Aihara Jun-ichi, Kanno Hideaki, Ishida Toshimasa
Department of Chemistry, Faculty of Science, Shizuoka University, Oya, Shizuoka 422-8529, Japan.
J Am Chem Soc. 2005 Sep 28;127(38):13324-30. doi: 10.1021/ja053171i.
Low-energy boron clusters are characterized by two-dimensional geometry. Aromaticity of these planar boron clusters was established in terms of topological resonance energy (TRE). All planar boron clusters were found to be highly aromatic with large positive TREs even if they have 4n pi-electrons. Aromaticity must therefore be the origin of unusual planar or quasi-planar geometry. Thus, the aromaticity concept is as useful in boron chemistry as it is in general organic chemistry. It is evident that the Hückel 4n + 2 rule of aromaticity should not be applied to such polycyclic pi-systems. Some of the boron clusters are in the triplet electronic state to attain higher aromaticity. Multivalency and electron deficiency of boron atoms are responsible for lowering the energies of low-lying pi molecular orbitals and then for enhancing aromaticity. For polycyclic pi-systems, paratropicity does not always indicate antiaromaticity.
低能量硼簇具有二维几何结构。这些平面硼簇的芳香性是根据拓扑共振能(TRE)确定的。所有平面硼簇都被发现具有高度芳香性,TRE为大的正值,即使它们有4n个π电子。因此,芳香性必定是其不寻常的平面或准平面几何结构的起源。所以,芳香性概念在硼化学中与在一般有机化学中一样有用。显然,芳香性的休克尔4n + 2规则不适用于此类多环π体系。一些硼簇处于三重态电子状态以获得更高的芳香性。硼原子的多价性和电子不足导致低能π分子轨道的能量降低,进而增强了芳香性。对于多环π体系,同平面性并不总是表明具有反芳香性。