Krygowski Tadeusz M, Zachara-Horeglad Joanna E, Palusiak Marcin, Pelloni Stefano, Lazzeretti Paolo
Department of Chemistry, Warsaw University, Pasteura 1, 02-093 Warsaw, Poland.
J Org Chem. 2008 Mar 21;73(6):2138-45. doi: 10.1021/jo7023174. Epub 2008 Feb 28.
Detailed investigations of electronic effects taking place within the molecular system of o-hydroxy Schiff bases have been performed. The analysis of geometry, local and global aromaticity, selected AIM-based parameters, and finally, pi-electron currents induced in the systems under consideration have been performed on the basis of quantum chemical calculations at the B3LYP/6-311+G** level of theory. The relation between localization/delocalization of pi-electrons within the whole system has been described. It has been shown that the character of the bond which is common to the phenylic ring and the quasi-ring formed as a result of H-bond formation has a crucial impact on the strength of H-bonding. The strongest H-bonds can be observed for the systems in which the sequence of formally single and double bonds within the H-bridged quasi-ring enable a pi-electronic coupling. These observations indicate that pi-electron effects play a fundamental role in the stabilization of the hydrogen bridge within omicron-hydroxy Schiff bases. Analysis of pi-ring currents induced by a magnetic field perpendicular to the molecular plane of selected analyzed systems confirms these conclusions.
已对邻羟基席夫碱分子体系内发生的电子效应进行了详细研究。基于理论水平为B3LYP/6 - 311+G**的量子化学计算,对几何结构、局部和全局芳香性、选定的基于AIM的参数,以及最终在所研究体系中诱导的π电子电流进行了分析。描述了整个体系内π电子的定域化/离域化之间的关系。结果表明,苯环与因氢键形成而形成的准环共有的键的性质对氢键强度有至关重要的影响。对于那些在H桥连准环内形式上单键和双键的序列能够实现π电子耦合的体系,可以观察到最强的氢键。这些观察结果表明,π电子效应在邻羟基席夫碱中氢桥的稳定化中起着基本作用。对垂直于所选分析体系分子平面的磁场诱导的π环电流的分析证实了这些结论。