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Benzoylpyridine-based TADF emitters with AIE feature for efficient non-doped OLEDs by both evaporation and solution process

机译:基于苯甲酰吡啶的TADF发射器,具有AIE特征,用于通过蒸发和溶液方法进行高效的非掺杂OLED

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摘要

Fluorescent materials taking both advantages of evaporation and solution processes are urgently explored for the development of efficient and simplified organic light-emitting diodes (OLEDs). Furthermore, it is another huge challenge for such materials to achieve excellent electroluminescence performances in non-doped OLEDs. Herein, two new emitters, named as PyB-DPAC and PyB-DMAC with 4-benzoylpyridine moiety as the electron acceptor and 9,9-diphenyl-9,10-dihydroacridine or 9,9-dimethyl-9,10-dihydroacridine as the electron donor were synthesized and explored. Both emitters exhibit distinct TADF character, typical AIE feature and relatively high photoluminescence quantum yields. Accordingly, we demonstrated efficient non-doped vacuum-deposited OLED based on the PyB-DPAC with a maximum external quantum efficiency (EQE) up to 9.7%, and meanwhile an extremely low efficiency roll-off of 1.7% at a high brightness of 1000 cd m(-2). In addition, an impressive EQE of 11.1% can be realized from the solution-processed non-doped devices with the using of PyB-DPAC emitter. These affirmative results manifest that TADF emitters incorporate with the benzoylpyridine acceptor enabling a promising molecular design strategy in adapt to the non-doped evaporation- and solution-processed highly efficient OLEDs.
机译:采用蒸发和溶液过程的荧光材料迫切地探索了有效和简化的有机发光二极管(OLED)的发展。此外,对于这种材料来实现非掺杂OLED的优异的电致发光性能是另一个巨大的挑战。这里,两个新的发射器,用4-苯甲酰吡啶部分命名为PyB-DPAC和PyB-DMAc作为电子受体和9,9-二苯基-9,10-二氢吖啶或9,9-二甲基-9,10-二氢吖啶作为其合成和探索电子给体。两个发射器都表现出明显的TADF特征,典型的AIE特征和相对高的光致发光量子产量。因此,我们基于PYB-DPAC证明了高效的非掺杂真空沉积的OLED,其最大外部量子效率高达9.7%,同时在1000的高亮度下极低的效率滚动为1.7% CD m(-2)。此外,令人印象深刻的11.1%的EQE可以通过PyB-DPAC发射器的使用,从解决方案处理的非掺杂器件实现。这些肯定的结果表明,TADF发射器掺入苯甲酰吡啶受体,使得有希望的分子设计策略适应非掺杂的蒸发和溶液加工的高效OLED。

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