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Rational design of perfectly oriented thermally activated delayed fluorescence emitter for efficient red electroluminescence 被引量:2
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作者 Xuan Zeng Yu-Hsin Huang +11 位作者 Shaolong Gong Xuguang Yin Wei-Kai Lee Xiao Xiao Yu Zhang Weixuan Zeng Chen-Han Lu Chang-Cheng Lee Xiu-Qin Dong Cheng Zhong chung-chih wu Chuluo Yang 《Science China Materials》 SCIE EI CAS CSCD 2021年第4期920-930,共11页
How to control the dipole orientation of organic emitters is a challenge in the field of organic light-emitting diodes(OLEDs).Herein,a linear thermally activated delayed fluorescence(TADF)molecule,PhNAI-PMSBA,bearing ... How to control the dipole orientation of organic emitters is a challenge in the field of organic light-emitting diodes(OLEDs).Herein,a linear thermally activated delayed fluorescence(TADF)molecule,PhNAI-PMSBA,bearing a 1,8-naphthalimide-acridine framework was designed by a doublesite long-axis extension strategy to actively control the dipole orientation.The horizontal ratio of emitting dipole orientation of PhNAI-PMSBA reaches 95%,substantially higher than that of isotropic emitters(67%).This unique feature is associated with the intrinsically horizontal molecular orientation of PhNAI-PMSBA and the good agreement between its transition dipole moment direction and molecular long axis.The PhNAI-PMSBA-based OLED achieves an ultrahigh optical outcoupling efficiency of 43.2%and thus affords one of the highest red electroluminescence with an external quantum efficiency of 22.3%and the Commission International de l’Eclairage 1931 coordinates at around(0.60,0.40). 展开更多
关键词 organic light-emitting diodes thermally activated delayed fluorescence dipole orientation outcoupling efficiency
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