Aromaticity and kinetic stability of fullerene C36 isomers and their molecular ions

被引:0
作者
Ablikim Kerim
机构
[1] Xinjiang University,College of Chemistry & Chemical Engineering
来源
Journal of Molecular Modeling | 2011年 / 17卷
关键词
Aromaticity; C; Fullerene; NICS; Resonance energy;
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中图分类号
学科分类号
摘要
The aromatic character of fullerene C36 isomers was examined by the Hess-Schaad resonance energy (HSRE), topological resonance energy (TRE) and the percentage topological resonance energy (%TRE) models. According to the nucleus-independent chemical shift (NICS) at the cage center, C36 fullerene isomers must be highly aromatic with negative values. However, they are predicted to be antiaromatic with negative HSREs and negative TREs. The TRE method revealed that they all are aromatized by acquiring two or more electrons. NICSs at the cage center and the 2(N + 1)2 rule cannot be used as an indicator of the aromatic stabilization for C36 isomers and their molecular ions. We utilized the bond resonance energy (BRE) model to estimate the kinetic stability of C36 isomers and their molecular ions. C36 isomers are only stabilized kinetically in penta- and hexavalent molecular anions. All the results indicate that aromaticity and kinetic stability are closely related to the cyclic motion of π electrons.
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页码:3257 / 3263
页数:6
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