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利用泡利能量识别强共价相互作用。

Identifying Strong Covalent Interactions with Pauli Energy.

作者信息

Liu Shubin, Rong Chunying, Lu Tian, Hu Hao

机构信息

Key Laboratory of Chemical Biology and Traditional Chinese Medicine Research (Ministry of Education of China), College of Chemistry and Chemical Engineering , Hunan Normal University , Changsha , Hunan 410081 , P. R. China.

Beijing Kein Research Center for Natural Sciences, Beijing 100022 , P. R. China.

出版信息

J Phys Chem A. 2018 Mar 22;122(11):3087-3095. doi: 10.1021/acs.jpca.8b00521. Epub 2018 Mar 7.

Abstract

As one of the most widely used chemical concepts whose origin can be traced back to Lewis theory of bonding a century ago, a covalent bond involves sharing one or more pairs of electrons between atoms. A strong covalent interaction (SCI) is such a covalent bond that two or more electron pairs are shared, yielding a double, triple, quadruple, or even higher bond order. Despite its ubiquity and usefulness, a robust and generally applicable approach to accurately identify strong covalent interactions and determine their bond orders is still lacking. In this work, an SCI index is proposed from density functional theory using the Pauli energy, which is the contribution of the Pauli exclusion principle to the kinetic energy. Illustrative examples from organic, inorganic, and organometallic systems were provided. Its close relationship with the electron localization function (ELF) was elucidated. Both ELF and SCI generate similar results. Two complexes with a quintuple metal-metal bond have been confirmed. A stronger than quintuple bond has been showcased. This work should provide a robust approach to determine bond orders for strong covalent interactions in complex systems, pinpoint the physiochemical origin of strong covalent interactions, and rationalize the usefulness of both SCI and ELF. These tools should be able to be applied to other systems in different fields to effectively appreciate strong covalent interactions.

摘要

作为应用最为广泛的化学概念之一,其起源可追溯到一个世纪前的路易斯价键理论,共价键涉及原子间共享一对或多对电子。强共价相互作用(SCI)是指共享两对或更多电子对的共价键,从而产生双键、三键、四键甚至更高的键级。尽管其普遍存在且用途广泛,但仍缺乏一种稳健且普遍适用的方法来准确识别强共价相互作用并确定其键级。在这项工作中,基于密度泛函理论,利用泡利能量提出了一种SCI指数,泡利能量是泡利不相容原理对动能的贡献。文中提供了来自有机、无机和有机金属体系的示例。阐明了其与电子定域函数(ELF)的密切关系。ELF和SCI产生了相似的结果。已证实两个具有五重金属-金属键的配合物。展示了一种比五重键更强的键。这项工作应为确定复杂体系中强共价相互作用的键级提供一种稳健的方法,明确强共价相互作用的物理化学起源,并解释SCI和ELF的有用性。这些工具应能够应用于不同领域的其他体系,以有效认识强共价相互作用。

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