数进行了分子动力学模拟,使用此方法预测溶剂特性好坏的总体目标。发现二氯和三氯甲烷的甲烷溶液显示出近邻占有率的提高,该甲烷溶剂似乎通过增加最接近的邻域的数量至高于所产生的值而表现出对两种溶质的疏水性,结构促进的溶剂化行为。由溶剂引起的纯稀释作用。已证实,在必要的低温(183 K)下,系统内没有明显的固体状构型区域,也不存在残差的平均均质性残渣。另一方面,用溶剂四氯甲烷和环丙烷模拟的点位径向函数表明了对溶质二氯甲烷和三氯甲烷的正常溶液特性。溶剂液体甲烷对二氯甲烷和三氯甲烷的疏水溶剂化行为的原因并不明显,除了它似乎涉及溶质物种上存在氢原子之外,因为四氯甲烷的位点-质点径向分布功能液态甲烷暗示正常溶液行为。

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