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Theoretical study on the electronic structures and phosphorescent properties of five bis-cyclometalated iridium(III) complexes with 2-phenylpyridinato ancillary ligand

机译:五种带有2-苯基吡啶并配体的双环金属化铱(III)配合物的电子结构和磷光性质的理论研究

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摘要

A DFT/TDDFT study was performed on five bis-cyclometalated iridium(III) complexes with the same ancillary ligand 2-phenylpyridinato (ppy) and main ligands with different substituted groups (—CH(CH_3)_2, —CH_3, —H, —F, and —NO_2). The geometry structures, electronic structures, absorption, and phosphorescent properties of the five iridium(lll) complexes have been investigated. Calculations of ionization potential and electron affinity were used to evaluate the injection abilities of holes and electrons into these complexes. The lowest energy absorption wavelengths are located at 408 nm for 1,407 nm for 2, 401 nm for 3, 381 nm for 4, and 556 nm for 5, respectively, in good agreement with the HOMO-LUMO energy gaps. The lowest energy emissions of these complexes are localized at 515, 514, 516, 518, and 567 nm at M052X level, respectively. The calculated results indicate that the complex 4 possibly possesses the largest k_r value among the five complexes. We hope that this theoretical work can provide constructive information for designing and synthesizing novel phosphorescent materials for use in the organic light-emitting diodes.
机译:DFT / TDDFT研究是对具有相同辅助配体2-苯基吡啶并(ppy)和具有不同取代基团(-CH(CH_3)_2,-CH_3,-H,- F和-NO_2)。已经研究了五个铱(III)配合物的几何结构,电子结构,吸收和磷光性质。使用电离势和电子亲和力的计算来评估空穴和电子向这些络合物的注入能力。最低的能量吸收波长分别位于408 nm,1,407 nm,2、401 nm,3、381 nm,5和556 nm,与HOMO-LUMO能隙高度吻合。这些复合物的最低能量发射分别位于M052X级别的515、514、516、518和567 nm。计算结果表明,复合物4可能在五个复合物中具有最大的k_r值。我们希望这项理论工作能够为设计和合成用于有机发光二极管的新型磷光材料提供建设性的信息。

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