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顺-2-丁烯及相关物种中的湾型H···H“键合”:QTAIM与NBO描述

Bay-type H···H "bonding" in cis-2-butene and related species: QTAIM versus NBO description.

作者信息

Weinhold Frank, Schleyer Paul von Ragué, McKee William Chadwick

机构信息

Department of Chemistry, Theoretical Chemistry Institute, University of Wisconsin, Madison, Wisconsin, 53706.

出版信息

J Comput Chem. 2014 Jul 30;35(20):1499-508. doi: 10.1002/jcc.23654. Epub 2014 Jun 12.

Abstract

We use comparative natural bond orbital (NBO) and quantum theory of atoms in molecules (QTAIM) methods to analyze the proximal bay-type H···H interactions in cis-2-butene and related species, which lead to controversial interpretation as attractive "HH bonding" in the QTAIM framework. We address the challenging questions concerning well established structural, conformational, and vibrational properties of such species that appear to be sharply at odds with the QTAIM interpretation. In contrast to the purported "HH bonding" of QTAIM theory, NBO-based evaluation of steric (donor-donor) and hyperconjugative (donor-acceptor) interactions unambiguously portrays such H···H contacts as dominated by steric clashes that are only partially softened by weak secondary hyperconjugative interactions, contributing negligibly (bHH  < 0.01) to H···H bond order. Additional details of NBO-based versus QTAIM-based description are provided by natural bond critical point analysis of topological bond critical point properties, which further emphasizes the contrast between the problematic bay-type H···H contacts and remaining noncontroversial (consensus) chemical bonds. NBO analysis is thereby shown to be fully consistent with the traditional physical organic concept of repulsive bay-type H···H contacts, including the corollary array of structural, conformational, and vibrational properties. © 2014 Wiley Periodicals, Inc.

摘要

我们使用比较自然键轨道(NBO)和分子中原子的量子理论(QTAIM)方法来分析顺-2-丁烯及相关物种中近端海湾型H···H相互作用,这在QTAIM框架中导致了关于有吸引力的“HH键”的有争议的解释。我们解决了有关此类物种已确立的结构、构象和振动性质的具有挑战性的问题,这些性质似乎与QTAIM的解释明显不一致。与QTAIM理论中所谓的“HH键”相反,基于NBO对空间(供体-供体)和超共轭(供体-受体)相互作用的评估明确地将此类H···H接触描绘为主要由空间冲突主导,只是通过弱的二级超共轭相互作用部分缓和,对H···H键级的贡献可忽略不计(bHH  < 0.01)。基于NBO与基于QTAIM描述的更多细节由拓扑键临界点性质的自然键临界点分析提供,这进一步强调了有问题的海湾型H···H接触与其余无争议(一致)化学键之间的对比。因此,NBO分析显示与排斥性海湾型H···H接触的传统物理有机概念完全一致,包括结构、构象和振动性质的相应排列。© 2014威利期刊公司

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