Solution‐Processable Pure Green Thermally Activated Delayed Fluorescence Emitter Based on the Multiple Resonance Effect

材料科学 有机发光二极管 系统间交叉 量子效率 电致发光 量子产额 光致发光 共发射极 光电子学 轨道能级差 光化学 荧光 纳米技术 图层(电子) 分子 光学 原子物理学 单重态 激发态 有机化学 物理 化学
作者
Naoya Ikeda,Susumu Oda,Ryuji Matsumoto,Mayu Yoshioka,Daisuke Fukushima,Kazuki Yoshiura,Nobuhiro Yasuda,Takuji Hatakeyama
出处
期刊:Advanced Materials [Wiley]
卷期号:32 (40) 被引量:318
标识
DOI:10.1002/adma.202004072
摘要

Thermally activated delayed fluorescence (TADF) materials based on the multiple resonance (MR) effect are applied in organic light-emitting diodes (OLEDs), combining high color purity and efficiency. However, they are not fabricated via solution-processing, which is an economical approach toward the mass production of OLED displays. Here, a solution-processable MR-TADF material (OAB-ABP-1), with an extended π-skeleton and bulky substituents, is designed. OAB-ABP-1 is synthesized from commercially available starting materials via a four-step process involving one-shot double borylation. OAB-ABP-1 presents attractive photophysical properties, a narrow emission band, a high photoluminescence quantum yield, a small energy gap between S1 and T1 , and low activation energy for reverse intersystem crossing. These properties are attributed to the alternating localization of the highest occupied and lowest unoccupied molecular orbitals induced by the boron, nitrogen, and oxygen atoms. Furthermore, to facilitate charge recombination, two novel semiconducting polymers with similar ionization potentials to that of OAB-ABP-1 are synthesized for use as interlayer and emissive layer materials. A solution-processed OLED device is fabricated using OAB-ABP-1 and the aforementioned polymers; it exhibits pure green electroluminescence with a small full-width at half-maximum and a high external quantum efficiency with minimum efficiency roll-off.
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