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从弱相互作用到强相互作用:从超分子硫族元素键合到共价键连续体的结构与电子拓扑分析

From weak to strong interactions: structural and electron topology analysis of the continuum from the supramolecular chalcogen bonding to covalent bonds.

作者信息

Miller Daniel K, Chernyshov Ivan Yu, Torubaev Yury V, Rosokha Sergiy V

机构信息

Chemistry Department, Ball State University, Muncie, IN, 47306, USA.

TheoMat group, ChemBio Cluster, ITMO University, Lomonosova 9, St. Petersburg, 191002, Russia.

出版信息

Phys Chem Chem Phys. 2022 Apr 6;24(14):8251-8259. doi: 10.1039/d1cp05441d.

Abstract

The relationship between covalent and supramolecular bonding, and the criteria of the assignments of different interactions were explored the review of selenium and tellurium containing structures in the Cambridge Structural Database and their computational analysis using Quantum Theory of Atoms in Molecules (QTAIM). This combined study revealed continuums of the interatomic Se⋯Br and Te⋯I distances, , in the series of associations from the sums of the van der Waals radii of these atoms ( + ) to their covalent bond lengths. The electron densities, (), at Bond Critical Points (BCPs) along the chalcogen bond paths increased gradually from about 0.01 a.u. common for the non-covalent interactions to about 0.1 a.u. typical for the covalent bonds. The log () values fell on the same linear trend line when plotted against normalized interatomic distances, = /( + ). The transition from the positive to negative values of the energy densities, (), at the BCPs (related to a changeover of essentially non-covalent into partially covalent interactions) were observed at ≈ 0.80. Synchronous changes of bonding characteristics with (similar to that found earlier in the halogen-bonded systems) designated normalized interatomic separation as a critical factor determining the nature of these bondings. The uninterrupted continuums of Te⋯I and Se⋯Br bond lengths and BCPs' characteristics signified an intrinsic link between limiting types of bonding involving chalcogen atoms and between covalent and supramolecular bonding in general.

摘要

通过对剑桥结构数据库中含硒和碲结构的综述以及使用分子中原子量子理论(QTAIM)进行的计算分析,探讨了共价键和超分子键之间的关系以及不同相互作用归属的标准。这项综合研究揭示了在从这些原子的范德华半径之和( + )到它们的共价键长度的一系列缔合中,原子间Se⋯Br和Te⋯I距离的连续变化。沿着硫族元素键路径的键临界点(BCP)处的电子密度()从非共价相互作用常见的约0.01 a.u.逐渐增加到共价键典型的约0.1 a.u.。当绘制log ()值与归一化原子间距离 = /( + )的关系图时,它们落在同一条线性趋势线上。在 ≈ 0.80时观察到BCP处能量密度()从正值到负值的转变(这与从基本上非共价相互作用到部分共价相互作用的转变有关)。键合特征随 的同步变化(类似于早期在卤键体系中发现的情况)表明归一化原子间间距是决定这些键合性质的关键因素。Te⋯I和Se⋯Br键长以及BCP特征的不间断连续性表明涉及硫族元素原子的极限键合类型之间以及一般共价键和超分子键之间存在内在联系。

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