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Updated: Jan 9, 2026

Scale-up Chemical Synthesis of Thermally-activated Delayed Fluorescence Emitters Based on the Dibenzothiophene-S,S-Dioxide Core
Published on: October 24, 2017
Constructing High-Efficiency and Stable Hyperfluorescence Blue OLEDs via TADF Sensitizers with Very Short Delayed
Baoyan Liang1, Chi Cao1, Yufang Nie1,2
1Department of Materials Science and Technology, Jihua Laboratory, 28 Huandao South Road, Foshan, China.
Abstract:
Hyperfluorescence blue organic light-emitting diodes (OLEDs) are promising for fabricating pure organic blue devices with high efficiency and color purity by employing thermally activated delayed fluorescence (TADF) sensitizers and multiple-resonance TADF (MR-TADF) emitters. However, developing blue TADF sensitizers with the rate of reverse intersystem crossing (kRISC) over 107 s-1 remains a challenge. In this work, a blue TADF sensitizer with kRISC of 9.71 × 106 s-1 has been designed by regulating the energy levels of the excited states and enhancing the spin-orbit coupling (SOC) effect. v-DABNA is further doped to fabricate the hyperfluorescence device, which exhibits a high maximum external quantum efficiency of 31.0% and a long operational lifetime of 175.4 h. The results reveal the significance of kRISC and pave the way for designing blue TADF sensitizers and hyperfluorescence devices.

