接受者
堆积
化学
光化学
量子产额
量子效率
降冰片烯
光致发光
荧光
光电子学
材料科学
聚合物
光学
聚合
物理
有机化学
凝聚态物理
作者
Qiang Li,Jun Hu,Jianhong Lv,Xingdong Wang,Shiyang Shao,Lixiang Wang,Xiabin Jing,Fosong Wang
标识
DOI:10.1002/anie.202008912
摘要
Abstract Through‐space charge transfer polynorbornenes with fixed and controllable spatial alignment of donor and acceptor in edge‐to‐face/face‐to‐face stacking patterns are developed for achieving high‐efficiency blue thermally activated delayed fluorescence (TADF). The alignment is realized by using the cis, exo‐configuration of norbornene to confine donor and acceptor in close proximity, and utilizing orthogonal and dendritic structures of donors to provide either perpendicular or parallel stacking motif relative to acceptors. Compared to edge‐to‐face counterparts, polynorbornenes with face‐to‐face aligned donor and acceptor exhibit much larger oscillator strength and higher photoluminescence quantum yield. The resulting polymers exhibit deep blue (422 nm) to sky blue (482 nm) emission and TADF effect with reverse intersystem crossing rates of 0.4–5.9×10 6 s −1 , giving the maximum external quantum efficiency of 18.8 % for non‐doped blue organic light‐emitting diodes by solution process.
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