蒽
光致发光
有机半导体
电子迁移率
激子
Crystal(编程语言)
晶体工程
载流子
材料科学
半导体
量子产额
光电子学
化学
晶体结构
光化学
结晶学
荧光
凝聚态物理
物理
超分子化学
计算机科学
量子力学
程序设计语言
作者
Wenping Hu,Jie Li,Zhengsheng Qin,Yajing Sun,Yonggang Zhen,Jie Liu,Ye Zou,Chunlei Li,Xueying Lu,Lang Jiang,Xiaotao Zhang,Deyang Ji,Liqiang Li,Huanli Dong
标识
DOI:10.1002/anie.202206825
摘要
Organic semiconductors with combinative high carrier mobility and efficient solid-state emission are full of challenges but urgently pursued for developing new emerging optoelectronics. Herein, by delicately regulating the crystal packing of an anthracene-based molecular crystal via terminal tert-butylation, we developed a superior high mobility emissive molecule, 2,6-di(6-tert-butylnaphthyl)anthracene (TBU-DNA). The unique "slipped herringbone" packing motif of TBU-DNA enables its appropriate exciton-exciton coupling and electron-phonon coupling, thus resulting in remarkably high solid-state emission (photoluminescence quantum yield, ΦF ≈74.9 %) and efficacious charge transport (carrier mobility, μ=5.0 cm2 V-1 s-1 ). Furthermore, OLETs based on TBU-DNA show an external quantum efficiency (EQE) of 1.8 %, which is among the highest EQE values for single component OLETs reported till now. This work presents a crystal engineering strategy via exquisite molecular design to realize high mobility emissive organic semiconductors.
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