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首页> 外文期刊>Bulletin of the Korean Chemical Society >A Density Functional Theory Study of an Exciplex II: Benzene and Tricyanobenzene
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A Density Functional Theory Study of an Exciplex II: Benzene and Tricyanobenzene

机译:Exciplex II:苯和三氰苯的密度泛函理论研究

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The exciplex of benzene-tricyanobenzene was theoretically investigated at the levels of density functional theory (DFT) and its time-dependent variation within Tamm-Dancoff approximation (TDA-DFT) using coB97X functional and 6-311++G(d,p) basis set. Unlike the benzene and pyridine system studied previously, the charge transfer (CT) character from benzene, the electron donor to tricyanobenzene, the electron acceptor, is observed to be significant in a few low-lying singlet excited states. Via the crossing and mixing between the states of the same symmetry, however, we also observe the mixed characters between the CT and local excitation (LE) as the intermolecular distance decreases. In the comparison to the benzene-pyridine complex, the enriched CT characters in the low-lying singlet states stem from the significant energy offsets between the frontier molecular orbitals of benzene and tricyanobenzene, which suppresses their molecular orbital interactions and hence their derealization.
机译:在理论上,在密度泛函理论(DFT)水平和Tamm-Dancoff近似(TDA-DFT)的水平上理论上研究了苯三氰基苯的基础链接性,使用COB97x功能和6-311 ++ g(d,p) 基础集。 与先前研究的苯和吡啶系统不同,从少数低谎言单线兴奋状态下观察到来自苯的电荷转移(CT)特征,电子对苯并二丙烯苯,电子受体是显着的。 然而,通过相同对称的态之间的交叉和混合,我们还观察到CT和局部激励(LE)之间的混合特性,因为分子间距离减小。 在与苯吡啶络合物的比较中,低位单态态浓缩的CT字符源于苯和三氰苯的前端分子轨道之间的显着能量偏移,这抑制了它们的分子轨道相互作用,因此致命。

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