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冷甲醇水溶液混合物的微观结构。

The microscopic structure of cold aqueous methanol mixtures.

作者信息

Požar Martina, Kerasidou Ariadni, Lovrinčević Bernarda, Zoranić Larisa, Mijaković Marijana, Primorac Tomislav, Sokolić Franjo, Teboul Victor, Perera Aurélien

机构信息

Laboratoire de Physique Théorique de la Matière Condensée (UMR CNRS 7600),Université Pierre et Marie Curie, 4 Place Jussieu, F75252 Paris cedex 05, France.

Département de Physique de l'Université d'Angers, 2 Bd Lavoisier, 49045 Angers, France.

出版信息

J Chem Phys. 2016 Oct 14;145(14):144502. doi: 10.1063/1.4964487.

Abstract

The evolution of the micro-segregated structure of aqueous methanol mixtures, in the temperature range 300 K-120 K, is studied with computer simulations, from the static structural point of view. The structural heterogeneity of water is reinforced at lower temperatures, as witnessed by a pre-peak in the oxygen-oxygen structure factor. Water tends to form predominantly chain-like clusters at lower temperatures and smaller concentrations. Methanol domains have essentially the same chain-like cluster structure as the pure liquid at high concentrations and becomes monomeric at smaller ones. Concentration fluctuations decrease with temperature, leading to quasi-ideal Kirkwood-Buff integrals, despite the enhanced molecular interactions, which we interpret as the signature of non-interacting segregated water and methanol clusters. This study throws a new light on the nature of the micro-heterogeneous structure of this mixture: the domain segregation is essentially based on the appearance of linear water clusters, unlike other alcohol aqueous mixtures, such as with propanol or butanol, where the water domains are more bulky.

摘要

从静态结构的角度出发,利用计算机模拟研究了甲醇水溶液混合物在300 K至120 K温度范围内微相分离结构的演变。水的结构非均一性在较低温度下增强,这在氧-氧结构因子的预峰中得到体现。在较低温度和较小浓度下,水倾向于主要形成链状簇。在高浓度下,甲醇域具有与纯液体基本相同的链状簇结构,而在较小浓度下则变为单体形式。尽管分子间相互作用增强,但浓度涨落随温度降低,导致准理想的柯克伍德-布夫积分,我们将其解释为非相互作用的分离水和甲醇簇的特征。这项研究为该混合物的微观非均相结构的本质提供了新的见解:与其他醇水溶液混合物(如与丙醇或丁醇的混合物,其中水域更大)不同,域分离主要基于线性水簇的出现。

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