Jiang Tao, Qin Jiayi, Lin Jieyu, Lin Xiaoxuan, Liu Wei, Xie Zhixin, Redshaw Carl, Zhao Zujin, Feng Xing
Guangdong Provincial Key Laboratory of Functional Soft Condensed Matter, School of Materials and Energy, Guangdong University of Technology, Guangzhou 510006, P. R. China.
State Key Laboratory of Luminescent Materials and Devices, Guangdong Provincial Key Laboratory of Luminescence from Molecular, Aggregates, South China University of Technology, Guangzhou 510640, P. R. China.
ACS Appl Mater Interfaces. 2025 Jul 30;17(30):43339-43351. doi: 10.1021/acsami.5c08493. Epub 2025 Jul 17.
Hybridized local and charge-transfer (HLCT) excited-state emitters have garnered significant attention due to their ability to efficiently utilize triplet excitons. Pyreno[4,5-]imidazole (PyI) is considered an outstanding building block for constructing HLCT blue emitters. To understand the influence of the substituent position, the electronic effect, and the steric effect of the PyI substituents on the optical behavior and the electronic transition in the excited state, herein, a set of -shaped and -shaped PyI-based blue emitters has been designed and synthesized. The -shaped compounds exhibit HLCT-dominated characteristics, which demonstrate better electroluminescence properties, while the -shaped compounds are primarily LE-dominated with a relatively narrower full width at half-maximum (FWHM, <60 nm) in their EL spectra. The -shaped PyI-based HLCT blue emitters achieve a maximum brightness () of 11060 cd m and maximum external quantum efficiency (η) of 4.77% in the OLED devices, with significantly reduced efficiency roll-off. Thus, this work provides detailed examples demonstrating how the substitution positions on the PyI core can significantly influence the emission behavior and OLED properties of HLCT materials. Moreover, this work offers a valuable synthetic strategy for the preparation of high-performance HLCT materials that can efficiently harness triplet excitons in OLED devices.
杂化局域和电荷转移(HLCT)激发态发光体因其有效利用三线态激子的能力而备受关注。芘并[4,5-]咪唑(PyI)被认为是构建HLCT蓝色发光体的杰出结构单元。为了理解PyI取代基的取代位置、电子效应和空间效应对光学行为以及激发态电子跃迁的影响,本文设计并合成了一组基于PyI的X形和Y形蓝色发光体。X形化合物表现出以HLCT为主导的特性,具有更好的电致发光性能,而Y形化合物主要以LE为主导,其电致发光光谱的半高宽相对较窄(FWHM,<60 nm)。基于X形PyI的HLCT蓝色发光体在OLED器件中实现了11060 cd m的最大亮度()和4.77%的最大外量子效率(η),且效率滚降显著降低。因此,这项工作提供了详细的例子,展示了PyI核心上的取代位置如何显著影响HLCT材料的发光行为和OLED性能。此外,这项工作为制备能够在OLED器件中有效利用三线态激子的高性能HLCT材料提供了一种有价值的合成策略。