Melikova Sona M, Voronin Alexander P, Panek Jaroslaw, Frolov Nikita E, Shishkina Anastasia V, Rykounov Alexey A, Tretyakov Peter Yu, Vener Mikhail V
Saint Petersburg State University Saint Petersburg Russia.
G. A. Krestov Institute of Solution Chemistry of RAS Ivanovo Russia.
RSC Adv. 2020 Jul 27;10(47):27899-27910. doi: 10.1039/d0ra04799f.
This paper bridges the gap between high-level computations of gas-phase models of 1 : 1 arene-arene complexes and calculations of the two-component (binary) organic crystals using atom-atom potentials. The studied crystals consist of electron-rich and electron-deficient compounds, which form infinite stacks (columns) of heterodimers. The sublimation enthalpy of crystals has been evaluated by DFT periodic calculations, while intermolecular interactions have been characterized by Bader analysis of the periodic electronic density. The consideration of aromatic compounds without a dipole moment makes it possible to reveal the contribution of quadrupole-quadrupole interactions to the π-stacking energy. These interactions are significant for heterodimers formed by arenes with more than 2 rings, with absolute values of the traceless quadrupole moment ( ) larger than 10 D Å. The further aggregation of neighboring stacks is due to the C-H⋯F interactions in arene/perfluoroarene crystals. In crystals consisting of arene and an electron-deficient compound such as pyromellitic dianhydride, aggregation occurs due to the C-H⋯O interactions. The C-H⋯F and C-H⋯O inter-stacking interactions make the main contribution to the sublimation enthalpy, which exceeds 150 kJ mol for the two-component crystals formed by arenes with more than 2 rings.
本文弥合了1:1芳烃 - 芳烃配合物气相模型的高级计算与使用原子 - 原子势计算双组分(二元)有机晶体之间的差距。所研究的晶体由富电子和缺电子化合物组成,它们形成异二聚体的无限堆叠(柱)。晶体的升华焓已通过DFT周期性计算进行评估,而分子间相互作用已通过对周期性电子密度的巴德分析进行表征。对没有偶极矩的芳香族化合物的考虑使得揭示四极 - 四极相互作用对π堆积能的贡献成为可能。这些相互作用对于由具有超过2个环的芳烃形成的异二聚体很重要,其无迹四极矩( )的绝对值大于10 D Å。相邻堆叠的进一步聚集是由于芳烃/全氟芳烃晶体中的C - H⋯F相互作用。在由芳烃和诸如均苯四甲酸二酐等缺电子化合物组成的晶体中,聚集是由于C - H⋯O相互作用。C - H⋯F和C - H⋯O层间堆叠相互作用对升华焓起主要作用,对于由具有超过2个环的芳烃形成的双组分晶体,升华焓超过150 kJ/mol。