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特定任务离子液体在水中的溶剂化机制:基于经典分子动力学和密度泛函理论的联合研究

Solvation Mechanism of Task-Specific Ionic Liquids in Water: A Combined Investigation Using Classical Molecular Dynamics and Density Functional Theory.

作者信息

Yuvaraj Surya V J, Zhdanov Ravil K, Belosludov Rodion V, Belosludov Vladimir R, Subbotin Oleg S, Kanie Kiyoshi, Funaki Kenji, Muramatsu Atsushi, Nakamura Takashi, Kawazoe Yoshiyuki

机构信息

New Industry Creation Hatchery Center, Tohoku University , 6-6-4 Aoba, Aramaki, Sendai, 980-8579, Japan.

Institute of Multidisciplinary Research for Advanced Materials, Tohoku University , 2-1-1 Katahira, Aoba-ku, Sendai, 980-8577, Japan.

出版信息

J Phys Chem B. 2015 Oct 8;119(40):12894-904. doi: 10.1021/acs.jpcb.5b05945. Epub 2015 Sep 24.

Abstract

The solvation behavior of task-specific ionic liquids (TSILs) containing a common, L-histidine derived imidazolium cation C20H28N3O3 and different anions, bromide-Br and bis(trifluoromethylsulfonyl)amide-NTF2, in water is examined, computationally. These amino acid functionalized ionic liquids (ILs) are taken into account because of their ability to react with rare earth metal salts. It has been noted that the TSIL with Br is more soluble than its counterpart TSIL with NTF2, experimentally. In this theoretical work, the combined classical molecular dynamics (CMD) and density functional theory (DFT) calculations are performed to study the behavior of the bulk phase of these two TSILs in the vicinity of water (H2O) molecules with different concentrations. Initially, all the constructed systems are equilibrated using the CMD method. The final structures of the equilibrated systems are extracted for DFT calculations. Under CMD operation, the radial distribution function (RDF) plots and viscosity of TSILs are analyzed to understand the effect of water on TSILs. In the DFT regime, binding energy per H2O, charge transfer, charge density mapping, and electronic density of states (EDOS) analyses are done. The CMD results along with the DFT results are consolidated to support the hydrophilic and hydrophobic nature of the TSILs. Interestingly, we have found a strong correlation between the viscosity and the EDOS results that leads to an understanding of the hydration properties of the TSILs.

摘要

通过计算研究了含有常见的L-组氨酸衍生的咪唑阳离子C20H28N3O3以及不同阴离子(溴离子-Br和双(三氟甲基磺酰)酰胺-NTF2)的特定任务离子液体(TSILs)在水中的溶剂化行为。考虑这些氨基酸功能化离子液体(ILs)是因为它们能够与稀土金属盐发生反应。实验表明,含有Br的TSIL比含有NTF2的对应TSIL更易溶解。在这项理论研究中,进行了经典分子动力学(CMD)和密度泛函理论(DFT)相结合的计算,以研究这两种TSILs在不同浓度的水分子(H2O)附近的体相行为。最初,使用CMD方法对所有构建的体系进行平衡。提取平衡体系的最终结构用于DFT计算。在CMD操作下,分析TSILs的径向分布函数(RDF)图和粘度,以了解水对TSILs的影响。在DFT阶段,进行了每个H2O的结合能、电荷转移、电荷密度映射和电子态密度(EDOS)分析。将CMD结果与DFT结果相结合,以支持TSILs的亲水性和疏水性。有趣的是,我们发现粘度与EDOS结果之间存在很强的相关性,这有助于理解TSILs的水合性质。

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