Wang Shuanglong, Qiao Mengya, Ye Zhonghua, Dou Dehai, Chen Minyu, Peng Yan, Shi Ying, Yang Xuyong, Cui Lei, Li Jiuyan, Li Chunju, Wei Bin, Wong Wai-Yeung
School of Mechatronic Engineering and Automation, Key Laboratory of Advanced Display and System Applications, Ministry of Education, Shanghai University, 149 Yanchang Road, Shanghai, 200072, P. R. China.
Department of Chemistry, Center for Supramolecular Chemistry and Catalysis, Shanghai University, 99 Shangda Road, Shanghai 200444, P. R. China.
iScience. 2018 Nov 30;9:532-541. doi: 10.1016/j.isci.2018.10.026. Epub 2018 Nov 1.
The design of blue fluorescent materials combining both deep-blue emission (CIE<0.06) and high-efficiency climbing over the typically limited exciton production efficiency of 25% is a challenge for organic light-emitting diodes (OLEDs). In this work, we have synthesized two blue luminogens, trans-9,10-bis(2-butoxyphenyl)anthracene (BBPA) and trans-9,10-bis (2,4-dimethoxyphenyl)anthracene with high photoluminescence quantum yields (PLQYs) of 89.5% and 87.0%, respectively. Intriguingly, we have proposed a strategy to avoid aggregation-caused quenching, which can effectively reduce the undesirable excimeric emission by introducing two host matrices with twisted molecular structure, 9,10-di(naphth-2-yl) anthracene and 10,10'-bis-(4-fluorophenyl)-3,3'-dimethyl-9,9'-bianthracene (MBAn-(4)-F), in the BBPA emission layer. The device containing the EML of BBPA-doped MBAn-(4)-F exhibited a high external quantum efficiency of 10.27% for deep-blue emission with the Commission International de L'Eclairage CIE coordinates of (0.15, 0.05) via the steric effect. Importantly, this represents an advance in deep-blue-emitting fluorescent OLED architectures and materials that meet the requirements of high-definition display.
设计兼具深蓝色发射(CIE<0.06)和高效率且突破典型的25%受限激子产生效率的蓝色荧光材料,对有机发光二极管(OLED)来说是一项挑战。在这项工作中,我们合成了两种蓝色发光体,反式-9,10-双(2-丁氧基苯基)蒽(BBPA)和反式-9,10-双(2,4-二甲氧基苯基)蒽,其光致发光量子产率(PLQYs)分别高达89.5%和87.0%。有趣的是,我们提出了一种避免聚集猝灭的策略,通过在BBPA发射层中引入两种具有扭曲分子结构的主体基质,9,10-二(萘-2-基)蒽和10,10'-双-(4-氟苯基)-3,3'-二甲基-9,9'-联蒽(MBAn-(4)-F),可以有效减少不希望的激基缔合物发射。含有BBPA掺杂MBAn-(4)-F的发射层的器件,通过空间效应实现了深蓝色发射,国际照明委员会(CIE)坐标为(0.15, 0.05),其外部量子效率高达10.27%。重要的是,这代表了满足高清显示要求的深蓝色发射荧光OLED架构和材料方面的一项进展。