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An ab initio valence bond study on cyclopenta-fused naphthalenes and fluoranthenes

机译:从头开始的价环键合研究环戊基萘和氟

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To probe the effect of external cyclopenta-fusion on a naphthalene core, ab initio valence bond (VB) calculations have been performed, using strictly atomic benzene p-orbitals and p-orbitals that are allowed to delocalize, on naphthalene (1), acenaphthylene (2), pyracylene (3), cyclopenta[b,c]acenaphthylene (4), fluoranthene (5), and cyclopenta[cd]fluoranthene (6). For the related compounds 1-4 and 5,6 the total resonance energies (according to Pauling's definition) are similar. Partitioning of the total resonance energy in contributions from the possible 4n + 2 and 4n pi-electron conjugated circuits shows that only the 6 pi-electron conjugated circuits (benzene-like) contribute to the resonance energy. The results show that cyclopenta-fusion does not extend the 7 system in the ground state; the five-membered rings act as peri-substituents. As a consequence, the differences in (total) resonance energy do not coincide with the differences in thermodynamic stability. Notwithstanding, the relative energies of the Kekule structures can be estimated using Randic's conjugated circuits model.
机译:为了探究外部环戊五烯对萘核的影响,已使用准原子苯的p-轨道和允许在萘(1)上离的p-轨道进行离位价键(VB)的计算。 (2)是pyr并苯(3),环戊[b,c] ac(4),荧蒽(5)和环戊[cd]荧蒽(6)。对于相关的化合物1-4和5,6,总共振能量(根据鲍林的定义)相似。在可能的4n + 2和4nπ电子共轭电路的贡献中对总谐振能量进行分配显示,只有6个pi电子共轭电路(类苯)贡献了谐振能量。结果表明,在基态下,环戊喷并没有使7体系扩展。五元环充当取代基。结果,(总)共振能量的差异与热力学稳定性的差异不一致。尽管如此,可以使用Randic的共轭电路模型来估计Kekule结构的相对能量。

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