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Rapid room temperature synthesis of red iridium(iii) complexes containing a four-membered Ir–S–C–S chelating ring for highly efficient OLEDs with EQE over 30%

机译:快速室温下合成具有四元Ir–SC–S螯合环的红色铱(iii)配合物,用于EQE超过30%的高效OLED

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Three red cyclometalated iridium( III ) complexes (4tfmpq) _(2) Ir(dipdtc), (4tfmpq) _(2) Ir(dpdtc) and (4tfmpq) _(2) Ir(Czdtc) (4tfmpq = 4-(4-(trifluoromethyl)phenyl)quinazoline, dipdtc = N , N -diisopropyl dithiocarbamate, dpdtc = N , N -diphenyl dithiocarbamate, and Czdtc = N -carbazolyl dithiocarbamate) containing the unique four-membered Ir–S–C–S backbone ring were synthesized in five minutes at room temperature with good yields, and the Gibbs free energy calculation results indicate that all reactions are exothermic and thermodynamically favorable processes. The emission colors ( λ _(peak) = 641–611 nm), photoluminescence quantum efficiencies ( Φ _(P) = 58.3–93.0%) and bipolar properties can be effectively regulated by introducing different electron-donating substituents into the dithiocarbamate ancillary ligands. Employing these emitters, organic light emitting diodes (OLEDs) with double emissive layers exhibit excellent performances with a maximum brightness over 60?000 cd m ~(?2) , a maximum current efficiency of 40.68 cd A ~(?1) , a maximum external quantum efficiency (EQE _(max) ) of 30.54%, and an EQE of 26.79% at the practical luminance of 1000 cd m ~(?2) . These results demonstrate that Ir( III ) complexes with sulfur-containing ligands can be rapidly synthesized at room temperature, which is key to the production of metal luminescent materials for large-scale application in highly efficient OLEDs.
机译:三个红色的环状金属化铱(III)配合物(4tfmpq)_(2)Ir(dipdtc),(4tfmpq)_(2)Ir(dpdtc)和(4tfmpq)_(2)Ir(Czdtc)(4tfmpq = 4-(4 -(三氟甲基)苯基)喹唑啉,dipdc = N,N-二异丙基二硫代氨基甲酸酯,dpdtc = N,N-二苯基二硫代氨基甲酸酯,和Czdtc = N-咔唑基二硫代氨基甲酸酯),含有独特的四元Ir–S–C–S主链环室温下在5分钟内合成,收率良好,吉布斯自由能计算结果表明,所有反应均为放热反应,是热力学上有利的过程。可以通过在二硫代氨基甲酸酯辅助配体中引入不同的供电子取代基来有效调节发射色(λ_(peak)= 641–611 nm),光致发光量子效率(Φ_(P)= 58.3–93.0%)和双极性特性。 。使用这些发射器,具有双发射层的有机发光二极管(OLED)表现出出色的性能,其最大亮度超过60?000 cd m〜(?2),最大电流效率为40.68 cd A〜(?1),最大在1000 cd m〜(?2)的实际亮度下,外部量子效率(EQE _(max))为30.54%,EQE为26.79%。这些结果表明,具有含硫配体的Ir(III)配合物可以在室温下快速合成,这对于生产大规模用于高效OLED的金属发光材料至关重要。

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