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Thermally activated delayed fluorescence blue dopants and hosts: from the design strategy to organic light-emitting diode applications

机译:热活化延迟荧光蓝掺杂剂和主体:从设计策略到有机发光二极管应用

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摘要

Thermally activated delayed fluorescence (TADF) materials have attracted much attention in the field of organic light-emitting diodes (OLEDs), with their state-of-the-art performance in terms of external quantum efficiencies (EQEs), turn-on voltages, and color coordinates. TADF materials exhibited EQEs above 25% due to harvesting both singlet and triplet excitons via reverse intersystem crossing (RISC). A small singlet-triplet energy gap (Delta E-ST) is essential for TADF materials to exhibit efficient upconversion from the lowest triplet excited state (T-1) to the lowest singlet excited state (S-1, T-1 -> S-1). Moreover, these materials are purely organic and thus not costly. Therefore, the TADF approach provides the best alternative to conventional fluorescent and phosphorescent OLEDs, regarding device efficiency and cost. On the other hand, blue light-emitting devices are facing several issues related to their stability and efficiency, making their development quite challenging for researchers. Herein, we review the recent advances in the use of blue TADF dopants and hosts in OLEDs.
机译:在有机发光二极管(OLED)领域,热激活延迟荧光(TADF)材料已经吸引了很多关注,它们在外部量子效率(EQE),开启电压,和颜色坐标。由于通过反向系统间杂交(RISC)收获了单重态和三重态激子,因此TADF材料的EQE高于25%。对于TADF材料而言,从最低的三重激发态(T-1)到最低的单重激发态(S-1,T-1-> S)有效上转换是必需的,一个小的单重态-三重态能隙(Delta E-ST)是必不可少的-1)。而且,这些材料是纯有机的,因此不昂贵。因此,就器件效率和成本而言,TADF方法是传统荧光和磷光OLED的最佳替代方案。另一方面,蓝色发光装置正面临与其稳定性和效率相关的几个问题,这使得它们的开发对研究人员而言是非常具有挑战性的。在本文中,我们回顾了在OLED中使用蓝色TADF掺杂剂和主体的最新进展。

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