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Modern valence-bond descriptions of polycyclic fused aromatic compounds involving cyclopropenyl rings

机译:多环稠合芳族化合物的现代价值键描述涉及环丙烯基环

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The feasibilities and electronic structures of five ten-pi-electron fused conjugated molecules involving cyclopropenyl rings are explored using second-order Moller-Plesset perturbation theory (MP2), spin coupled (SC) and complete-active-space self-consistent-field (CASSCF) wavefunctions, in the cc-pVTZ basis. All five fused conjugated molecules are predicted to have rigid planar ground state geometries of C-2v or D-2h symmetry and large dipole moments (if not of D-2h, symmetry). The compact ground state SC(10) wavefunctions with ten active orbitals for these molecules are found to be of comparable quality to the respective CASSCF(10,10) constructions, but much easier to interpret. The analyses of the ground state SC(10) wavefunctions for all five fused conjugated molecules reveal resonance patterns which indicate that all of these molecules are aromatic in their electronic ground states; on the other hand, the SC (10) approximations to the first singlet electronic excited states are found to exhibit "antiresonance" which suggests that each of the five molecules switches from aromatic to antiaromatic upon vertical excitation from the ground state to its first singlet excited state. Ring strain prevents the formation of a fused structure involving three cyclopropenyl rings and a cycloheptatrienyl ring; the alternative stable dehydro compound which resembles m-benzyne is shown, using a SC(12) wavefunction, to involve a weak sigma bond between the dehydro centres. (C) 2017 Elsevier B.V. All rights reserved.
机译:使用二阶Moller-Plesbert扰动理论(MP2),旋转耦合(SC)和完整的有效空间自我支撑场( CASSCF)波力事件,在CC-PVTZ基础上。预计所有五个融合的分子具有C-2V或D-2H对称性的刚性平面地几何形状和大偶极矩(如果不是D-2H,对称性)。对于这些分子的具有十个活性轨道的紧凑型接地状态Sc(10)波力发生在相应的CASSCF(10,10)结构上具有相当的质量,但更容易解释。所有五个融合缀合分子的地态Sc(10)波力发生的分析揭示了共振模式,表明所有这些分子在其电子地面态中是芳香族的;另一方面,发现SC(10)对第一单线电子激发态的近似表现出“反谐振”,这表明五个分子中的每一个在垂直激发到其第一个兴奋的第一单态垂直激发时从芳族转换为抗星族。状态。环菌菌株防止形成涉及三个环丙酮环和环庚烷环的融合结构;使用SC(12)挥发性,示出了类似于M-苯并的替代稳定的脱氢化合物,以涉及脱氢中心之间的弱Sigma键。 (c)2017 Elsevier B.v.保留所有权利。

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