Szatyłowicz Halina, Krygowski Tadeusz M, Hobza Pavel
Faculty of Chemistry, Warsaw University of Technology, Noakowskiego 3, 00-664 Warsaw, Poland.
J Phys Chem A. 2007 Jan 11;111(1):170-5. doi: 10.1021/jp065336v.
The geometry and electronic structure of the amino group in aniline and its derivatives are very sensitive to both intramolecular interactions such as substituent effects and intermolecular ones such as H-bonding. An analysis of experimental geometries retrieved from the CSD base and computational modeling of aniline and its derivatives and their H-bonded complexes by use of B3LYP/6-311+G** and MP2/aug-cc-pVDZ showed that the degree of pyramidalization of the amino group depends on H-bonding, which exists in two forms, (i) NH...B (base) and (ii) N...HB (Brønsted acid), both of which affect the shape of the NH2 group. The effect may be significantly enhanced by a substituent through resonance interaction from electron-attracting substituents. The NH...B interactions lead to a substantial planarization of the group, whereas N...HB interactions do not. The natural bond orbital analysis allowed the authors to show that the changes in occupancy of the "lone pair" orbital and in geometry parameters describing pyramidalization of the group depend on the substituent constants.
苯胺及其衍生物中氨基的几何结构和电子结构对分子内相互作用(如取代基效应)和分子间相互作用(如氢键)都非常敏感。通过使用B3LYP/6-311+G** 和MP2/aug-cc-pVDZ对从CSD数据库检索到的实验几何结构以及苯胺及其衍生物及其氢键复合物进行计算建模分析表明,氨基的锥形化程度取决于氢键,氢键以两种形式存在,(i)NH...B(碱)和(ii)N...HB(布朗斯特酸),这两种形式都会影响NH₂基团的形状。吸电子取代基通过共振相互作用产生的取代基效应可能会显著增强这种影响。NH...B相互作用会导致该基团显著平面化,而N...HB相互作用则不会。自然键轨道分析使作者能够表明,“孤对”轨道占据情况的变化以及描述该基团锥形化的几何参数的变化取决于取代基常数。