Liu Denghui, Yang Guo-Xi, Chen Zijian, Xie Wentao, Li Deli, Li Wei, Lin Jianying, Nie Xuewei, Li Zhizhi, Liang Baoyan, Yang Zhihai, Wang Zhiheng, Pu Junrong, Sun Guanwei, Shen Chenyang, Li Mengke, Su Shi-Jian
Guangdong Basic Research Center of Excellence for Energy and Information Polymer Materials, State Key Laboratory of Luminescent Materials and Devices, South China University of Technology, Wushan Road 381, Guangzhou, 510640, China.
Ji Hua Laboratory, Foshan, 528200, P. R. China.
Adv Mater. 2024 Aug;36(33):e2403584. doi: 10.1002/adma.202403584. Epub 2024 Jun 26.
Despite multiple-resonance thermally activated delayed fluorescence (MR-TADF) emitters with small full-width at half maximum are attractive for wide color-gamut display and eye-protection lighting applications, their inefficient reverse intersystem crossing (RISC) process and long exciton lifetime induce serious efficiency roll-off, which significantly limits their development. Herein, a novel device concept of building highly efficient tricomponent exciplex with multiple RISC channels is proposed to realize reduced exciton quenching and enhanced upconversion of nonradiative triplet excitons, and subsequently used as a host for high-performance MR-TADF organic light-emitting diodes (OLEDs). Compared with traditional binary exciplex, the tricomponent exciplex exhibits obviously improved photoluminescence quantum yield, emitting dipole orientation and RISC rate constant, and a record-breaking external quantum efficiency (EQE) of 30.4% is achieved for tricomponent exciplex p-PhBCzPh: PO-T2T: DspiroAc-TRZ (50: 20: 30) based OLED. Remarkably, maximum EQEs of 36.2% and 40.3% and ultralow efficiency roll-off with EQEs of 26.1% and 30.0% at 1000 cd m are respectively achieved for its sky-blue and pure-green MR-TADF doped OLEDs. Additionally, the blue emission unit hosted by tricomponent exciplex is combined with an orange-red TADF emission unit to achieve a double-emission-layer blue-hazard-free warm white OLED with an EQE of 30.3% and stable electroluminescence spectra over a wide brightness range.
尽管具有小半高宽的多共振热激活延迟荧光(MR-TADF)发射体对于广色域显示和护眼照明应用具有吸引力,但其低效的反向系间窜越(RISC)过程和长激子寿命会导致严重的效率滚降,这显著限制了它们的发展。在此,提出了一种构建具有多个RISC通道的高效三元激基复合物的新器件概念,以实现减少激子猝灭和增强非辐射三重态激子的上转换,并随后用作高性能MR-TADF有机发光二极管(OLED)的主体。与传统二元激基复合物相比,三元激基复合物表现出明显提高的光致发光量子产率、发射偶极子取向和RISC速率常数,基于三元激基复合物p-PhBCzPh:PO-T2T:DspiroAc-TRZ(50:20:30)的OLED实现了破纪录的30.4%的外量子效率(EQE)。值得注意的是,其天蓝色和纯绿色MR-TADF掺杂OLED分别实现了36.2%和40.3%的最大EQE以及在1000 cd m时EQE分别为26.1%和30.0%的超低效率滚降。此外,由三元激基复合物 hosting的蓝色发射单元与橙红色TADF发射单元相结合,实现了具有30.3%的EQE和在宽亮度范围内稳定电致发光光谱的双发射层无蓝光危害暖白色OLED。