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二甲基亚砜-水混合体系中丁基甲基咪唑鎓氯化物离子对的离子配对与选择性溶剂化:基于分子动力学模拟和平均力势分析的综合考察

Ionic Pairing and Selective Solvation of Butylmethylimidazolium Chloride Ion Pairs in DMSO-Water Mixtures: A Comprehensive Examination via Molecular Dynamics Simulations and Potentials of Mean Force Analysis.

作者信息

Dixit Mayank, Hajari Timir, Meti Manjunath D, Srivastava Srishti, Srivastava Amar, Daniel Joseph

机构信息

Graduate School of Engineering, Kyoto University, Nishikyo-ku, Kyoto 615-8510, Japan.

Department of Chemistry, City College, 102/1, Raja Rammohan Sarani, Kolkata - 700009, India.

出版信息

J Phys Chem B. 2024 Mar 7;128(9):2168-2180. doi: 10.1021/acs.jpcb.3c06876. Epub 2024 Feb 28.

Abstract

Ionic liquids (ILs) with dimethyl sulfoxide (DMSO) and water act as a promising solvent medium for the dissolution of cellulose in an efficient manner. To develop a proper solvent system, it is really important to understand the thermodynamics of the molecular solutions consisting of ILs, DMSO, and water. The ion-pairing propensity of the ILs in the presence of DMSO and water plays a crucial role in governing the property of the solvent mixtures. Employing all-atom molecular dynamics simulations, we estimate the potentials of mean force between BMIM and Cl ions in DMSO-water mixtures. Analysis reveals a significant increase in the thermodynamic stability of both contact ion pair (CIP) and solvent-assisted ion pair (SAIP) states with a rising DMSO mole fraction. Thermodynamic assessments highlight the entropic stabilization of CIP states and SAIP states in pure water, in DMSO-water mixtures, and in pure DMSO. The structural analysis reveals that in comparison to the DMSO local density, the local water density is relatively very high around ion pairs, more specifically in the solvation shell of a chloride ion. Preferential binding coefficients also consistently indicate exclusion of DMSO from the ion pair in DMSO-water mixtures. To enhance our understanding regarding the solvent molecules kinetics around the ion pairs, the survival probabilities of DMSO and water are computed. The calculations reveal that the water molecules prefer a prolonged stay in the solvation shell of Cl ions.

摘要

离子液体(ILs)与二甲基亚砜(DMSO)和水构成了一种很有前景的溶剂介质,能够高效溶解纤维素。为了开发合适的溶剂体系,了解由离子液体、二甲基亚砜和水组成的分子溶液的热力学性质非常重要。离子液体在二甲基亚砜和水存在下的离子配对倾向在决定溶剂混合物的性质方面起着关键作用。通过全原子分子动力学模拟,我们估算了二甲基亚砜 - 水混合物中BMIM和Cl离子之间的平均力势。分析表明,随着二甲基亚砜摩尔分数的增加,接触离子对(CIP)和溶剂辅助离子对(SAIP)状态的热力学稳定性显著提高。热力学评估突出了在纯水、二甲基亚砜 - 水混合物和纯二甲基亚砜中CIP状态和SAIP状态的熵稳定作用。结构分析表明,与二甲基亚砜局部密度相比,离子对周围,特别是氯离子溶剂化壳层周围的局部水密度相对非常高。优先结合系数也始终表明在二甲基亚砜 - 水混合物中DMSO被排除在离子对之外。为了加深我们对离子对周围溶剂分子动力学的理解,计算了二甲基亚砜和水的存活概率。计算结果表明,水分子更倾向于长时间停留在氯离子的溶剂化壳层中。

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