Jalilov Almaz, Deats Spencer, Albukhari Muath, Zeller Matthias, Rosokha Sergiy V
Department of Chemistry, King Fahd University of Petroleum and Minerals, Dhahran, Saudi Arabia, 31261.
Department of Chemistry, Ball State University, Muncie IN, USA, 47306.
Chempluschem. 2020 Mar;85(3):441-449. doi: 10.1002/cplu.202000012.
Intermolecular interactions between halo-substituted p-benzoquinones (BQ) and halide anions were examined in solution, solid-state and/or in silico. While X-ray crystallography revealed only halogen bonding (XB) between tetraiodo-p-benzoquinone (I Q) and halides, the results of a UV-Vis study in solutions were consistent with the formation of 1 : 1 anion-π complexes. DFT computations showed that the anion-π complexes of halides with most halo-substituted BQ molecules were more stable (by 2-7 kcal/mol) than their XB analogues, but the stabilities of different complexes of I Q were essentially the same. Thus, the structural features of the co-crystals with I Q were related to multicenter XB interactions between BQs and halides, thus leading to the formation of 3D networks. The observation of anion-π complexes in solutions was attributed to their higher molar absorptivity (by more than an order of magnitude) than that of their XB analogues. Overall, the stabilities of anion-π and XB complexes between BQs and halides were well correlated with the values of highest electrostatic potentials on the surfaces of BQ molecules when their polarizations were taken into account.
在溶液、固态和/或计算机模拟中研究了卤代对苯醌(BQ)与卤离子之间的分子间相互作用。虽然X射线晶体学仅揭示了四碘对苯醌(I Q)与卤化物之间的卤键(XB),但溶液中的紫外-可见光谱研究结果与1:1阴离子-π配合物的形成一致。密度泛函理论计算表明,卤化物与大多数卤代BQ分子形成的阴离子-π配合物比其XB类似物更稳定(稳定2-7 kcal/mol),但I Q不同配合物的稳定性基本相同。因此,与I Q共晶体的结构特征与BQs和卤化物之间的多中心XB相互作用有关,从而导致三维网络的形成。溶液中阴离子-π配合物的观察结果归因于它们的摩尔吸光率比其XB类似物高(超过一个数量级)。总体而言,当考虑到BQ分子的极化时,BQs与卤化物之间阴离子-π和XB配合物的稳定性与BQ分子表面最高静电势的值密切相关。