材料科学
圆极化
光电子学
手性(物理)
电致发光
有机发光二极管
二极管
光致发光
窄带
圆二色性
光学
联轴节(管道)
发光二极管
量子效率
X射线磁圆二色性
激子
半最大全宽
量子
作者
Guohui Xing,Haiwei Xia,Jiahao Xu,Xinwen Zhang,Yun Ma,Qiang Zhao
标识
DOI:10.1002/adom.202503584
摘要
ABSTRACT Circularly polarized organic light‐emitting diodes (CP‐OLEDs) are attracting increasing attention for next‐generation display and imaging applications. A key challenge lies in the development of emitters that can simultaneously deliver high efficiency, narrowband emission, and strong circular polarization. Herein, we report three pairs of helical CP‐MR‐TADF compounds, M / P ‐ PhCz‐QAO , M / P ‐ BFN‐QAO , and M / P ‐ BSF‐QAO , in which N ‐phenylcarbazole, dibenzofuran, and dibenzothiophene units induce intrinsic helical chirality within a carbonyl/nitrogen‐based MR‐TADF framework. This steric design enforces strong coupling between the chiral geometry and the frontier molecular orbitals. The resulting enantiomers exhibit narrowband sky‐blue photoluminescence (PL) with full widths at half maximum of 32–42 nm and solution‐state Commission International de l'Eclairage (CIE) y coordinates of 0.08–0.14. When integrated into OLEDs, the devices achieve maximum external quantum efficiencies of up to 15.1% together with clear circularly polarized electroluminescence signals with g EL values on the order of 10 −3 . This work demonstrates a robust intrinsic chirality design strategy for achieving high‐performance CP‐MR‐TADF materials, paving the way toward efficient and spectrally pure CP‐OLEDs for advanced chiroptical optoelectronic applications.
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