Efficient energy transfer in organic light-emitting transistor with tunable wavelength

被引:0
|
作者
Ke Zhou
Jian Tang
Shaofan Fang
Ke Jiang
Fangxu Yang
Deyang Ji
Jing Xiang
Jie Liu
Huanli Dong
Cheng Han
Hanlin Hu
Xiaotao Zhang
Wenping Hu
Yumeng Shi
机构
[1] Shenzhen University,International Collaborative Laboratory of 2D Materials for Optoelectronics Science and Technology of Ministry of Education, Institute of Microscale Optoelectronics
[2] Tianjin University,Tianjin Key Laboratory of Molecular Optoelectronic Sciences, Department of Chemistry, School of Sciences
[3] Shenzhen Polytechnic,Hoffman Institute of Advanced Materials
[4] Chinese Academy of Sciences,Beijing National Laboratory for Molecular Sciences, Key Laboratory of Organic Solids, Institute of Chemistry
[5] International Campus of Tianjin University,Joint School of National University of Singapore and Tianjin University
来源
Nano Research | 2022年 / 15卷
关键词
color tunability; energy transfer; organic light-emitting transistor (OLET); Förster resonance energy transfer (FRET);
D O I
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中图分类号
学科分类号
摘要
Key challenges in the development of organic light-emitting transistors (OLETs) are blocking both scientific research and practical applications of these devices, e.g., the absence of high-mobility emissive organic semiconductor materials, low device efficiency, and color tunability. Here, we report a novel device configuration called the energy transfer organic light-emitting transistor (ET-OLET) that is intended to overcome these challenges. An organic fluorescent dye-doped polymethyl methacrylate (PMMA) layer is inserted below the conventional high-mobility organic semiconductor layer in a single-component OLET to separate the functions of the charge transport and light-emitting layers, thus making the challenge to essentially integrate the high mobility and emissive functions within a single organic semiconductor in a conventional OLET or multilayer OLET unnecessary. In this architecture, there is little change in mobility, but the external quantum efficiency (EQE) of the ET-OLET is more than six times that of the conventional OLET because of the efficient Förster resonance energy transfer, which avoids exciton-charge annihilation. In addition, the emission color can be tuned from blue to white to green-yellow using the source-drain and gate voltages. The proposed structure is promising for use with electrically pumped organic lasers.
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页码:3647 / 3652
页数:5
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