Aihara Jun-ichi
Department of Chemistry, Faculty of Science, Shizuoka University, Oya, Shizuoka 422-8529, Japan.
J Am Chem Soc. 2006 Mar 8;128(9):2873-9. doi: 10.1021/ja056430c.
Energetic and magnetic criteria of aromaticity are different in nature and sometimes make different predictions as to the aromaticity of a polycyclic pi-system. Thus, some charged polycyclic pi-systems are aromatic but paratropic. We derived the individual circuit contributions to aromaticity from the magnetic response of a polycyclic pi-system and named them circuit resonance energies (CREs). Each CRE has the same sign and essentially the same magnitude as the corresponding cyclic conjugation energy (CCE) defined by Bosanac and Gutman. Such CREs were found to play a crucial role in associating the energetic criteria for determining the degree of aromaticity with the magnetic ones. We can now interpret both energetic and magnetic criteria of aromaticity consistently in terms of CREs. Ring-current diamagnetism proved to be the tendency of a cyclic pi-system to retain aromatic stabilization energy (ASE) at the level of individual circuits.
芳香性的能量和磁性标准本质上是不同的,有时对于多环π体系的芳香性会做出不同的预测。因此,一些带电的多环π体系是芳香性的但却是抗磁的。我们从多环π体系的磁响应中得出了对芳香性的各个环电流贡献,并将它们命名为环电流共振能(CREs)。每个CRE与Bosanac和Gutman定义的相应的环状共轭能(CCE)具有相同的符号且大小基本相同。发现这种CREs在将确定芳香性程度的能量标准与磁性标准联系起来方面起着关键作用。现在我们可以根据CREs一致地解释芳香性的能量和磁性标准。环电流抗磁性被证明是环状π体系在各个环电流水平上保留芳香稳定能(ASE)的趋势。