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使用最小模型和相互作用量子原子方法挑战卤素键合的静电σ-空穴图景。

Challenging the electrostatic σ-hole picture of halogen bonding using minimal models and the interacting quantum atoms approach.

作者信息

Jiménez-Grávalos Fernando, Gallegos Miguel, Martín Pendás Ángel, Novikov Alexander S

机构信息

Department of Analytical and Physical Chemistry, University of Oviedo, Oviedo, Spain.

Saint Petersburg State University, Saint Petersburg, Russian Federation.

出版信息

J Comput Chem. 2021 Apr 15;42(10):676-687. doi: 10.1002/jcc.26488. Epub 2021 Feb 10.

Abstract

Among the different noncovalent interactions, halogen bonds have captured wide attention in the last years. Their stability has been rationalized in electrostatic terms by appealing to the σ-hole concept, a charge-depleted region that is able to interact favorably with electron rich moieties. This interpretation has been questioned, and in this work a set of anionic halogen model systems are used to shed some light on this issue. We use the interacting quantum atoms method, which provides an orbital invariant energy decomposition in which pure electrostatic terms are well isolated, and we complement our insights with the analysis of electrostatic potentials (ESPs) as well as with traditional descriptors of charge accumulation like the Laplacian of the electron density. The total electrostatic interaction between the interacting species is surprisingly destabilizing in many of the systems examined, demonstrating that although σ-holes might be qualitatively helpful, much care has to be taken in ascribing the stability of these systems to electrostatics. It is clearly shown that electron delocalization is essential to understand the stability of the complexes. The evolution of atomic charges as the aggregates forms reveals a charge transfer picture in which the central, σ-hole bearing halogen acts as a mere spectator. These systems may then be not far from engaging in a classical 3c-4e interaction. Since the presence of a σ-hole as characterized by the ESP mapped on a suitable molecular envelope isosurface does not guarantee attractive electrostatic interactions, we encourage to employ a wider perspective that takes into account the full charge distribution.

摘要

在不同的非共价相互作用中,卤素键在过去几年中引起了广泛关注。通过诉诸σ-空穴概念,即一个电荷耗尽区域,能够与富电子部分发生有利相互作用,其稳定性已从静电角度得到合理解释。这种解释受到了质疑,在这项工作中,使用了一组阴离子卤素模型系统来阐明这个问题。我们使用相互作用量子原子方法,该方法提供了一种轨道不变能量分解,其中纯静电项被很好地分离出来,并且我们通过分析静电势(ESP)以及像电子密度拉普拉斯算子这样的电荷积累传统描述符来补充我们的见解。在所研究的许多系统中,相互作用物种之间的总静电相互作用出人意料地具有去稳定作用,这表明尽管σ-空穴在定性上可能有帮助,但在将这些系统的稳定性归因于静电时必须非常谨慎。清楚地表明,电子离域对于理解配合物的稳定性至关重要。随着聚集体形成,原子电荷的演变揭示了一种电荷转移情况,其中带有σ-空穴的中心卤素仅仅起到旁观者的作用。这些系统可能离参与经典的三中心四电子相互作用不远了。由于以映射在合适分子包络等值面上的ESP所表征的σ-空穴的存在并不能保证有吸引力的静电相互作用,我们鼓励采用更广泛的视角,考虑到完整的电荷分布。

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