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Density functional study on electronic structures and reactivity in methyl-substituted chelates used in organic light-emitting diodes

机译:有机发光二极管中甲基取代的螯合物的电子结构和反应性的密度泛函研究

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The electronic structure and reactivity trends of a set of tris-(n-methyl-8-quinolinolato) metal (III) (n = 0, 3, 4, 5; metal = Al ~(+3), Ga~(+3)) used as electrontransport layer in organic light-emitting diodes were studied and compared. All geometries were optimized at B3LYP/6-31G(d,p) level of theory. The geometries of the ground state (S _0) of unsubstituted molecules AlQ3 and GaQ3 were found to be slightly affected by the methyl group, which is in agreement with previous works. Methylderivatives conserve largely the electronic structures of AlQ3 and GaQ3. The energies of the frontier orbitals highest occupied and lowest unoccupied molecular orbital are raised by the electron-releasing effect of methyl group. Molecular orbital contribution analysis reveals that the orbital population is essentially the same for both MQ3 and their derivatives. Analyses of the ionization potential and electron affinity showed that MQ3 tend to be better hole-blockers than methylated analogues and 5Me-MQ3 have higher hole-injection capability than the other methyl-substituted derivatives. The global reactivity analysis showed that the electrophilicity index can be an indicator of electroninjection capability in these complexes. Local reactivity analysis showed that atomic sites that are prone to nucleophilic/electrophilic attack are atoms C-4 in L3/C-5 in L1.
机译:一组三-(n-甲基-8-喹啉金属)(III)的电子结构和反应性趋势(n = 0、3、4、5;金属= Al〜(+3),Ga〜(+3 ))在有机发光二极管中用作电子传输层,并进行了比较。所有几何形状都在B3LYP / 6-31G(d,p)的理论水平上进行了优化。发现未取代的分子AlQ3和GaQ3的基态(S _0)的几何形状受到甲基的轻微影响,这与以前的工作是一致的。甲基衍生物在很大程度上保留了AlQ3和GaQ3的电子结构。甲基的电子释放效应提高了最高占据和最低未占据分子轨道的前沿轨道的能量。分子轨道贡献分析表明,MQ3及其衍生物的轨道总数基本相同。对电离势和电子亲和力的分析表明,MQ3倾向于比甲基化类似物更好的空穴阻滞剂,而5Me-MQ3则比其他甲基取代的衍生物具有更高的空穴注入能力。整体反应性分析表明,亲电性指数可以指示这些配合物中电子注入能力。局部反应性分析表明,易于发生亲核/亲电攻击的原子位点是L3中的C-4 / L1中的C-5原子。

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