Villaume Sebastien, Fogarty Heather A, Ottosson Henrik
Department of Biochemistry and Organic Chemistry, Box 576, Uppsala University, Uppsala, Sweden.
Chemphyschem. 2008 Feb 1;9(2):257-64. doi: 10.1002/cphc.200700540.
The pi contribution to the electron localization function (ELF) is used to compare 4npi- and (4n+2)pi-electron annulenes, with particular focus on the aromaticity of 4npi-electron annulenes in their lowest triplet state. The analysis is performed on the electron density obtained at the level of OLYP density functional theory, as well as at the CCSD and CASSCF ab initio levels. Two criteria for aromaticity of all-carbon annulenes are set up: the span in the bifurcation values DeltaBV(ELF(pi)) should be small, ideally zero, and the bifurcation value for ring closure of the pi basin RCBV(ELF(pi)) should be high (> or = 0.7). On the basis of these criteria, nearly all 4npi-electron annulenes are aromatic in their lowest triplet states, similar to (4n+2)pi-electron annulenes in their singlet ground states. For singlet biradical cyclobutadiene and cyclooctatetraene constrained to D4h and D8h symmetry, respectively, the RCBV(ELF(pi)) at the CASSCF level is lower (0.531 and 0.745) than for benzene (0.853), even though they have equal proportions of alpha- and beta-electrons.
π对电子定域函数(ELF)的贡献用于比较4nπ和(4n + 2)π电子轮烯,特别关注4nπ电子轮烯在其最低三重态的芳香性。分析是基于在OLYP密度泛函理论水平以及CCSD和CASSCF从头算水平上获得的电子密度进行的。建立了全碳轮烯芳香性的两个标准:分叉值DeltaBV(ELF(π))的跨度应较小,理想情况下为零,并且π盆地闭环的分叉值RCBV(ELF(π))应较高(≥0.7)。基于这些标准,几乎所有4nπ电子轮烯在其最低三重态都是芳香性的,类似于(4n + 2)π电子轮烯在其单重基态的情况。对于分别被限制为D4h和D8h对称性的单重双自由基环丁二烯和环辛四烯,在CASSCF水平下的RCBV(ELF(π))(分别为0.531和0.745)低于苯的(0.853),尽管它们具有相等比例的α电子和β电子。