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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Non-covalent interactions in ionic liquid ion pairs and ion pair dimers: a quantum chemical calculation analysis
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Non-covalent interactions in ionic liquid ion pairs and ion pair dimers: a quantum chemical calculation analysis

机译:离子液体离子对和离子对二聚体中的非共价相互作用:量子化学计算分析

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摘要

Ionic liquids (ILs) being composed of bulky multiatomic ions reveal a plethora of non-covalent interactions which determine their microscopic structure. In order to establish the main peculiarities of these interactions in an IL-environment, we have performed quantum chemical calculations for a set of representative model molecular clusters. These calculations were coupled with advanced methods of analysis of the electron density distribution, namely, the quantum theory of atoms in molecules (QTAIM) and the non-covalent interaction (NCI; J. Am. Chem. Soc., 2010, 132, 6499) approaches. The former allows for profound quantitative characterization of non-covalent interactions between atoms while the latter gives an overview of spatial extent, delocalization, and relative strength of such interactions. The studied systems consist of 1-butyl-3-methylimidazolium (Bmim(+)) cations and different perfluorinated anions: tetrafluoroborate (BF4-), hexafluorophosphate (PF6-), trifluoromethanesulfonate (TfO-), and bis(trifluoromethanesulfonyl) imide (TFSI-). IL ion pairs and ion pair dimers were considered as model structures for the neat ILs and large aggregates. Weak electrostatic hydrogen bonding was found between the anions and the imidazolium ring hydrogen atoms of cations. Weaker but still appreciable hydrogen bonding was also noted for hydrogen atoms adjacent to the imidazolium ring alkyl groups of Bmim(+). The relative strength of the hydrogen bonding is higher in BmimTfO and BmimBF(4) ILs than in BmimPF(6) and BmimTFSI, whereas BmimTfO and BmimTFSI reveal higher sensitivity of hydrogen bonding at the different hydrogen atoms of the imidazolium ring.
机译:由庞大的多原子离子组成的离子液体(ILs)揭示了许多非共价相互作用,这些相互作用决定了其微观结构。为了建立IL环境中这些相互作用的主要特性,我们对一组代表性的模型分子簇进行了量子化学计算。这些计算结合了先进的电子密度分布分析方法,即分子中原子的量子理论(QTAIM)和非共价相互作用(NCI; J。Am。Chem。Soc。,2010,132,6499 )方法。前者允许对原子之间非共价相互作用进行深刻的定量表征,而后者则概述了这种相互作用的空间范围,离域和相对强度。研究的系统由1-丁基-3-甲基咪唑鎓(Bmim(+))阳离子和不同的全氟阴离子组成:四氟硼酸根(BF4-),六氟磷酸根(PF6-),三氟甲磺酸根(TfO-)和双(三氟甲磺酰基)酰亚胺(TFSI) -)。 IL离子对和离子对二聚体被认为是纯净IL和大型聚集体的模型结构。在阴离子和阳离子的咪唑环氢原子之间发现弱的静电氢键。对于与Bmim(+)的咪唑环烷基相邻的氢原子,也发现了较弱但仍可观的氢键。 BmimTfO和BmimBF(4)IL中氢键的相对强度高于BmimPF(6)和BmimTFSI,而BmimTfO和BmimTFSI显示在咪唑环的不同氢原子处的氢键敏感性更高。

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