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首页> 外文期刊>Chemical science >Molecular design to regulate the photophysical properties of multifunctional TADF emitters towards high-performance TADF-based OLEDs with EQEs up to 22.4% and small efficiency roll-offs
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Molecular design to regulate the photophysical properties of multifunctional TADF emitters towards high-performance TADF-based OLEDs with EQEs up to 22.4% and small efficiency roll-offs

机译:分子设计,可调节多功能TADF发射器的光物理特性,以实现基于EQE高达22.4%且效率下降小的高性能基于TADF的OLED

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摘要

Simultaneously achieving high efficiency and low efficiency roll-off remains a big challenge for OLEDs based on thermally activated delayed fluorescence (TADF) emitters. To address this issue, we elaborately designed and synthesized a series of new emitters with both TADF and aggregation-induced emission (AIE) properties by introducing 9,9-dimethyl-9,10-dihydroacridine (DMAC) or 10 H -phenoxazine (PXZ) as donor units into a quinoxaline framework. By tuning the electron-donating capability of the donor as well as the amount of donor unit, the photophysical properties of the TADF-AIE emitters can be systematically regulated, with emissions ranging from green to red. We demonstrated efficient doped OLEDs with a maximum EQE of 22.4%, a maximum current efficiency (CE _(max) ) of 80.3 cd A ~(?1) and a maximum power efficiency (PE _(max) ) of 64.1 lm W ~(?1) for the green device, and an EQE _(max) of 14.1%, a CE _(max) of 36.1 cd A ~(?1) and a PE _(max) of 28.1 lm W ~(?1) for the orange device. Remarkably, these orange devices rendered small roll-offs of 1.4% and 21.3% respectively at a luminance of 100 and 1000 cd m ~(?2) . Attributed to the unique TADF and AIE features, the non-doped devices perform outstandingly with an EQE _(max) of 12.0%, a CE _(max) of 41.2 cd A ~(?1) and a PE _(max) of 45.4 lm W ~(?1) .
机译:对于基于热激活延迟荧光(TADF)发射器的OLED,如何同时实现高效率和低效率滚降仍然是一个巨大的挑战。为了解决这个问题,我们精心设计和合成了一系列具有TADF和聚集诱导发射(AIE)特性的新型发射体,方法是引入9,9-二甲基-9,10-二氢ac啶(DMAC)或10 H-吩恶嗪(PXZ )作为喹喔啉框架的捐助单位。通过调节施主的电子施主能力以及施主单位的数量,可以系统地调节TADF-AIE发射体的光物理性质,发射范围从绿色到红色。我们展示了高效掺杂的OLED,其最大EQE为22.4%,最大电流效率(CE _(max))为80.3 cd A〜(?1),最大功率效率(PE _(max))为64.1 lm W〜 (?1)用于绿色设备,EQE _(max)为14.1%,CE _(max)为36.1 cd A〜(?1),PE _(max)为28.1 lm W〜(?1) )用于橙色设备。值得注意的是,这些橙色器件在100和1000 cd m〜(?2)的亮度下分别产生1.4%和21.3%的小滚降。由于具有独特的TADF和AIE特性,非掺杂器件的EQE _(max)为12.0%,CE _(max)为41.2 cd A〜(?1),PE _(max)为出色。 45.4 lm W〜(?1)。

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