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通过σ-空穴和π-空穴相互作用增强的卤键:H3N∙∙∙XCN∙∙∙SF2和H3N∙∙∙XCN∙∙∙SO2配合物(X = F、Cl、Br和I)中X∙∙∙N和S∙∙∙N相互作用之间协同效应和竞争效应的比较研究

Halogen bonds enhanced by σ-hole and π-hole interactions: a comparative study on cooperativity and competition effects between X∙∙∙N and S∙∙∙N interactions in H3N∙∙∙XCN∙∙∙SF2 and H 3N∙∙∙XCN∙∙∙SO2 complexes (X   = F, Cl, Br and I).

作者信息

Esrafili Mehdi D, Vakili Mahshad

机构信息

Laboratory of Theoretical Chemistry, Department of Chemistry, University of Maragheh, P.O. Box: 5513864596, Maragheh, Iran,

出版信息

J Mol Model. 2014 Jun;20(6):2291. doi: 10.1007/s00894-014-2291-8. Epub 2014 May 27.

Abstract

Halogen bonding, a noncovalent interaction between a halogen atom X in one molecule and a negative site in another, plays an important role in fields as diverse as molecular biology, drug design, and crystal engineering. In this work, the H3N∙∙∙XCN∙∙∙SF2 and H3N∙∙∙XCN∙∙∙SO2 (X  =  F, Cl, Br, I) complexes are theoretically investigated to find ways to enhance the halogen bond interaction. Cooperative effects are found when X∙∙∙N and S∙∙∙N bonds coexist in the same complex. The ab initio calculations are carried out using at the MP2/aug-cc-pVTZ level, through analysis of surface electrostatic potentials VS(r), interaction energies and the topological analysis based on the quantum theory of atoms in molecules. Particular attention is paid to understand the origin of the X∙∙∙N and S∙∙∙N interactions in the ternary complexes. The cooperativity between both types of the interaction is mainly caused by the electrostatic effects.

摘要

卤键是指一个分子中的卤原子X与另一个分子中的负性位点之间的非共价相互作用,在分子生物学、药物设计和晶体工程等众多领域发挥着重要作用。在本研究中,对H3N∙∙∙XCN∙∙∙SF2和H3N∙∙∙XCN∙∙∙SO2(X = F、Cl、Br、I)配合物进行了理论研究,以寻找增强卤键相互作用的方法。当X∙∙∙N键和S∙∙∙N键共存于同一配合物中时,发现了协同效应。使用MP2/aug-cc-pVTZ水平进行从头算计算,通过分析表面静电势VS(r)、相互作用能以及基于分子中原子量子理论的拓扑分析。特别关注理解三元配合物中X∙∙∙N和S∙∙∙N相互作用的起源。两种相互作用之间的协同性主要由静电效应引起。

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