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Green phosphorescent organic light-emitting diode exhibiting highest external quantum efficiency with ultra-thin undoped emission layer
by
Byeong Kwon Ju
, Dong-Hyun Baek
, Shin Woo Kang
, Young Wook Park
in
639/166/987
/ 639/624/1020/1091
/ 639/766/1130
/ Efficiency
/ Emissions
/ Humanities and Social Sciences
/ Iridium
/ Medicine
/ multidisciplinary
/ Q
/ R
/ Science
/ Science (multidisciplinary)
2021
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Green phosphorescent organic light-emitting diode exhibiting highest external quantum efficiency with ultra-thin undoped emission layer
by
Byeong Kwon Ju
, Dong-Hyun Baek
, Shin Woo Kang
, Young Wook Park
in
639/166/987
/ 639/624/1020/1091
/ 639/766/1130
/ Efficiency
/ Emissions
/ Humanities and Social Sciences
/ Iridium
/ Medicine
/ multidisciplinary
/ Q
/ R
/ Science
/ Science (multidisciplinary)
2021
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Green phosphorescent organic light-emitting diode exhibiting highest external quantum efficiency with ultra-thin undoped emission layer
by
Byeong Kwon Ju
, Dong-Hyun Baek
, Shin Woo Kang
, Young Wook Park
in
639/166/987
/ 639/624/1020/1091
/ 639/766/1130
/ Efficiency
/ Emissions
/ Humanities and Social Sciences
/ Iridium
/ Medicine
/ multidisciplinary
/ Q
/ R
/ Science
/ Science (multidisciplinary)
2021
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Green phosphorescent organic light-emitting diode exhibiting highest external quantum efficiency with ultra-thin undoped emission layer
Journal Article
Green phosphorescent organic light-emitting diode exhibiting highest external quantum efficiency with ultra-thin undoped emission layer
2021
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Overview
In this study, we report highly efficient green phosphorescent organic light-emitting diodes (OLEDs) with ultra-thin emission layers (EMLs). We use tris[2-phenylpyridinato-C2,N]iridium(III) (Ir(ppy)
3
), a green phosphorescent dopant, for creating the OLEDs. Under systematic analysis, the peak external quantum efficiency (EQE) of an optimized device based on the ultra-thin EML structure is found to be approximately 24%. This result is highest EQE among ultra-thin EML OLEDs and comparable to the highest efficiency achieved by OLEDs using Ir(ppy)
3
that are fabricated via conventional doping methods. Moreover, this result shows that OLEDs with ultra-thin EML structures can achieve ultra-high efficiency.
Publisher
Springer Science and Business Media LLC,Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
Subject
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