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硼氮烷的堆积相互作用:在大的水平位移处的重要堆积和由硼氮烷的静电势控制的氢键。

Stacking interactions of borazine: important stacking at large horizontal displacements and dihydrogen bonding governed by electrostatic potentials of borazine.

机构信息

Faculty of Chemistry, University of Belgrade, Studentski trg 12-16, 11000 Belgrade, Serbia.

出版信息

Phys Chem Chem Phys. 2019 Nov 13;21(44):24554-24564. doi: 10.1039/c9cp02966d.

Abstract

Potential energy surfaces of borazine-benzene and borazine-borazine stacking interactions were studied by performing DFT, CCSD(T)/CBS and SAPT calculations. The strongest borazine-benzene stacking was found in a parallel-displaced geometry, with a CCSD(T)/CBS interaction energy of -3.46 kcal mol-1. The strongest borazine-borazine stacking has a sandwich geometry, with a CCSD(T)/CBS interaction energy of -3.57 kcal mol-1. The study showed that borazine forms significant stacking interactions at large horizontal displacements (over 4.5 Å), with energies of -2.20 kcal mol-1 for the borazine-benzene and -1.96 kcal mol-1 for the borazine-borazine system. The strength of interactions and their geometrical preferences can be rationalized by observing the electrostatic potentials of borazine and benzene, which is in agreement with SAPT analysis showing that electrostatics is the most important energy component for borazine stacking. All the interactions found in crystal structures of borazine and related compounds were identified either as potential curve minima or the geometries obtained from their optimizations. We also report a new dihydrogen bonding dimer with a CCSD(T)/CBS interaction energy of -2.37 kcal mol-1, which is encountered in the borazine crystal structures and enables the formation of additional simultaneous interactions that contribute to the overall stability of the crystals.

摘要

通过执行 DFT、CCSD(T)/CBS 和 SAPT 计算,研究了硼氮苯-苯和硼氮苯-硼氮苯堆积相互作用的势能面。发现硼氮苯-苯堆积的最强形式是平行位移几何,CCSD(T)/CBS 相互作用能为-3.46 kcal mol-1。最强的硼氮苯-硼氮苯堆积具有三明治几何形状,CCSD(T)/CBS 相互作用能为-3.57 kcal mol-1。研究表明,硼氮苯在较大的水平位移(超过 4.5 Å)下形成显著的堆积相互作用,硼氮苯-苯和硼氮苯-硼氮苯体系的能量分别为-2.20 和-1.96 kcal mol-1。相互作用的强度及其几何偏好可以通过观察硼氮苯和苯的静电势来合理化,这与 SAPT 分析一致,表明静电相互作用是硼氮苯堆积的最重要能量成分。在硼氮苯和相关化合物的晶体结构中发现的所有相互作用,无论是作为潜在曲线的最小值还是从它们的优化中获得的几何形状,都被识别出来。我们还报告了一个新的具有 CCSD(T)/CBS 相互作用能为-2.37 kcal mol-1的氢键二聚体,它存在于硼氮苯晶体结构中,能够形成额外的同时相互作用,有助于晶体的整体稳定性。

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