Tuning molecular emission of organic emitters from fluorescence to phosphorescence through push-pull electronic effects

被引:0
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作者
Hai-Tao Feng
Jiajie Zeng
Ping-An Yin
Xue-Dong Wang
Qian Peng
Zujin Zhao
Jacky W. Y. Lam
Ben Zhong Tang
机构
[1] Baoji University of Arts and Sciences,Baoji AIE Research Center, Shaanxi Key Laboratory of Phytochemistry, College of Chemistry and Chemical Engineering
[2] The Hong Kong University of Science and Technology,Department of Chemistry, Hong Kong Branch of Chinese National Engineering Research Center for Tissue Restoration and Reconstruction, Institute for Advanced Study
[3] South China University of Technology,Center for Aggregation
[4] Soochow University,Induced Emission, SCUT
[5] Institute of Chemistry,HKUST Joint Research Laboratory, State Key Laboratory of Luminescent Materials and Devices
[6] Chinese Academy of Sciences,Institute of Functional Nano and Soft Materials (FUNSOM), Jiangsu Key Laboratory for Carbon
来源
Nature Communications | / 11卷
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摘要
Organic emitters with persistent phosphorescence have shown potential application in optoelectronic devices. However, rational design and phosphorescence tuning are still challenging. Here, a series of metal-free luminophores without heavy atoms and carbonyl groups from commercial/lab-synthesized carbazole and benzene were synthesized to realize tunable molecular emission from fluorescence to phosphorescence by simply substituent variation. All the molecules emit blue fluorescence in both solution and solid state. Upon removal of excitation source, the fluorinated luminophores show obvious phosphorescence. The lab-synthesized carbazole based molecules exhibit a huge lifetime difference to the commercially purchased ones due to the existence of isomer in the latter samples. The small energy gap between singlet and triplet state and low reorganization energy help enhance intersystem crossing to contribute to a more competitive radiative process from triplet to ground state. Blue and white organic light-emitting devices are fabricated by using fluorinated luminophore as emitting layer.
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