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Rational design and characterization of heteroleptic phosphorescent iridium(III) complexes for highly efficient deep-blue OLEDs

机译:高效深蓝色OLED杂合磷光铱(III)配合物的合理设计和表征

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Two new deep-blue iridium(III) complexes, (dfpypy)(2)IrFptz (Ir1) and (Medfpypy) 2IrFptz (Ir2), comprising difluoro-bipyridyl (dfpypy) derivatives as cyclometaling ligands and a chelated pyridyl-triazole (Fptz) ancillary ligand are reported. The bipyridyl ligands lead to a significantly increased HOMO-LUMO gap and a hypsochromic shift of the phosphorescence compared to phenylpyridyl analogs. Density function theory (DFT) calculations and electrochemical measurements for Ir1 and Ir2 support their genuine blue phosphorescent emission. The combination of ancillary and cyclometalating ligands in Ir1 and Ir2 significantly influences the molecular orbitals of both complexes, leading to clearly distinct electron density distributions of the HOMO and LUMO compared with other blue-emitting Ir(III) derivatives. Both complexes Ir1 and Ir2 show deep-blue emission with lambda(max) values in the region of 435-465 nm with high PLQYs and short excited-state lifetimes. The phosphorescent organic light emitting diodes (PhOLEDs) based on Ir1 and Ir2 achieve remarkably high EL performance with low efficiency roll-off at high luminance. The bluest color (CIEx,y 0.14, 0.11) and the highest EL efficiency were achieved in the device based on Ir2 (Device 2), where the peak EQE/PE of 13.0%/11.2 lm W-1 together with the corresponding values of 12.6%/8.8 lm W-1 and 10.1%/5.0 lm W-1 at the practical luminances of 100 and 1000 cd m(-2) respectively, strongly compete with those of any deep-blue fluorescent and/or phosphorescent OLEDs with similar CIE coordinates previously reported.
机译:两种新的深蓝色铱(III)配合物(dfpypy)(2)IrFptz(Ir1)和(Medfpypy)2IrFptz(Ir2),包括作为环金属配体的二氟联吡啶基(dfpypy)衍生物和螯合的吡啶基三唑(Fptz)报告了辅助配体。与苯基吡啶基类似物相比,联吡啶基配体导致HOMO-LUMO间隙显着增加和磷光的七色移。 Ir1和Ir2的密度函数理论(DFT)计算和电化学测量支持其真正的蓝色磷光发射。 Ir1和Ir2中辅助配体和环金属配体的组合会显着影响两种配合物的分子轨道,与其他发出蓝光的Ir(III)衍生物相比,导致HOMO和LUMO的电子密度分布明显不同。配合物Ir1和Ir2均显示深蓝色发射,λ(max)值在435-465 nm范围内,具有较高的PLQY和较短的激发态寿命。基于Ir1和Ir2的磷光有机发光二极管(PhOLED)具有很高的EL性能,并且在高亮度下效率较低。在基于Ir2的设备(设备2)中,实现了最蓝色的颜色(CIEx,y 0.14、0.11)和最高的EL效率,其中EQE / PE的峰值为13.0%/ 11.2 lm W-1,且对应的值为在实际亮度分别为100和1000 cd m(-2)时,分别为12.6%/ 8.8 lm W-1和10.1%/ 5.0 lm W-1,可与具有类似色度的任何深蓝色荧光和/或磷光OLED强烈竞争先前报告的CIE坐标。

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