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四氟二碘苯与二硝基苯线性配合物中的流动卤素键。

Fluxional halogen bonds in linear complexes of tetrafluorodiiodobenzene with dinitrobenzene.

作者信息

Gao Cai-Yue, Pei Bin-Bin, Li Si-Dian

机构信息

Institute of Molecular Science, Shanxi University, Taiyuan, China.

出版信息

J Comput Chem. 2025 Jan 5;46(1):e27483. doi: 10.1002/jcc.27483. Epub 2024 Oct 1.

DOI:10.1002/jcc.27483
PMID:39350679
Abstract

The fluxional nature of halogen bonds (XBs) in small molecular clusters, supramolecules, and molecular crystals has received considerable attention in recent years. In this work, based on extensive density-functional theory calculations and detailed electrostatic potential (ESP), natural bonding orbital (NBO), non-covalent interactions-reduced density gradient (NCI-RDG), and quantum theory of atoms in molecules (QTAIM) analyses, we unveil the existence of fluxional halogen bonds (FXBs) in a series of linear (ICFI)(OONCHNOO) (m + n = 2-5) complexes of tetrafluorodiiodobenzene with dinitrobenzene which appear to be similar to the previously reported fluxional hydrogen bonds (FHBs) in small water clusters (HO) (n = 2-6). The obtained fluxional mechanisms involve one FXB in the systems which fluctuates reversibly between two linear CI···O XBs in the ground states (GS and GS') via a bifurcated CI  ON van der Waals interaction in the transition state (TS). The cohesive energies (E) of these complexes with up to four XBs exhibit an almost perfect linear relationship with the numbers of XBs in the systems, with the average calculated halogen bond energy of E = 3.48 kcal·mol in the ground states which appears to be about 55% of the average calculated hydrogen bond energy (E = 6.28 kcal·mol) in small water clusters.

摘要

近年来,小分子团簇、超分子和分子晶体中卤素键(XB)的动态性质受到了广泛关注。在这项工作中,基于广泛的密度泛函理论计算以及详细的静电势(ESP)、自然键轨道(NBO)、非共价相互作用-约化密度梯度(NCI-RDG)和分子中原子的量子理论(QTAIM)分析,我们揭示了四氟二碘苯与二硝基苯的一系列线性(ICFI)(OONCHNOO)(m + n = 2 - 5)配合物中存在动态卤素键(FXB),这些配合物似乎与先前报道的小水团簇(HO)(n = 2 - 6)中的动态氢键(FHB)相似。所获得的动态机制涉及系统中的一个FXB,它在基态(GS和GS')的两个线性CI···O XB之间通过过渡态(TS)中的分叉CI···ON范德华相互作用可逆地波动。这些具有多达四个XB的配合物的内聚能(E)与系统中XB的数量呈现出几乎完美的线性关系,在基态下计算得到的平均卤素键能E = 3.48 kcal·mol,这似乎约为小水团簇中计算得到的平均氢键能(E = 6.28 kcal·mol)的55%。

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