High-performance narrowband blue electroluminescence with EQE approaching 20% based on hybridized local and
Huihui Li1, Jiayi Qin2, Taotao Ma1
1Key Laboratory of Organosilicon Chemistry and Material Technology, Ministry of Education, Zhejiang Key Laboratory of Organosilicon Material Technology, College of Material, Chemistry and Chemical Engineering, Hangzhou Normal University Hangzhou 311121 Zhejiang China hualu@hznu.edu.cn xjfeng@hznu.edu.cn.
Abstract:
Designing multi-resonant (MR) materials that integrate narrowband emission and efficient exciton utilization remains challenging, especially for indolocarbazole (ICz) cores. To address this, two novel ICz-derived MR emitters, 4CzmICz and 4CzpICz, were developed by strategically extending π-conjugation via peripheral carbazole units. This modulates charge-transfer (CT) states while retaining MR character, endowing both molecules with hybridized local and charge transfer (HLCT) properties. The meta-isomer 4CzmICz exhibits exceptional deep-blue emission (430 nm, FWHM = 14 nm in hexane). The para-isomer 4CzpICz achieves record HLCT-OLED performance: a narrowband device (FWHM = 29 nm) with 19.5% external quantum efficiency (EQE). In an exciplex-sensitized configuration, EQE reaches 25.0% without emission broadening. This work pioneers MR-HLCT integration and establishes a roadmap for next-generation OLED materials.
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