Department of Molecular Theory and Spectroscopy, Max-Planck-Institut für Kohlenforschung, Kaiser-Wilhelm-Platz 1, 45470, Mülheim an der Ruhr, Germany.
Institut für Chemie, Koordinationschemie, Technische Universität Chemnitz, Straße der Nationen 62, 09107, Chemnitz, Germany.
Chemistry. 2021 Oct 19;27(58):14520-14526. doi: 10.1002/chem.202102418. Epub 2021 Sep 13.
The noncovalent interactions of heavy pnictogens with π-arenes play a fundamental role in fields like crystal engineering or catalysis. The strength of such bonds is based on an interplay between dispersion and donor/acceptor interactions, and is generally attributed to the presence of π-arenes. Computational studies of the interaction between the heavy pnictogens As, Sb and Bi and cyclohexane, in comparison with previous studies on the interaction between heavy pnictogens and benzene, show that this concept probably has to be revised. A thorough analysis of all the different energetic components that play a role in these systems, carried out with state-of-the-art computational methods, sheds light on how they influence one another and the effect that their interplay has on the overall system. Furthermore, the analysis of such interactions leads us to the unexpected finding that the presence of the pnictogen compounds strongly affects the conformational equilibrium of cyclohexane, reversing the relative stability of the chair and boat-twist conformers, and thus suggesting a possible application of tuneable dispersion energy donors to stabilise the desired conformation.
重 pnictogens 与π-芳族化合物的非共价相互作用在晶体工程或催化等领域中起着重要作用。这些键的强度基于色散和供体/受体相互作用之间的相互作用,并且通常归因于π-芳族化合物的存在。与先前关于重 pnictogens 与苯之间相互作用的研究相比,对重 pnictogens As、Sb 和 Bi 与环己烷之间相互作用的计算研究表明,这一概念可能需要修订。使用最先进的计算方法对在这些体系中起作用的所有不同能量成分进行全面分析,揭示了它们如何相互影响以及它们的相互作用对整个体系的影响。此外,对这些相互作用的分析使我们意外地发现,磷属元素化合物的存在强烈影响环己烷的构象平衡,反转椅式和船扭式构象的相对稳定性,从而暗示可调节色散能供体可能有稳定所需构象的应用。