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一位理论与实验化学家对离子液体及其二元混合物中氢键的联合观点。

A theoretical and experimental chemist's joint view on hydrogen bonding in ionic liquids and their binary mixtures.

作者信息

Stark Annegret, Brehm Martin, Brüssel Marc, Lehmann Sebastian B C, Pensado Alfonso S, Schöppke Matthias, Kirchner Barbara

机构信息

Institute for Chemical Technology, Universität Leipzig, Linnéstr. 3-4, 04103, Leipzig, Germany,

出版信息

Top Curr Chem. 2014;351:149-87. doi: 10.1007/128_2013_485.

Abstract

A combined experimental and theoretical approach including quantum chemistry tools and computational simulation techniques can provide a holistic description of the nature of the interactions present in ionic liquid media. The nature of hydrogen bonding in ionic liquids is an especially intriguing aspect, and it is affected by all types of interactions occurring in this media. Overall, these interactions represent a delicate balance of forces that influence the structure and dynamics, and hence the properties of ionic liquids. An understanding of the fundamental principles can be achieved only by a combination of computations and experimental work. In this contribution we show recent results shedding light on the nature of hydrogen bonding, for certain cases the formation of a three-dimensional network of hydrogen bonding, and its dynamics by comparing 1-ethyl-3-methylimidazolium based acetate, chloride and thiocyanate ionic liquids.A particularly interesting case to study hydrogen bonding and other interactions is the investigation of binary mixtures of ionic liquids of the type [cation1][anion1]/[cation1][anion2]. In these mixtures, competing interactions are to be expected. We present both a thorough property meta-analysis of the literature and new data covering a wide range of anions, i.e., mixtures of 1-ethyl-3-methylimidazolium acetate with either trifluoroacetate, tetrafluoroborate, methanesulfonate, or bis(trifluoromethanesulfonyl)imide. In most cases, ideal mixing behavior is found, a surprising result considering the multitude of interactions present. However, ideal mixing behavior allows for the prediction of properties such as density, refractive index, surface tension, and, in most cases, viscosity as function of molar composition. Furthermore, we show that the prediction of properties such as the density of binary ionic liquid mixtures is possible by making use of group contribution methods which were originally developed for less complex non-ionic molecules. Notwithstanding this ideal mixing behavior, several exciting applications are discussed where preferential solvation via hydrogen bonding gives rise to non-additive effects leading to performance improvements. The assessment of the excess properties and (1)H NMR spectroscopic studies provide information on these structural changes and preferential interactions occurring in binary mixtures of ionic liquid, that clearly support the conclusions drawn from the computational studies.

摘要

一种结合了实验和理论方法(包括量子化学工具和计算模拟技术)的研究方式,能够全面描述离子液体介质中存在的相互作用的本质。离子液体中氢键的本质是一个特别引人关注的方面,并且它会受到该介质中发生的所有类型相互作用的影响。总体而言,这些相互作用代表了一种微妙的力的平衡,这种平衡会影响离子液体的结构和动力学,进而影响其性质。只有通过计算和实验工作相结合,才能理解其基本原理。在本论文中,我们展示了近期的研究成果,这些成果揭示了氢键的本质,在某些情况下还揭示了三维氢键网络的形成及其动力学,通过比较基于1-乙基-3-甲基咪唑鎓的醋酸盐、氯化物和硫氰酸盐离子液体来进行研究。研究氢键和其他相互作用的一个特别有趣的案例是对[阳离子1][阴离子1]/[阳离子1][阴离子2]类型的离子液体二元混合物的研究。在这些混合物中,可以预期会存在相互竞争的相互作用。我们既对文献进行了全面的性质元分析,又给出了涵盖多种阴离子的新数据,即1-乙基-3-甲基咪唑鎓醋酸盐与三氟醋酸盐、四氟硼酸盐、甲磺酸盐或双(三氟甲磺酰)亚胺的混合物。在大多数情况下,发现了理想的混合行为,考虑到存在的多种相互作用,这是一个令人惊讶的结果。然而,理想的混合行为使得能够预测诸如密度、折射率、表面张力以及在大多数情况下作为摩尔组成函数的粘度等性质。此外,我们表明,通过使用最初为不太复杂的非离子分子开发的基团贡献方法,可以预测二元离子液体混合物的密度等性质。尽管存在这种理想的混合行为,但我们讨论了几个令人兴奋的应用案例,其中通过氢键形成的优先溶剂化会产生非加和效应,从而带来性能提升。对过量性质的评估和¹H NMR光谱研究提供了有关离子液体二元混合物中发生的这些结构变化和优先相互作用的信息,这清楚地支持了从计算研究中得出的结论。

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