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配合物中分子内γ-卤相互作用的识别与表征:一种理论方法。

Identification and characterization of intramolecular γ-halo interaction in d complexes: a theoretical approach.

作者信息

Debnath Tanay, Ash Tamalika, Sarkar Subhendu, Das Abhijit K

机构信息

Department of Spectroscopy, Indian Association for the Cultivation of Science, Jadavpur, Kolkata, 700032, India.

出版信息

J Mol Model. 2017 Jul;23(7):213. doi: 10.1007/s00894-017-3387-8. Epub 2017 Jun 24.

Abstract

A mechanistic investigation to detect intramolecular M⋯X-C type interactions in d neutral and cationic complexes was carried out through a benchmark study employing different density functional methods. As γ-halogen is involved in M⋯X-C type interactions, it is denoted as a γ-halo interaction and the respective conformers are designated as halo-conformers. By analyzing the geometrical parameters of halo-conformers, it was observed that, irrespective of the nature of the metal and the halogen, the C-X bond distance increases compared to the usual C-X bond, which brings the M and X centers close enough to generate a weak interaction. Generation of the M⋯X-C interaction was confirmed by performing NBO, AIM and Wiberg bond index analyses, from which the persistence of γ-halo interaction was seen to be prominent. Moreover, for each neutral and cationic complex, the values of Wiberg bond order are in good agreement with the AIM results. The effect of the metal center, as well as γ-halogen substitution, on γ-halo interaction was also studied in the present work. To justify the practical subsistence of the halo-conformers, we checked the stability of the conformers with respect to their β-conformers by comparing the zero-point-corrected electronic energies. Therefore, the entire study was designed in such a way that it can provide evidence in support of intramolecular M⋯X-C interactions, where, instead of the C-H bond, the C-X bond will interact with the central transition metal.

摘要

通过采用不同密度泛函方法的基准研究,对检测中性和阳离子配合物中分子内M⋯X-C型相互作用进行了机理研究。由于γ-卤素参与M⋯X-C型相互作用,将其称为γ-卤相互作用,相应的构象异构体称为卤构象异构体。通过分析卤构象异构体的几何参数,观察到,无论金属和卤素的性质如何,与通常的C-X键相比,C-X键距离都会增加,这使得M和X中心足够靠近以产生弱相互作用。通过进行NBO、AIM和维伯格键指数分析证实了M⋯X-C相互作用的产生,从中可以看出γ-卤相互作用的持续性很突出。此外,对于每个中性和阳离子配合物,维伯格键级的值与AIM结果吻合良好。在本工作中还研究了金属中心以及γ-卤素取代对γ-卤相互作用的影响。为了证明卤构象异构体的实际存在,我们通过比较零点校正电子能量来检查构象异构体相对于其β-构象异构体的稳定性。因此,整个研究的设计方式是能够为分子内M⋯X-C相互作用提供支持证据,其中,与C-H键不同,C-X键将与中心过渡金属相互作用。

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