Grupo de Nanomateriais e Materia Branda, Departamento de Física da Materia Condensada, Universidade de Santiago de Compostela, Campus Vida s/n E-15782, Santiago de Compostela, Spain.
J Phys Chem B. 2012 May 24;116(20):5941-50. doi: 10.1021/jp301309s. Epub 2012 May 15.
In this work, we used molecular dynamics simulations to analyze in detail the spatial distributions of the different constituents in mixtures of 1-butyl-3-methylimidazolium tetrafluoroborate with three polar molecular species: water and two alcohols of different chain lengths (methanol and ethanol). In particular, we report results regarding the influence of the chosen species and its concentration on the formation of ionic and molecular clusters over the whole miscibility range, as well as on the angular distribution of polar molecules around the anion and the cation in these systems. Both analyses showed that addition of a molecular species breaks down the polar network of the pure ionic liquid in clusters whose mean size decreases progressively as more molecules are added. At very high concentrations of the molecular species, the ions are found to be isolated in mixtures with water and methanol, but they tend to form pairs in ethanol. In mixtures with water we identified large clusters that form a water network at very high water concentrations, while at low water concentrations polar molecules tend to form smaller aggregates. In contrast, in mixtures with alkanols there is no evidence of the formation of large alcohol clusters at any concentration. Spatial order in alcohol was also studied by means of the Kirkwood G factor, reaching the conclusion that the angular correlations which appear in pure alcohols due to dipole interactions are destroyed by the ionic liquid, even when present only in tiny amounts.
在这项工作中,我们使用分子动力学模拟详细分析了 1-丁基-3-甲基咪唑四氟硼酸盐与三种极性分子物质(水和两种不同链长的醇:甲醇和乙醇)混合物中不同成分的空间分布。特别是,我们报告了关于所选物质及其浓度对在整个互溶性范围内形成离子和分子簇以及对这些系统中阴离子和阳离子周围极性分子的角分布的影响的结果。这两种分析都表明,加入一种分子物质会破坏纯离子液体在其簇中的极性网络,随着添加的分子数量的增加,这些簇的平均尺寸逐渐减小。在分子物质的浓度非常高时,发现离子在与水和甲醇的混合物中被隔离,但在乙醇中它们倾向于形成对。在与水的混合物中,我们确定了在非常高的水浓度下形成水网络的大簇,而在低水浓度下,极性分子倾向于形成较小的聚集体。相比之下,在与烷醇的混合物中,在任何浓度下都没有形成大的醇簇的证据。通过 Kirkwood G 因子也研究了醇的空间有序性,得出的结论是,由于偶极相互作用而在纯醇中出现的角相关在离子液体的存在下被破坏,即使离子液体的存在量很小。