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Solvation of solvophilic and solvophobic ions in dimethyl sulfoxide: microscopic structure by molecular dynamics simulations

机译:二甲基亚砜中的亲溶剂和疏溶剂离子的溶剂化:微观结构的分子动力学模拟

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Molecular dynamics (MD) simulations of dimethyl sulfoxide (DMSO) solutions of Li+, Me4N+, BPh4-, big spherical ions of the same size but different charge, such as S+, S-, S-0 have been performed at 298 K in NVT ensembles by using a four-interacting-sites model of DMSO and reaction field method for Coulombic interactions. Similar simulations were also performed on neat DMSO in which one DMSO molecule acted as a solute. The microscopic structures of ion-solvation shells have been analysed by employing a concept of co-ordination centres and characteristic vectors of the solvent molecule. Results are given for the atom atom and ion atom radial distribution functions (RDFs), orientation of the DMSO molecules and their geometrical arrangements in the first solvation shells of the ions. For the solvophilic Li+, a highly symmetric and well-pronounced first solvation shell (FSS) with fixed co-ordination number is observed. The co-ordination number and geometry of the FSS of lithium ion is strongly defined by the short-range non-Coulombic interactions between the ion and the surrounding DMSO molecules. The results show the importance of charge distribution in the solvent molecule and consequently the sign of ionic charge in creating local order around the solvated ion. It is found that the DMSO solvates S+ better than S-, which is better solvated than S-0. The 'solvophobic' nature of the big multiatomic ions in non-aqueous media creates the possibility of the solvent molecules penetrating into the solute that is typically observed from our simulations not only for the charged species like Me4N+ and BPh4-, but also for the neutral solute represented by the DMSO molecule in neat DMSO. [References: 30]
机译:LiT,Me4N +,BPh4-,大小相同但电荷不同的大球形离子(例如S +,S-,S-0)的二甲基亚砜(DMSO)溶液的分子动力学(MD)模拟已在NVT中于298 K进行通过使用DMSO的四个交互位点模型和库仑相互作用的反应场方法进行集成。在纯DMSO上也进行了类似的模拟,其中一个DMSO分子充当了溶质。通过采用配位中心和溶剂分子特征向量的概念对离子溶剂化壳的微观结构进行了分析。给出了原子第一原子溶剂化壳中原子原子和离子原子的径向分布函数(RDF),DMSO分子的取向及其几何排列的结果。对于具有亲溶剂性的Li +,观察到具有固定配位数的高度对称且发音清晰的第一溶剂化壳(FSS)。锂离子FSS的配位数和几何形状由离子与周围DMSO分子之间的短程非库伦相互作用强烈定义。结果表明,溶剂分子中电荷分布的重要性以及因此在围绕溶剂化离子产生局部有序性方面离子电荷的迹象。发现DMSO比S-更好地溶解了S +,后者比S-0更好地溶解了。在非水介质中,大的多原子离子的“疏溶剂”性质造成了溶剂分子渗入溶质的可能性,这不仅可以从我们的模拟中观察到,不仅对于像Me4N +和BPh4-这样的带电物质,而且对于中性纯DMSO中以DMSO分子表示的溶质。 [参考:30]

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