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Theoretical Studies on the Electronic Structures and Spectral Properties of Two Iridium(III) Complexes with Tetraphenylimidodiphosphinate Ligand

机译:用四苯基咪唑膦配体的两铱(III)配合物的电子结构和光谱特性的理论研究

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The geometrical structures, electronic structures, and spectral properties of two Ir(III) complexes with tetraphenylimidodiphosphinate ligand were investigated theoretically. The ground and the lowest lying triplet excited states were fully optimized at the B3LYP/LANL2DZ. TDDFT/PCM calculations have been employed to predict the absorption and emission spectra starting from the ground and excited state geometries, respectively. The lowest lying absorptions were calculated to be at 436 and 405 nm for the two Ir(III) complexes, respectively, and they have the transition configuration of HOMO → LUMO. The lowest lying transitions can be assigned as metal/ligand-to-ligand charge transfer (MLCT/LLCT) character for the two Ir(III) complexes. Ionization potentials (IP) and electron affinities (EA) were calculated to evaluate the injection abilities of holes and electrons. The theoretical results can be expected to provide valuable information to design new OLED materials.
机译:从理论上研究了两种IR(III)复合物的几何结构,电子结构和光谱性质。 在B3LYP / LANL2DZ上完全优化地面和最低躺式三联兴奋状态。 已经采用TDDFT / PCM计算来预测从地面和激发状态几何形状开始的吸收和发射光谱。 对于两种IR(III)复合物,分别计算最低的卧式吸收,分别为436和405nm,并且它们具有Homo→Lumo的过渡构型。 最低姿势过渡可以分配为两种IR(III)配合物的金属/配体 - 配体电荷转移(MLCT / L1CT)特征。 计算电离电位(IP)和电子亲素(EA)以评估孔和电子的注射能力。 可以预期理论结果可以提供设计新的OLED材料的宝贵信息。

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