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首页> 外文期刊>Journal of Molecular Modeling >Structure and electronic properties of Alq3 derivatives with electron acceptor/donor groups at the C4 positions of the quinolate ligands: a theoretical study
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Structure and electronic properties of Alq3 derivatives with electron acceptor/donor groups at the C4 positions of the quinolate ligands: a theoretical study

机译:具有喹诺酮配体C4位电子受体基团的Alq3衍生物的结构和电子性质:理论研究

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摘要

The molecular structures of the ground (S0) and first singlet excited (S1) states of Alq3 derivatives in which pyrazolyl and 3-methylpyrazolyl groups are substituted at the C4 positions of the 8-hydroxyquinolate ligands as electron acceptors, and piperidinyl and N-methylpiperazinyl groups are substituted at the same positions as electron donors, have been optimized using the B3LYP/6-31G* and CIS/6-31G* methods, respectively. In order to analyze the electronic transitions in these derivatives, the frontier molecular orbital characteristics were analyzed systematically, and it was found that the highest occupied molecular orbital is localized on the A ligand while the lowest unoccupied molecular orbital is localized on the B ligand in their ground states, similar to what is seen for mer-Alq3. The absorption and emission spectra were evaluated at the TD-PBE0/6-31G* level, and it was observed that electron acceptor substitution causes a red-shift in the emission spectra, which is also seen experimentally. The reorganization energies were calculated at the B3LYP/6-31G* level and the results show that acceptor/donor substitution has a significant effect on the intrinsic charge mobilities of these derivatives as compared to mer-Alq3.
机译:Alq3衍生物的基态(S 0 )和第一单重激发态(S 1 )的分子结构,其中吡唑基和3-甲基吡唑基在C4位置被取代分别使用B3LYP / 6-31G *和CIS / 6-31G *优化了8-羟基喹啉配体作为电子受体的位置,哌啶基和N-甲基哌嗪基在与电子给体相同的位置被取代。为了分析这些衍生物的电子跃迁,系统地分析了前沿分子轨道特征,发现占据最高的分子轨道位于A配体上,而最低的未占据分子轨道位于B配体上基态,类似于mer-Alq3。在TD-PBE0 / 6-31G *水平下评估吸收和发射光谱,并且观察到电子受体取代引起发射光谱中的红移,这也在实验中可见。在B3LYP / 6-31G *水平上计算重组能,结果表明,与mer-Alq3相比,受体/供体取代对这些衍生物的固有电荷迁移率具有重要影响。

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