接受者
材料科学
有机发光二极管
光化学
分子内力
荧光
吖啶
光致发光
吡啶
量子产额
量子效率
磷光
光电子学
化学
纳米技术
立体化学
光学
有机化学
凝聚态物理
物理
图层(电子)
作者
Kuan-Chung Pan,Shuwei Li,Yew Kam Ho,Yi-Jiun Shiu,Wei-Lung Tsai,Min Jiao,Wei‐Kai Lee,Chung‐Chih Wu,Chin‐Lung Chung,Tanmay Chatterjee,Yung-Shin Li,Ken‐Tsung Wong,Hung-Chieh Hu,Chung-Chia Chen,Meng‐Ting Lee
标识
DOI:10.1002/adfm.201602501
摘要
A series of twisted D–π–A type emitters based on the acridine donor unit and CN‐substituted pyridine, pyrimidine, and benzene acceptor units are studied. They not only allow one to systematically probe the influence of different acceptor strengths, but also permit one to intriguingly probe the influence of tunable conformations (twist angles) within the acceptor moieties through controlling the orientation of asymmetric heteroaromatic ring relative to the donor component. Intramolecular charge‐transfer transitions are observed in all these compounds and emission wavelengths are widely tunable from deep blue to yellow not only by the general acceptor strength due to the characters of heteroarene and CN‐substitution pattern but also by the subtle control of in‐acceptor conformation (twist angles). Small triplet‐to‐singlet energy gaps (Δ E ST ) and significant thermally activated delayed fluorescence (TADF) characteristics are obtained in a series of D–π–A compounds with sufficient acceptor strengths and tunable in‐acceptor conformation, yielding a series of efficient blue‐green to yellow TADF emitters with promisingly high photoluminescence quantum yields of 90%–100%. Highly efficient blue‐green to yellow TADF organic light‐emitting diodes (OLEDs) having external quantum efficiencies of up to 23.1%–31.3% are achieved using these efficient TADF emitters, which are among the most efficient TADF OLEDs ever reported.
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