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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Injection, Transport, Absorption and Phosphorescence Properties of a Series of Blue-Emitting Ir(III) Emitters in OLEDs: a DFT and Time-Dependent DFT Study
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Injection, Transport, Absorption and Phosphorescence Properties of a Series of Blue-Emitting Ir(III) Emitters in OLEDs: a DFT and Time-Dependent DFT Study

机译:OLED中一系列蓝色发射Ir(III)发射体的注入,传输,吸收和磷光性质:DFT和时变DFT研究

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Quantum-chemistry methods were explored to investigate the electronic structures, injection and transport properties, absorption and phosphorescence mechanism of a series of blue-emitting Ir(III) complexes {[(F-2-PPy)(2)Ir(pta -X/pyN4)], where F-2-PPY = (2,4-difluoro)phenylpyridine; pta = pyridine-1,2,4-triazole; X = phenyl(1); p-tolyl (2); 2,6-difluororophenyl (3); -CF3 (4), and pyN4 = pyridine-1,2,4-tetrazolate (5)}, which are used as emitters in organic light-emitting diodes (OLEDs). The mobility of hole and electron were studied computationally based on the Marcus theory. Calculations of Ionization potentials (IPs) and electron affinities (EAs) were used to evaluate the injection abilities of holes and electrons into these complexes. The reasons for the lower EL efficiency and phosphorescence quantum yields in 3-5 than in land 2 have been investigated. These new structure-property relationships can guide an improved design and optimization of OLED devices based on blue-emitting phosphorescent Ir(III) complexes.
机译:探索了量子化学方法研究一系列发蓝光的Ir(III)配合物{[(F-2-PPy)(2)Ir(pta -X)的电子结构,注入和输运性质,吸收和磷光机理。 / pyN4)],其中F-2-PPY =(2,4-二氟)苯基吡啶; pta =吡啶-1,2,4-三唑; X =苯基(1);对甲苯基(2); 2,6-二氟苯(3); -CF3(4)和pyN4 =吡啶-1,2,4-四唑酸酯(5)},它们用作有机发光二极管(OLED)的发射极。基于Marcus理论对空穴和电子的迁移率进行了计算研究。使用电离势(IPs)和电子亲和力(EAs)的计算来评估空穴和电子向这些络合物的注入能力。已经研究了在3-5中比焊盘2中的EL效率和磷光量子产率更低的原因。这些新的结构属性关系可以指导基于发蓝光的磷光Ir(III)配合物的OLED器件的改进设计和优化。

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