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涉及取代磷苯和 ClF 分子的氯共享键与 π-卤键之间的比较。

Comparison between Chlorine-Shared and π-Halogen Bonds Involving Substituted Phosphabenzene and ClF Molecules.

作者信息

Sutradhar Dipankar, Bhattarai Sumitra, Parveen Salma, Chandra Asit K

机构信息

Solid State and Structural Chemistry Unit, Indian Institute of Science, Bangalore, Karnataka 560012, India.

Department of Chemistry, North-Eastern Hill University, Shillong 793022, India.

出版信息

ACS Omega. 2020 Sep 14;5(37):24095-24105. doi: 10.1021/acsomega.0c03567. eCollection 2020 Sep 22.

Abstract

Ab initio MP2/aug-cc-pVTZ calculations have been carried out in order to study the nature of P···Cl halogen bonding interaction between a phosphorus atom in an aromatic ring in para-substituted phosphabenzene (PPBZ) and ClF molecule. The interaction of PPBZ with ClF results in two different types of complexes: (i) complex formation through the chlorine-shared halogen bond (T1-X-PPBZ·ClF) and (ii) complex formation halogen-π interaction (T2-X-PPBZ·ClF). T1-X-PPBZ·ClF complexes are found to be more stable than the T2-X-PPBZ·ClF complexes. This work also presents a general criterion to distinguish a chlorine-shared halogen bond from a traditional halogen bond and sheds light on the formation of the chlorine-shared halogen bond. The binding energy of T1-X-PPBZ·ClF complexes correlates well with the negative electrostatic potential of the P atom and PA value of the substituted PPBZ. The properties of both T1-X-PPBZ·ClF and T2-X-PPBZ·ClF complexes are analyzed using atom-in-molecule, natural bond orbital, and symmetry-adapted perturbation theory calculations. The variation of the Cl-F bond distances and the redshifts of the ν(ClF) vibration resulting from the interaction with PPBZs are discussed.

摘要

为了研究对位取代磷苯(PPBZ)芳香环中的磷原子与ClF分子之间P···Cl卤键相互作用的本质,进行了从头算MP2/aug-cc-pVTZ计算。PPBZ与ClF的相互作用产生了两种不同类型的配合物:(i)通过氯共享卤键形成的配合物(T1-X-PPBZ·ClF)和(ii)通过卤-π相互作用形成的配合物(T2-X-PPBZ·ClF)。发现T1-X-PPBZ·ClF配合物比T2-X-PPBZ·ClF配合物更稳定。这项工作还提出了一个区分氯共享卤键与传统卤键的通用标准,并阐明了氯共享卤键的形成。T1-X-PPBZ·ClF配合物的结合能与P原子的负静电势和取代PPBZ的PA值密切相关。使用分子中的原子、自然键轨道和对称适配微扰理论计算分析了T1-X-PPBZ·ClF和T2-X-PPBZ·ClF配合物的性质。讨论了与PPBZ相互作用导致的Cl-F键长变化和ν(ClF)振动的红移。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4610/7513335/980f1175a631/ao0c03567_0002.jpg

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