Department of Chemistry and Biochemistry, Utah State University, Logan, Utah 84322-0300, United States.
J Phys Chem A. 2022 Jun 30;126(25):4025-4035. doi: 10.1021/acs.jpca.2c02451. Epub 2022 Jun 21.
The chalcogen Y atom in the aromatic ring of thiophene and its derivatives YCH (Y = S, Se, Te) can engage in a number of different interactions with another such unit within the homodimer. Quantum calculations show that the two rings can be oriented perpendicular to one another in a T-shaped dimer in which the Y atom accepts electron density from the π-system of the other unit in a Y···π chalcogen bond (ChB). This geometry best takes advantage of attractions between the electrostatic potentials surrounding the two monomers. There are two other geometries in which the two Y atoms engage in a ChB with one another. However, instead of a simple interaction between a σ-hole on one Y and the lone pair of its neighbor, the interaction is better described as a pair of symmetrically equivalent Y···Y interactions, in which charge is transferred in both directions simultaneously, thereby effectively doubling the strength of the bond. These geometries differ from what might be expected based simply on the juxtaposition of the electrostatic potentials of the two monomers.
噻吩及其衍生物的芳香环中的硫属 Y 原子(Y=S、Se、Te)可以与同二聚体中的另一个这样的单元发生多种不同的相互作用。量子计算表明,两个环可以在 T 型二聚体中彼此垂直定向,其中 Y 原子在 Y···π 硫属键(ChB)中接受来自另一个单元的π 体系的电子密度。这种几何形状最好地利用了两个单体周围静电势之间的吸引力。还有另外两种几何形状,其中两个 Y 原子彼此之间发生 ChB。然而,这种相互作用不是一个 Y 上的 σ 空穴与相邻孤对电子之间的简单相互作用,而是可以更好地描述为一对对称等效的 Y···Y 相互作用,其中电荷同时向两个方向转移,从而有效地使键的强度加倍。这些几何形状与仅仅基于两个单体的静电势并置可能预期的不同。