Preserving the symmetry of cis-1,2-difluoroethylene in the gas-phase heterodimer with hydrogen chloride: A microwave rotational study revealing a novel structure

Helen O. Leung, Mark D. Marshall
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Abstract

The microwave spectra of three isotopologues of the gas-phase heterodimer formed between cis-1,2-difluoroethylene and hydrogen chloride are obtained in the 5–21 GHz region using Fourier transform microwave spectroscopy. The molecular structure, determined from the analysis of the spectra and supported by quantum chemistry calculations, has the hydrogen atom of the hydrogen chloride molecule interacting with both fluorine atoms of the fluoroethylene and no interaction between the chlorine atom and the olefin. Although the equilibrium structure has two inequivalent H⋯F interactions, zero-point motion averages over the two equivalent choices for these interactions, rendering the pairs of like atoms (C, H, and F) of the fluoroethylene equivalent, retaining the C2v symmetry of the olefin. This results in only one unique singly substituted 13C isotopologue and in the observed effects on transition intensities due to nuclear spin statistics. The heterodimer structure allows for a strong, linear hydrogen bond between the HCl donor and the fluoroethylene acceptor that is more important here than in the analogous acetylene containing complex, where the interaction between the π electrons of acetylene and an electrophilic hydrogen atom on the olefin compensates for the loss of linearity required for binding to a geminal F/H pair.
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保持顺式-1,2-二氟乙烯与氯化氢在气相杂二聚体中的对称性:微波旋转研究揭示了一种新结构
利用傅立叶变换微波光谱法,在 5-21 GHz 波段获得了顺式-1,2-二氟乙烯和氯化氢形成的气相异二聚体的三种同位素的微波光谱。根据光谱分析和量子化学计算确定的分子结构显示,氯化氢分子的氢原子与氟乙烯的两个氟原子相互作用,而氯原子与烯烃之间没有相互作用。虽然平衡结构有两个不等的 H⋯F 相互作用,但零点运动会对这些相互作用的两个等效选择进行平均,从而使氟乙烯的同类原子对(C、H 和 F)等效,保留了烯烃的 C2v 对称性。这就只产生了一种独特的单取代 13C 同素异形体,并观察到了核自旋统计对转变强度的影响。异二聚体结构使盐酸供体和氟乙烯受体之间形成了牢固的线性氢键,这种氢键在这里比在含有乙炔的类似复合物中更为重要,在后者中,乙炔的 π 电子和烯烃上的亲电氢原子之间的相互作用弥补了与宝石 F/H 对结合所需的线性度的损失。
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