A peripheral modification strategy for high performance multi-resonance TADF emitters to construct sensitized OLEDs

被引:1
|
作者
Sun, Liang [1 ]
Di, Kaiyuan [1 ]
Guo, Runda [1 ]
Wang, Yaxiong [1 ]
Su, Hanrui [1 ]
Tian, Yongxing [1 ]
Huang, Shan [1 ]
Wang, Lei [1 ]
机构
[1] Huazhong Univ Sci & Technol, Wuhan Natl Lab Optoelect, Wuhan 430074, Peoples R China
基金
中国国家自然科学基金;
关键词
Multiple resonance thermally activated delayed; fluorescence; Peripheral modification; Organic light-emitting diodes; TADF-sensitized TADF; ACTIVATED DELAYED FLUORESCENCE; LIGHT-EMITTING-DIODES; MOLECULAR DESIGN;
D O I
10.1016/j.dyepig.2023.111858
中图分类号
O69 [应用化学];
学科分类号
081704 ;
摘要
Multiple resonance thermally activated delayed fluorescence (MR-TADF) emitters show great application potential in high color purity and high-resolution organic light-emitting diodes (OLEDs) display. However, the high-performance narrowband MR-TADF based OLEDs are still scarce. In this work, two new MR-TADF emitters Me-PABCZ and Me-PABDPA with high photoluminescence quantum yields (PLQYs) of 94.6 % and 91.8 % respectively, are designed and synthesized by a one-shot electrophilic C-H borylation reaction. The full-width at half-maximum (FWHM) values of photoluminescence spectra in the high dispersion state of Me-PABCZ and MePABDPA luminogens are 22 nm and 29 nm, respectively. By coating large steric carbazole or diphenylamine units around the multi-resonance core, the intermolecular interactions are suppressed and the aggregationinduced emission quenching effect is inhibited. As a result, the TADF-sensitized TADF (TST) device utilizing Me-PABCZ as sensitizer and Me-PABDPA as emitter achieves a maximum external quantum efficiency (EQE) of 27.9 %. Such a type of light-emitting device exhibits a weak dopant concentration dependence characteristic. The incorporation of molecule conformational engineering and device structural engineering into the MR-TADF technology could usher in a new paradigm of OLEDs.
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页数:8
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