有机发光二极管
材料科学
光电子学
共发射极
窄带
共振(粒子物理)
量子效率
二极管
光学
纳米技术
物理
图层(电子)
粒子物理学
作者
Yi‐Ting Lee,Chin‐Yiu Chan,Masaki Tanaka,Masashi Mamada,Kenichi Goushi,Xun Tang,Youichi Tsuchiya,Hajime Nakanotani,Chihaya Adachi
标识
DOI:10.1002/adom.202200682
摘要
Abstract Multi‐resonance emitters (MREs) are a promising candidate for fulfilling the harsh requirements of display applications due to their unique photophysical properties. Recently, MREs have been widely used as a terminal emitter in hyperfluorescence organic light‐emitting diodes (HF‐OLEDs); however, since MREs are always thermally activated delayed fluorescence (TADF)‐active, possessing long triplet lifetimes in millisecond order, they result in severe chemical degradation. Instead of shortening the delayed lifetime of MREs by molecular design, herein, a low‐triplet pyrene unit is introduced into an MRE scaffold to achieve narrowband emission and quick removal of triplets in MREs simultaneously. Blue HF‐OLED based on the non‐TADF MRE demonstrates a high external quantum efficiency of 20% and a tenfold improvement in stability, compared to those of the HF‐OLEDs with standard MREs. An opposite direction of molecular design of MREs for the sophisticated exciton generation and transfer system in HF‐OLEDs is proposed to enhance device lifetime without sacrificing color purity and efficiency.
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