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High-efficiency all-fluorescent white organic light-emitting diode based on TADF material as a sensitizer

The use of TADF materials as both sensitizers and emitters is a promising route to achieve high-efficiency all-fluorescent white organic light-emitting diodes (WOLEDs). In this study, the thermally-activated delayed-fluorescent (TADF) material DMAC-TRZ (9,9-dimethyl-9,10-dihydroacridine-2,4,6-triphe...

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Autores principales: Hua, Jie, Zhan, Zhuolin, Cheng, Zeyuan, Cao, Wanshan, Chai, Yuan, Wang, Xufeng, Wei, Chunyu, Dong, He, Wang, Jin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10614037/
https://www.ncbi.nlm.nih.gov/pubmed/37908666
http://dx.doi.org/10.1039/d3ra05680e
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author Hua, Jie
Zhan, Zhuolin
Cheng, Zeyuan
Cao, Wanshan
Chai, Yuan
Wang, Xufeng
Wei, Chunyu
Dong, He
Wang, Jin
author_facet Hua, Jie
Zhan, Zhuolin
Cheng, Zeyuan
Cao, Wanshan
Chai, Yuan
Wang, Xufeng
Wei, Chunyu
Dong, He
Wang, Jin
author_sort Hua, Jie
collection PubMed
description The use of TADF materials as both sensitizers and emitters is a promising route to achieve high-efficiency all-fluorescent white organic light-emitting diodes (WOLEDs). In this study, the thermally-activated delayed-fluorescent (TADF) material DMAC-TRZ (9,9-dimethyl-9,10-dihydroacridine-2,4,6-triphenyl-1,3,5-triazine) was selected as a sensitizer for the conventional fluorescent emitter DCJTB (4-(dicyanomethylene)-2-t-butyl-6-(1,1,7,7-tetramethyljulolidyl-9-enyl)-4H-pyran), which was co-doped in a wide bandgap host of DPEPO (bis[2-(diphenylphosphino)phenyl]ether oxide) to fabricate WOLEDs. For the emitting layer of DPEPO:DMAC-TRZ:DCJTB, the DPEPO host can dilute the exciton concentration formed on the DMAC-TRZ sensitizer, which benefits the suppression of exciton quenching. The effect of the doping concentration of DCJTB on the carrier recombination and energy transfer process was investigated. With an optimized doping concentration of DCJTB as 0.8%, highly efficient WOLED was achieved with a maximum external quantum efficiency (EQE), power efficiency (PE), and current efficiency (CE) of 11.05%, 20.83 lm W(−1), and 28.83 cd A(−1), respectively, corresponding to the Commission Internationale de I′ Eclairage (CIE) coordinates of (0.45, 0.46). These superior performances can be ascribed to the fact that the hole-trapping effect of the emitter and Dexter energy transfer (DET) from sensitizer to emitter can be suppressed simultaneously by the extremely low doping concentration.
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spelling pubmed-106140372023-10-31 High-efficiency all-fluorescent white organic light-emitting diode based on TADF material as a sensitizer Hua, Jie Zhan, Zhuolin Cheng, Zeyuan Cao, Wanshan Chai, Yuan Wang, Xufeng Wei, Chunyu Dong, He Wang, Jin RSC Adv Chemistry The use of TADF materials as both sensitizers and emitters is a promising route to achieve high-efficiency all-fluorescent white organic light-emitting diodes (WOLEDs). In this study, the thermally-activated delayed-fluorescent (TADF) material DMAC-TRZ (9,9-dimethyl-9,10-dihydroacridine-2,4,6-triphenyl-1,3,5-triazine) was selected as a sensitizer for the conventional fluorescent emitter DCJTB (4-(dicyanomethylene)-2-t-butyl-6-(1,1,7,7-tetramethyljulolidyl-9-enyl)-4H-pyran), which was co-doped in a wide bandgap host of DPEPO (bis[2-(diphenylphosphino)phenyl]ether oxide) to fabricate WOLEDs. For the emitting layer of DPEPO:DMAC-TRZ:DCJTB, the DPEPO host can dilute the exciton concentration formed on the DMAC-TRZ sensitizer, which benefits the suppression of exciton quenching. The effect of the doping concentration of DCJTB on the carrier recombination and energy transfer process was investigated. With an optimized doping concentration of DCJTB as 0.8%, highly efficient WOLED was achieved with a maximum external quantum efficiency (EQE), power efficiency (PE), and current efficiency (CE) of 11.05%, 20.83 lm W(−1), and 28.83 cd A(−1), respectively, corresponding to the Commission Internationale de I′ Eclairage (CIE) coordinates of (0.45, 0.46). These superior performances can be ascribed to the fact that the hole-trapping effect of the emitter and Dexter energy transfer (DET) from sensitizer to emitter can be suppressed simultaneously by the extremely low doping concentration. The Royal Society of Chemistry 2023-10-30 /pmc/articles/PMC10614037/ /pubmed/37908666 http://dx.doi.org/10.1039/d3ra05680e Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Hua, Jie
Zhan, Zhuolin
Cheng, Zeyuan
Cao, Wanshan
Chai, Yuan
Wang, Xufeng
Wei, Chunyu
Dong, He
Wang, Jin
High-efficiency all-fluorescent white organic light-emitting diode based on TADF material as a sensitizer
title High-efficiency all-fluorescent white organic light-emitting diode based on TADF material as a sensitizer
title_full High-efficiency all-fluorescent white organic light-emitting diode based on TADF material as a sensitizer
title_fullStr High-efficiency all-fluorescent white organic light-emitting diode based on TADF material as a sensitizer
title_full_unstemmed High-efficiency all-fluorescent white organic light-emitting diode based on TADF material as a sensitizer
title_short High-efficiency all-fluorescent white organic light-emitting diode based on TADF material as a sensitizer
title_sort high-efficiency all-fluorescent white organic light-emitting diode based on tadf material as a sensitizer
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10614037/
https://www.ncbi.nlm.nih.gov/pubmed/37908666
http://dx.doi.org/10.1039/d3ra05680e
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