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Cooperative Halogen Bond, Tetrel Bond and Van Der Waals Interaction Coexisting in the CO2, CO and XY (X=Cl, Br; Y=F, Cl, Br) Trimeric Complexes

机译:合作卤素键,四键和范德华的相互作用在CO2,CO和XY中共存(X = Cl,Br; Y = F,Cl,Br)三聚体复合物

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摘要

A series of four-membered ring-shaped molecular complexes formed by CO2, CO and XY (X=Cl, Br; Y=F, Cl, Br) molecules have been investigated at the moderate M06-2X/6-311++G(2d,2p) level of theory, in which these molecules interact with each other via halogen bond, tetrel bond and van der Waals interaction. The optimized geometry, stretching mode and interaction energy have been obtained and discussed. Molecular electrostatic potential and the contour maps of Laplacian r21 were used to reveal the formation mechanisms of these complexes. The cooperativity was found in these complexes because their interaction energies are stronger than the sum of the pair interaction energies. The electrostatic force was believed to be the main net contribution to the stability of these complexes. The simultaneous interactions involving CO2, CO and dihalogen molecules in these complexes would provide insight into the CO2 and CO fixation via noncovalent interactions.
机译:已经在中等M06-2X/6-311+g中研究了由CO2,CO和XY形成的一系列四元环分子复合物(X = Cl,Br; Y = F,Cl,Br)分子。 (2d,2p)理论水平,其中这些分子通过卤素键,tetrel键和范德华相互作用相互相互作用。 已经获得并讨论了优化的几何形状,拉伸模式和相互作用能量。 分子静电势和拉普拉斯R21的轮廓图用于揭示这些复合物的形成机理。 在这些复合物中发现了协作性,因为它们的相互作用能比对相互作用能的总和强。 据信静电力是对这些复合物稳定性的主要净贡献。 这些复合物中涉及二氧化碳,CO和二氢分子的同时相互作用将通过非共价相互作用提供对CO2和CO固定的见解。

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