首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >The influence of the diphenylphosphoryl moiety on the phosphorescent properties of heteroleptic iridium(III) complexes and the OLED performance: a theoretical study
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The influence of the diphenylphosphoryl moiety on the phosphorescent properties of heteroleptic iridium(III) complexes and the OLED performance: a theoretical study

机译:二苯基磷酰基部分对杂配铱(III)配合物的磷光性质和OLED性能的影响:理论研究

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A series of heteroleptic iridium(III) complexes were investigated by using the density functional theory/time-dependent density functional theory (DFT/TD-DFT) approach to determine the influence of the diphenylphosphoryl (Ph2PO) moiety on the electronic structures, phosphorescent properties and the organic light-emitting diode (OLED) performance. The results reveal that the introduction of the Ph2PO group could not only dramatically change the electron density distributions of the LUMO and cause red shifts of the emission wavelengths, but also increase the oscillator strengths and the metal character, thus leading to larger radiative decay rates. Additionally, compared with Flrpic (a widely used kind of blue guest material in OLED devices), those complexes with Ph2PO substituents could improve the electron injection/balance ability, increase the Forster energy transfer rate and confine the triplet excitons to the guest phosphors, hence resulting in better OLED performance. Interestingly, further analysis indicates that, compared to IrpicPO with the Ph2PO group sited at the phenyl ring of the phenylpyridine (ppy) ligands, IrpicPOpy with the Ph2PO group sited at the pyridine ring of the ppy ligands performs better in the hole-trapping and hole-injection ability. Finally, we hope our investigations will facilitate the future design of high efficient phosphorescent materials.
机译:通过使用密度泛函理论/时间依赖性密度泛函理论(DFT / TD-DFT)方法研究了一系列杂配铱(III)配合物,以确定二苯基磷酰基(Ph2PO)部分对电子结构,磷光性质的影响以及有机发光二极管(OLED)的性能。结果表明,Ph2PO基的引入不仅可以显着改变LUMO的电子密度分布并引起发射波长的红移,而且可以增加振荡器的强度和金属特性,从而导致更大的辐射衰减率。此外,与Flrpic(OLED器件中广泛使用的一种蓝色客体材料)相比,那些具有Ph2PO取代基的配合物可以改善电子注入/平衡能力,提高Forster能量转移速率,并将三重态激子限制在客体磷光体中,因此导致更好的OLED性能。有趣的是,进一步的分析表明,与位于苯基吡啶(ppy)配体的苯基环上的Ph2PO基团的IrpicPO相比,位于ppy配体的吡啶环上的Ph2PO基团的IrpicPOpy在空穴捕获和空穴捕获方面表现更好。 -注射能力。最后,我们希望我们的研究将有助于未来高效磷光材料的设计。

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