Significant improvement of OLED efficiency and stability by doping both HTL and ETL with different dopant in heterojunction of polymer/small-molecules
Nie Hai, Bo Zhang, Tang Xian-zhong
Abstract
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Nie Hai, Bo Zhang, Tang Xian-zhong
Abstract
Open-access reader
This paper reports that the polymer/organic heterojunction doped light-emitting diodes using a novel poly-TPD as hole transport material and doping both hole transport layer and emitter layer with the highly fluorescent rubrene and DCJTB has been successfully fabricated. The basic structure of the heterostructure is PTPD/Alq 3 . When hole transport layer and electron transport layer are doped simultaneously with different dopant, the electroluminescence quantum efficiencies are about 3 times greater than that of the undoped device. Compared with undoped device and conventional TPD/Alq 3 diode, the stability of the doping device is significantly improved. The process of emission for doped device may include carrier trapping as well as Förster energy transfer.
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This paper reports that the polymer/organic heterojunction doped light-emitting diodes using a novel poly-TPD as hole transport material and doping both hole transport layer and emitter layer with the highly fluorescent rubrene and DCJTB has been successfully fabricated. The basic structure of the heterostructure is PTPD/Alq 3 . When hole transport layer and electron transport layer are doped simultaneously with different dopant, the electroluminescence quantum efficiencies are about 3 times greater than that of the undoped device. Compared with undoped device and conventional TPD/Alq 3 diode, the stability of the doping device is significantly improved. The process of emission for doped device may include carrier trapping as well as Förster energy transfer.
Key concepts: Materials science, Dopant, Doping, Electroluminescence, Optoelectronics, OLED, Rubrene, Heterojunction