Bora Pankaj Lochan, Novák Martin, Novotný Jan, Foroutan-Nejad Cina, Marek Radek
CEITEC-Central European Institute of Technology, Masaryk University, Kamenice 5, 62500, Brno, Czech Republic.
Department of Chemistry, Faculty of Science, Masaryk University, Kamenice 5, 62500, Brno, Czech Republic.
Chemistry. 2017 May 29;23(30):7315-7323. doi: 10.1002/chem.201700179. Epub 2017 Apr 26.
Supramolecular interactions are generally classified as noncovalent. However, recent studies have demonstrated that many of these interactions are stabilized by a significant covalent component. Herein, for systems of the general structure [MX ] :YX (M=Se or Pt; Y=S, Se, or Te; X=F, Cl, Br, I), featuring bifurcated chalcogen bonding, it is shown that, although electrostatic parameters are useful for estimating the long-range electrostatic component of the interaction, they fail to predict the correct order of binding energies in a series of compounds. Instead, the Lewis basicity of the individual substituents X on the chalcogen atom governs the trends in the binding energies through fine-tuning the covalent character of the chalcogen bond. The effects of substituents on the binding energy and supramolecular electron sharing are consistently identified by an arsenal of theoretical methods, ranging from approaches based on the quantum chemical topology to analytical tools based on the localized molecular orbitals. The chalcogen bonding investigated herein is driven by orbital interactions with significant electron sharing; this can be designated as supramolecular covalence.
超分子相互作用通常被归类为非共价相互作用。然而,最近的研究表明,其中许多相互作用通过显著的共价成分得以稳定。在此,对于具有分叉硫族元素键的通式为[MX ] :YX(M = Se或Pt;Y = S、Se或Te;X = F、Cl、Br、I)的体系,结果表明,尽管静电参数有助于估算相互作用的长程静电成分,但它们无法预测一系列化合物中结合能的正确顺序。相反,硫族元素原子上各个取代基X的路易斯碱性通过微调硫族元素键的共价性质来控制结合能的趋势。从基于量子化学拓扑的方法到基于定域分子轨道的分析工具等一系列理论方法,一致地确定了取代基对结合能和超分子电子共享的影响。本文所研究的硫族元素键是由具有显著电子共享的轨道相互作用驱动的;这可被称为超分子共价性。