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Department of Energy Science and Engineering
Organic & Printed Electronics Laboratory(OPEL)
1. Journal Articles
Highly efficient, conventional and flexible deep-red phosphorescent OLEDs using ambipolar thiophene/selenophene-phenylquinoline ligand-based Ir(III) complexes
Cho, Woosum
;
Sarada, Ganguri
;
Lee, Hyungjin
;
Song, Myungkwan
;
Gal, Yeong-Soon
;
Lee, Youngu
;
Jin, Sung-Ho
Department of Energy Science and Engineering
Organic & Printed Electronics Laboratory(OPEL)
1. Journal Articles
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Title
Highly efficient, conventional and flexible deep-red phosphorescent OLEDs using ambipolar thiophene/selenophene-phenylquinoline ligand-based Ir(III) complexes
Issued Date
2017-01
Citation
Cho, Woosum. (2017-01). Highly efficient, conventional and flexible deep-red phosphorescent OLEDs using ambipolar thiophene/selenophene-phenylquinoline ligand-based Ir(III) complexes. Dyes and Pigments, 136, 390–397. doi: 10.1016/j.dyepig.2016.08.060
Type
Article
Author Keywords
Flexible organic light-emitting diode
;
Homoleptic Ir(III) complex
;
Deep-red emission
;
Polarizability
;
External quantum efficiency
;
Transparent conducting electrode
Keywords
Deep-Red emission
;
DEVICES
;
Efficiency
;
Electrodes
;
ELECTROPHOSPHORESCENCE
;
emISSION
;
emITTERS
;
Encapsulation
;
External Quantum Efficiency
;
Flexible Organic Light-emitting Diode
;
Homoleptic Ir(III) Complex
;
IR Complexes (III)
;
Iridium
;
IRIDIUM(III) COMPLEXES
;
ITO Glass
;
LIGHT-emITTING-DIODES
;
Light emission
;
Light emitting Diodes
;
Organic Light emitting Diodes (OLED)
;
Phosphorescence
;
Polarizabilities
;
Polarizability
;
Quantum Efficiency
;
Red emissions
;
ROUTE
;
Semiconducting Selenium Compounds
;
SUBSTITUTION
;
Thiophene
;
Tin Oxides
;
Transparent Conducting Electrode
;
Transparent Conducting Electrodes
;
Transparent Electrode
ISSN
0143-7208
Abstract
Highly efficient conventional and flexible deep-red phosphorescent OLEDs (PhOLEDs) were developed by using glass (substrate)/indium tin oxide (ITO, transparent conducting electrode, TCE) and polyethylene naphthalate (PEN, substrate)/silver nanowire (AgNW, TCE). A thiophene-phenylquinoline (Th-PQ)-based Ir(III) complex, (Th-PQ)3Ir, which has already been confirmed as a promising emitter in solution-processed PhOLEDs, and a new selenophene-PQ (Se-PQ)-based Ir(III) complex, (Se-PQ)3Ir, were verified as emitters in conventional and flexible PhOLEDs. Both (Th-PQ)3Ir and (Se-PQ)3Ir exhibited bright red emission (601nm and 614nm) in chloroform at room temperature. (Th-PQ)3Ir showed excellent performance not only in solution-processed devices but also in the conventional and flexible PhOLEDs fabricated by vapor deposition. (Th-PQ)3Ir exhibited a maximum external quantum efficiency (EQE) of 19.83% and 21.33% in conventional and flexible PhOLEDs, respectively, with stable deep-red CIE coordinates (0.66, 0.34). © 2016 Elsevier Ltd
URI
http://hdl.handle.net/20.500.11750/2060
DOI
10.1016/j.dyepig.2016.08.060
Publisher
Elsevier Ltd
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Lee, Youngu
이윤구
Department of Energy Science and Engineering
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