首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Molecular engineering of thermally activated delayed fluorescence emitters to concurrently achieve high performance and reduced efficiency roll-off in organic light-emitting diodes
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Molecular engineering of thermally activated delayed fluorescence emitters to concurrently achieve high performance and reduced efficiency roll-off in organic light-emitting diodes

机译:热活化延迟荧光发射器的分子工程在有机发光二极管中同时实现高性能和降低的效率滚动

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Thermally activated delayed fluorescence (TADF) emitter based organic light-emitting diodes (OLEDs) utilizing both singlet and triplet excitons are considered as the most promising third-generation technology for lighting and display. Simultaneously high external quantum efficiency and luminance are highly desirable for these practical applications. However, the severe efficiency roll-off at high luminance that is involved with triplet exciton annihilation is a remaining problem for TADF OLEDs, which is mainly related to the reverse intersystem crossing (rISC) from the triplet to the singlet states. To date, the relationship between the rISC process and molecular design of TADF emitters is still unclear, and a rational molecular design strategy to solve this dilemma has not been established. In this study, we propose an approach to design two TADF emitters, m-2SPAc-PPM and o-2SPAc-PPM, with a sterically crowded configuration and strong spin-vibronic coupling. As expected, o-2SPAc-PPM exhibits a k(rISC) as high as 3.55 x 10(7) s(-1), and a short triplet exciton lifetime of 5.36 mu s. As a result, the TADF OLEDs based on o-2SPAc-PPM achieved remarkably high external quantum efficiencies (EQEs) of up to 24.8% with a brightness as high as 24 200 cd m(-2) and a concurrent significantly reduced efficiency roll-off, which fulfills the requirements for practical high luminance.
机译:利用单线和三重态激子的热活化延迟荧光(TADF)基于发光的有机发光二极管(OLED)被认为是用于照明和显示的最有前列的第三代技术。对于这些实际应用,非常希望高外部量子效率和亮度。然而,涉及三重态激子湮灭的高亮度的严重效率滚动是TADF OLED的剩余问题,其主要与从三联网中的反向流线交叉(RISC)相关的问题。迄今为止,塔德夫发射器的RISC工艺与分子设计之间的关系尚不清楚,解决了解决这种困境的合理分子设计策略。在这项研究中,我们提出了一种设计两种TADF发射器,M-2SPAC-PPM和O-2Spac-PPM的方法,具有空中拥挤的配置和强大的旋转式振动耦合。正如预期的那样,O-2SPAC-PPM表现出高达3.55×10(7)次(-1)的K(RISC),并且短三重型激子寿命为5.36亩。结果,基于O-2Spac-PPM的TADF OLED在高达24.8%的高达24.8%的高度高达24.8%的高达24.8%的塔德多醛含量高达24℃(-2),并且同时显着降低效率卷 - 关闭,满足实用高亮度的要求。

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