Yang Fang-Ling, Yang Xing, Wu Rui-Zhi, Yan Chao-Xian, Yang Fan, Ye Weichun, Zhang Liang-Wei, Zhou Pan-Pan
State Key Laboratory of Applied Organic Chemistry, Key Laboratory of Nonferrous Metal Chemistry and Resources Utilization of Gansu Province, College of Chemistry and Chemical Engineering, Lanzhou University, 222 South Tianshui Road, 730000, Lanzhou, P. R. China.
Phys Chem Chem Phys. 2018 Apr 25;20(16):11386-11395. doi: 10.1039/c8cp00420j.
The characters of σ- and π-holes of bromopentafluorobenzene (C6F5Br) enable it to interact with an electron-rich atom or group like pyridine which possesses an electron lone-pair N atom and a π ring. Theoretical studies of intermolecular interactions between C6F5Br and C5H5N have been carried out at the M06-2X/aug-cc-pVDZ level without and with the counterpoise method, together with single point calculations at M06-2X/TZVP, wB97-XD/aug-cc-pVDZ and CCSD(T)/aug-cc-pVDZ levels. The σ- and π-holes of C6F5Br exhibiting positive electrostatic potentials make these sites favorably interact with the N atom and the π ring of C5H5N with negative electrostatic potentials, leading to five different dimers connected by a σ-holen bond, a σ-holeπ bond or a π-holeπ bond. Their geometrical structures, characteristics, nature and spectroscopy behaviors were systematically investigated. EDA analyses reveal that the driving forces in these dimers are different. NCI, QTAIM and NBO analyses confirm the existence of intermolecular interactions formed via σ- and π-holes of C6F5Br and the N atom and the π ring of C5H5N. The experimental IR and Raman spectra gave us important information about the formation of molecular complexes between C6F5Br and C5H5N. We expect that the results could provide valuable insights into the investigation of intermolecular interactions involving σ- and π-holes.
溴五氟苯(C6F5Br)的σ-空穴和π-空穴特性使其能够与富电子原子或基团相互作用,比如吡啶,吡啶含有一个孤对电子的N原子和一个π环。已在M06-2X/aug-cc-pVDZ水平下,采用和不采用counterpoise方法对C6F5Br与C5H5N之间的分子间相互作用进行了理论研究,并结合了在M06-2X/TZVP、wB97-XD/aug-cc-pVDZ和CCSD(T)/aug-cc-pVDZ水平下的单点计算。C6F5Br呈现正静电势的σ-空穴和π-空穴使得这些位点与具有负静电势的C5H5N的N原子和π环发生有利的相互作用,从而形成了通过σ-空穴键、σ-空穴π键或π-空穴π键连接的五种不同二聚体。对它们的几何结构、特性、本质和光谱行为进行了系统研究。EDA分析表明这些二聚体中的驱动力各不相同。NCI、QTAIM和NBO分析证实了通过C6F5Br的σ-空穴和π-空穴与C5H5N的N原子和π环形成的分子间相互作用的存在。实验红外光谱和拉曼光谱为我们提供了有关C6F5Br与C5H5N之间分子复合物形成的重要信息。我们期望这些结果能为涉及σ-空穴和π-空穴的分子间相互作用的研究提供有价值的见解。