Li Mo-Yuan, Wu Hao, Fan Xiao-Chun, Huang Feng, Yu Jia, Wang Kai, Zhang Xiao-Hong
Institute of Functional Nano & Soft Materials (FUNSOM), Soochow University, Suzhou, Jiangsu, 215123, P. R. China.
Jiangsu Key Laboratory for Carbon-Based Functional Materials & Devices, Soochow University, Suzhou, Jiangsu, 215123, P. R. China.
Small. 2024 Aug;20(32):e2312098. doi: 10.1002/smll.202312098. Epub 2024 Mar 10.
Double-borylated multiple-resonance (MR) skeletons are promising templates for high performance, while the chemical design space is relatively limited. Peripheral segments are often used to decorate/fuse MR skeletons and modulate the photophysics but they can also cause unwanted spectral broadening. Herein, a narrowband MR emitter ICzDBA by fusing an MR-featured donor segment indolocarbazole into a double-borylated MR skeleton is developed. In ICzDBA, the nitrogen atom located away from the core benzene ring can also contribute to the generation of the overall MR-featured distribution through the long-range conjugation effect, along with the other boron/nitrogen atoms on the phenyl center. Thus, ICzDBA in toluene displays a narrowband emission peaking at 507 nm with a full width at half maximum of merely 20 nm (0.09 eV). Moreover, organic light-emitting diode devices using ICzDBA emitter exhibit ultrapure green emission with Commission Internationale de l'Eclairage (CIE) coordinates of (0.27, 0.70) and a high external quantum efficiency of 32.5%. These results manifest the importance of MR characters of peripheral decorations/fusions in preserving the narrowband features of MR skeletons, which provides a solution for further expanding MR structures with well-maintained narrowband characters.
双硼化多共振(MR)骨架是高性能的有前景的模板,然而其化学设计空间相对有限。外围片段常被用于修饰/融合MR骨架并调节光物理性质,但它们也可能导致不必要的光谱展宽。在此,通过将具有MR特征的供体片段吲哚并咔唑融合到双硼化MR骨架中,开发了一种窄带MR发射体ICzDBA。在ICzDBA中,远离核心苯环的氮原子也可以通过长程共轭效应,与苯基中心的其他硼/氮原子一起,对整体MR特征分布的产生做出贡献。因此,ICzDBA在甲苯中显示出在507 nm处的窄带发射,半高宽仅为20 nm(0.09 eV)。此外,使用ICzDBA发射体的有机发光二极管器件表现出超纯绿色发射,国际照明委员会(CIE)坐标为(0.27, 0.70),外部量子效率高达32.5%。这些结果表明了外围修饰/融合的MR特征在保持MR骨架窄带特征方面的重要性,这为进一步扩展具有良好保持的窄带特征的MR结构提供了解决方案。