Department of Chemistry, College of Sciences, Shiraz University, Shiraz, 7194684795, Iran.
Phys Chem Chem Phys. 2018 Jul 11;20(27):18463-18473. doi: 10.1039/c8cp00409a.
Investigation of the behaviour of deep eutectic solvents (DESs) as novel green solvents in the presence of other solvents is of great interest. In this study the behaviour of a common natural DES, namely choline chloride-glycerol deep eutectic solvent (GDES), was studied in the presence of water. A detailed study of the association of the two solvents was performed by integration of two vibrational spectroscopic methods (FTIR and Raman spectroscopy) followed by multivariate analysis. Moreover, a binary mixture of glycerol (Gly) as one of the liquid constituents of GDES and water was explored under the same conditions. A quintuplet and ternary systems were resolved for GDES-water and Gly-water probes, respectively, using multivariate analysis of global data (multi-technique and multi-experiment data arrangements). The results confirmed that in the presence of water the GDES showed different behaviour from its components. Therefore, a DES can be introduced as an independent solvent with its unique properties. Also, different H-bond interaction energies of GDES and its pure components in the presence of water were shown by theoretical calculations based on a density functional theory framework. To investigate the effects of water on the structure of GDES, molecular dynamics (MD) simulations of GDES-water liquid mixtures were performed at 0.9 mole fraction of water.
研究深共晶溶剂(DESs)在其他溶剂存在下的行为作为新型绿色溶剂具有重要意义。在本研究中,研究了常见的天然 DES,即氯化胆碱-甘油深共晶溶剂(GDES)在存在水的情况下的行为。通过两种振动光谱方法(FTIR 和拉曼光谱)的结合以及多元分析,对两种溶剂的缔合进行了详细研究。此外,在相同条件下还探索了甘油(Gly)作为 GDES 液体成分之一与水的二元混合物。使用全局数据的多元分析(多技术和多实验数据排列),分别为 GDES-水和 Gly-水探针解析了 quintuplet 和三元体系。结果证实,在存在水的情况下,GDES 的行为与其组分不同。因此,可以将 DES 作为具有独特性质的独立溶剂引入。此外,基于密度泛函理论框架的理论计算表明,在存在水的情况下,GDES 及其纯组分的氢键相互作用能不同。为了研究水对 GDES 结构的影响,在水的摩尔分数为 0.9 的情况下进行了 GDES-水液体混合物的分子动力学(MD)模拟。