电致发光
轨道能级差
材料科学
量子效率
发射光谱
有机发光二极管
人口
光电子学
原子物理学
谱线
二极管
分子
桥接(联网)
工作(物理)
自发辐射
量子
带隙
分子物理学
物理
量子点
光致发光
振动光谱学
分子轨道
作者
Ying-Chun Cheng,Jiaqi Li,Hao Wang,Zhu Chang,Peiqi Liu,Xiao-Chun Fan,Jia Yu,Kai Wang,Dandan Zhang,Xian-Kai Chen,Xiao-Hong Zhang
标识
DOI:10.1021/acs.jpclett.6c00265
摘要
Multiresonance (MR) emitters have attracted much attention because of their narrow-band emission. Most reported MR materials exhibit short-wavelength emissions. It is challenging to red-shift their emissions to the longer-wavelength region. Thus, we explored isomerization's impact on the emission spectra of M-B2Cz and W-B2Cz MR emitters integrating two monoboron fragments. The HOMO-LUMO energetic gap of W-B2Cz is smaller, red-shifting its emission peak by 71 nm, compared to that of M-B2Cz. This red-shift in W-B2Cz results from a lower LUMO energy level due to its bonding-like population on the bridging pyrrole. Such a feature in the HOMO and LUMO of W-B2Cz generates the bonding-like transition density in its S1 state, reducing shoulder vibronic emission. A W-B2Cz-based OLED exhibited longer-wavelength emission, a narrow bandwidth of 90 meV, and an exceptional maximum external quantum efficiency of 39.4%. This work provides new insight into isomerization's role in MR emission spectra, promoting the development of narrow-band materials with long-wavelength emissions.
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