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Tailoring the Spectra of White Organic Light-Emitting Devices by Trap Effect of a Concentration-Insensitive Dopant

机译:通过浓度不敏感掺杂剂的捕获效应来定制白色有机发光器件的光谱

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摘要

Highly efficient phosphorescent organic light-emitting devices (PhOLEDs) had been fabricated by using a novel iridium complex, bis[2-(3′,5′-di-tert-butylbiphenyl-4-yl)benzothiazolato-N,C2′]iridium(III) (acetylacetonate) [(tbpbt)2Ir(acac)], as the emitter. With a wide doping ratio ranging from 15 wt% to 25 wt%, the PhOLEDs maintained a comparable high performance, indicating concentration-insensitive property of the (tbpbt)2Ir(acac). On the basis of the unique characteristic of concentration insensitivity, the application of this phosphor was explored by fabricating white organic light-emitting devices (WOLEDs) with altered doping ratio, indicating that trap effect of (tbpbt)2Ir(acac) could effectively tailor WOLEDs spectra. Typically, a high-power efficiency, current efficiency, and external quantum efficiency of 30.0 lm/W, 38.8 cd/A, 18.1%, were achieved by 20 wt% doped WOLEDs.
机译:通过使用新的铱络合物,BIS [2-(3',5'-二叔丁基苯苯基-4-苯基-4-基)苯并噻唑-N,C2']铱,已经制造了高效的磷光有机发光器件(PHOLED) (III)(乙酰丙酮)[(TBPBT)2杆(ACAC)],作为发射器。具有宽的掺杂比率范围为15wt%至25wt%,Pholeds保持了相当的高性能,表明(TBPBT)2符(ACAC)的浓度不敏感性能。在浓度不敏感性的独特特征的基础上,通过制造具有改变的掺杂比的白色有机发光器件(Woled)来探索该磷光体的应用,表明(TBPBT)2IR(ACAC)的陷阱效应可以有效地定制涡旋光谱。通常,通过20wt%掺杂的磨损,实现高功率效率,电流效率,38.8℃,38.8℃,38.1%的外量子效率。

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