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首页> 外文期刊>Journal of Molecular Structure >Electronic structure, vibrational spectra and H-1 NMR chemical shifts of the ion pair composites within imidazolium functionalized geminal dicationic ionic liquids from density functional theory
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Electronic structure, vibrational spectra and H-1 NMR chemical shifts of the ion pair composites within imidazolium functionalized geminal dicationic ionic liquids from density functional theory

机译:离子对复合材料中的电子结构,振动光谱和H-1 NMR化学偏移在密度函数理论中咪唑官能化的初始隐性离子液体中的离子对复合材料

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摘要

Electronic structure, vibrational and H-1 NMR spectra of geminal dication based ionic liquids composed of the functionalized imidazolium cation and bis(trifluoromethanesulfonyl)imide (Tf2N) anion have been obtained through the M06-2x based density functional theory. Underlying C-H ... O, C-H ... F, anion-pi and van der Waals interactions in such complexes are unveiled through natural bond orbital and non-covalent reduced density gradient analyses. Calculated infrared spectra have shown that dication-anion complexes are accompanied by frequency downshifts of the hydrogen bonded SO3 and CF3 vibrations, whereas the uncoupled and intense C-H stretching emerges with its shift in the opposite direction (blue shift or frequency up shift) compared to free Tf2N anion. Further the C-H vibrational frequency increases steadily with diminutive kinetic energy density component in the quantum theory of atoms in molecules (QTAIM) analyses. Besides, the large down-field signal of the (reactive) methine proton on the imidazolium in 1H NMR spectra correlates well with the electron density at the bond critical point in QTAIM analyses. (C) 2019 Elsevier B.V. All rights reserved.
机译:通过基于M06-2X的密度泛函理论获得了由官能化咪唑阳离子和双(三氟甲磺酰基)酰亚胺(TF2N)阴离子组成的初始滴乳基离子液体的电子结构,振动和H-1 NMR光谱。通过天然键轨道和非共价降低密度梯度分析,如此复合物中的C-H ... F,ANOON-PI和VAN DAR WAAS相互作用揭通了这种复合物中的相互作用。计算出的红外光谱表明,DICTION-ANION复合物伴随着氢键合SO3和CF3振动的频率降档,而不是自由的相反方向(蓝色移位或频率向上频移)的偏移和激动的CH拉伸出现tf2n阴离子。此外,C-H振动频率在分子(Qtaim)分析中的量子原子的量子理论中稳定地增加了逐渐的动能密度分量。此外,1H NMR光谱中咪唑鎓上的(反应性)甲基质子的大的缩小场信号与Qtai毒分析中的键临界点的电子密度很好地相关。 (c)2019 Elsevier B.v.保留所有权利。

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