电致发光
窄带
材料科学
光电子学
共轭体系
有机发光二极管
带隙
半最大全宽
分子轨道
原子轨道
共振(粒子物理)
荧光
二极管
发光二极管
光致发光
量子效率
发射光谱
光化学
化学
作者
Kun Lyu,Zhihua Ma,Yuanyuan Li,Xu Weitai,Liu Yang,Ronghao Yang,Xinliang Ding,Zhicai Chen,Xin Ai,Yanpei Wang,Fangfang Huang,Shiyang Shao
标识
DOI:10.1002/anie.202518808
摘要
Abstract Multi‐resonance (MR) narrowband emitters are attractive for ultrahigh‐definition displays, but their development is hindered by scarcity of red‐emitting molecular skeletons. Here, we propose a new design strategy for efficient pure‐red carbonyl/nitrogen (C═O/N) MR emitters, by integrating electron‐deficient carbonyl (C═O) and electron‐rich nitrogen (N) into a non‐fused conjugated diene skeleton. Unlike the counterparts having fused polycyclic skeletons with only one C═C bond between adjacent C═O and N atoms, the non‐fused MR emitters allow insertion of two conjugated C═C bonds between them, which not only lowers energy gap (1.97 eV) to redshift emission, but also retains short‐range charge transfer with atomically alternating highest occupied molecular orbitals (HOMO)/lowest unoccupied molecular orbitals (LUMO) distributions along the diene framework to achieve narrowband emission and thermally activated delayed fluorescence effect. Solution‐processed organic light‐emitting diodes based on the emitters exhibit pure‐red electroluminescence at 628 nm with small full‐width at half maxima (FWHM EL ) of 37 nm, together with high external quantum efficiencies of 24.2% at maximum and 23.8% at 1000 cd m −2 , which to our best knowledge, makes them the first example of pure‐red C═O/N MR emitters with FWHM EL below 40 nm. The results provide new insight for developing long‐wavelength MR emitters by expanding their material systems from fused polycyclic frameworks to non‐fused conjugated polyene skeletons.
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