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首页> 外文期刊>Advanced Optical Materials >Transformation from Nonthermally Activated Delayed Fluorescence Molecules to Thermally Activated Delayed Fluorescence Molecules
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Transformation from Nonthermally Activated Delayed Fluorescence Molecules to Thermally Activated Delayed Fluorescence Molecules

机译:从非嗜热延迟荧光分子转化为热活化的延迟荧光分子

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摘要

A novel molecular design approach transforming nonthermally activated delayed fluorescence (TADF) molecules to TADF molecules is developed for high external quantum efficiencies in TADF devices by utilizing an opened double emission process through selective twisting of the donor structure. Two non-TADF type donor-acceptor molecules are coupled together to selectively twist the donor structure for enhanced charge transfer character. Selective twisting of the donor is achieved by simultaneously coupling the opened reverse intersystem crossing channel for TADF emission and the double emission process to achieve high external quantum efficiencies. Two emitters are created based on the molecular design concept demonstrating high external quantum efficiencies of 27.8% for sky blue TADF devices.
机译:一种新的分子设计方法通过利用供体结构的选择性扭转,在TADF器件中用于高耐热的延迟荧光(TADF)分子转化为TADF分子的高度外部量子效率。两个非Tadf型供体受体分子耦合在一起以选择性地扭曲供体结构以获得增强的电荷转移特性。通过同时耦合用于TADF排放的开放的反向交叉通道和双排放过程来实现施主的选择性扭转,以实现高外部量子效率。基于分子设计理念的分子设计概念创建了两个发射器,证明了天空蓝TADF器件的高外部量子效率为27.8%。

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