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Quantum chemical topological analysis of hydrogen bonding in HX…HX and CH3X…HX dimers (X = Br, Cl, F)

机译:HX中的氢键量子化学拓扑分析... HX和CH3X ... HX二聚体(X = Br,Cl,F)

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摘要

We present a systematic investigation of the nature and strength of the hydrogen bonding in HX···HX and CH3X…HX (X = Br, Cl and F) dimers using ab initio MP2/aug-cc-pVTZ calculations in the framework of the quantum theory of atoms in molecules (QTAIM) and electron localisation functions (ELFs) methods. The electron density of the complexes has been characterised, and the hydrogen bonding energy, as well as the QTAIM and ELF parameters, is consistent, providing deep insight into the origin of the hydrogen bonding in these complexes. It was found that in both linear and angular HX…HX and CH3X…HX dimers, F atoms form stronger HB than Br and Cl, but they need short (∼2 Å) X…HX contacts.
机译:我们在系统框架内使用从头算MP2 / aug-cc-pVTZ计算,对HX···HX和CH3X…HX(X = Br,Cl和F)二聚体中氢键的性质和强度进行了系统的研究。分子中原子的量子理论(QTAIM)和电子定位功能(ELFs)方法。已经表征了配合物的电子密度,并且氢键能以及QTAIM和ELF参数是一致的,从而提供了对这些配合物中氢键起源的深入了解。结果发现,在线性和角HX…HX和CH3X…HX二聚体中,F原子形成的HB比Br和Cl强,但它们需要短的(〜2Å)X…HX接触。

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