Hayashi Satoko, Sugibayashi Yuji, Nakanishi Waro
Faculty of Systems Engineering, Wakayama University 930 Sakaedani Wakayama 640-8510 Japan
RSC Adv. 2018 May 3;8(29):16349-16361. doi: 10.1039/c8ra01862f. eCollection 2018 Apr 27.
The dynamic and static nature of XH--π and YX--π in the coronene π-system (π(CH)) is elucidated by QTAIM dual functional analysis, where * emphasizes the presence of bond critical points (BCPs) in the interactions. The nature of the interactions is elucidated by analysing the plots of the total electron energy densities ( ) ( ) - ( )/2 [=( /8)∇ ( )] for the interactions at BCPs, where ( ) are the potential energy densities at the BCPs. The data for the perturbed structures around the fully optimized structures are employed for the plots in addition to those of the fully optimized structures. The plots are analysed using the polar coordinate of (, ) for the data of the fully optimized structures, while those containing the perturbed structures are analysed using ( , ), where corresponds to the tangent line of each plot and is the curvature. Whereas (, ) show the static nature, ( , ) represent the dynamic nature of the interactions. All interactions in X-H--π(CH) (X = F, Cl, Br and I) and Y-X--π(CH) (Y-X = F-F, Cl-Cl, Br-Br, I-I, F-Cl, F-Br and F-I) are classified by pure CS (closed shell) interactions and are characterized as having the vdW nature, except for X-H = F-H and Y-X = F-Cl, F-Br and F-I, which show the typical-HB nature without covalency. The structural features of the complexes are also discussed.
通过量子拓扑原子间相互作用分子轨道(QTAIM)双泛函分析阐明了并五苯π体系(π(CH))中XH--π和YX--π的动态和静态性质,其中强调相互作用中键临界点(BCP)的存在。通过分析BCP处相互作用的总电子能量密度( ) ( ) - ( )/2 [=( /8)∇ ( )]的图来阐明相互作用的性质,其中 ( )是BCP处的势能密度。除了完全优化结构的数据外,还使用完全优化结构周围微扰结构的数据来绘制这些图。对于完全优化结构的数据,使用(, )的极坐标来分析这些图,而对于包含微扰结构的图,则使用(, )来分析,其中 对应于每个图的切线, 是曲率。虽然(, )显示了相互作用的静态性质,但(, )代表了相互作用的动态性质。X-H--π(CH)(X = F、Cl、Br和I)和Y-X-*-π(CH)(Y-X = F-F、Cl-Cl、Br-Br、I-I、F-Cl、F-Br和F-I)中的所有相互作用都归类为纯闭壳(CS)相互作用,并被表征为具有范德华性质,但X-H = F-H和Y-X = F-Cl、F-Br和F-I除外,它们显示出典型的氢键性质且无共价性。还讨论了配合物的结构特征。