Peng Xiaoluo, Zou Peng, Zeng Jiajie, Wu Xing, Xie Dian, Fu Yan, Yang Dezhi, Ma Dongge, Tang Ben Zhong, Zhao Zujin
State Key Laboratory of Luminescent Materials and Devices, Guangdong Provincial Key Laboratory of Luminescence from Molecular Aggregates, South China University of Technology, Guangzhou, 510640, China.
School of Science and Engineering, Shenzhen Institute of Aggregate Science and Technology, The Chinese University of Hong Kong, Shenzhen, Guangdong, 518172, China.
Angew Chem Int Ed Engl. 2024 Jul 15;63(29):e202405418. doi: 10.1002/anie.202405418. Epub 2024 Jun 10.
Purely organic molecules with room-temperature phosphorescence (RTP) are potential luminescent materials with high exciton utilization for organic light-emitting diodes (OLEDs), but those exhibiting superb electroluminescence (EL) performances are rarely explored, mainly due to their long phosphorescence lifetimes. Herein, a robust purely organic RTP molecule, 3,6-bis(5-phenylindolo[3,2-a]carbazol-12(5H)-yl)-xanthen-9-one (3,2-PIC-XT), is developed. The neat film of 3,2-PIC-XT shows strong green RTP with a very short lifetime (2.9 μs) and a high photoluminescence quantum yield (72 %), and behaviors balanced bipolar charge transport. The RTP nature of 3,2-PIC-XT is validated by steady-state and transient absorption and emission spectroscopies, and the working mechanism is deciphered by theoretical simulation. Non-doped multilayer OLEDs using thin neat films of 3,2-PIC-XT furnish an outstanding external quantum efficiency (EQE) of 24.91 % with an extremely low roll-off (1.6 %) at 1000 cd m. High-performance non-doped top-emitting and tandem OLEDs are also achieved, providing remarkable EQEs of 24.53 % and 42.50 %, respectively. Delightfully, non-doped simplified OLEDs employing thick neat films of 3,2-PIC-XT are also realized, furnishing an excellent EQE of 17.79 % and greatly enhanced operational lifetime. The temperature-dependent and transient EL spectroscopies demonstrate the electrophosphorescence attribute of 3,2-PIC-XT. These non-doped OLEDs are the best devices based on purely organic RTP materials reported so far.
具有室温磷光(RTP)的纯有机分子是用于有机发光二极管(OLED)的具有高激子利用率的潜在发光材料,但很少有人探索那些具有出色电致发光(EL)性能的分子,主要是因为它们的磷光寿命很长。在此,开发了一种坚固的纯有机RTP分子,即3,6-双(5-苯基吲哚并[3,2-a]咔唑-12(5H)-基)-呫吨-9-酮(3,2-PIC-XT)。3,2-PIC-XT的纯膜显示出强烈的绿色RTP,具有非常短的寿命(2.9微秒)和高光致发光量子产率(72%),并且具有平衡的双极电荷传输行为。通过稳态和瞬态吸收与发射光谱验证了3,2-PIC-XT的RTP性质,并通过理论模拟解释了其工作机制。使用3,2-PIC-XT的薄纯膜的非掺杂多层OLED具有24.91%的出色外量子效率(EQE),在1000 cd m时具有极低的滚降(1.6%)。还实现了高性能的非掺杂顶发射和串联OLED,分别提供了24.53%和42.50%的出色EQE。令人高兴的是,还实现了采用3,2-PIC-XT厚纯膜的非掺杂简化OLED,其具有17.79%的出色EQE和大大延长的工作寿命。温度相关和瞬态EL光谱证明了3,2-PIC-XT的电磷光特性。这些非掺杂OLED是迄今为止报道的基于纯有机RTP材料的最佳器件。