Solution-Process-Feasible Deep-Red Phosphorescent Emitter

Solution processing enables organic devices to be fabricated cost-effectively, while deep-red emitters enable displays with high color saturation and lighting with high light quality. However, limited deep-red emitters were reported with solution-process feasibility and high efficiency. We demonstra...

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Veröffentlicht in:Journal of physical chemistry. C 2016-08, Vol.120 (33), p.18794-18802
Hauptverfasser: Jou, Jwo-Huei, Su, Yu-Ting, Hsiao, Ming-Ting, Yu, Hui-Huan, He, Zhe-Kai, Fu, Shen-Chin, Chiang, Chi-Heng, Chen, Chien-Tien, Chou, Chia-hung, Shyue, Jing-Jong
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Sprache:eng
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Zusammenfassung:Solution processing enables organic devices to be fabricated cost-effectively, while deep-red emitters enable displays with high color saturation and lighting with high light quality. However, limited deep-red emitters were reported with solution-process feasibility and high efficiency. We demonstrate here a high-efficiency, solution-process-feasible deep-red emitter by coupling the highly efficient phosphorescent complex with a highly thermally stable fluorescent compound. The device exhibits a maximum external quantum efficiency of 11.2% at 10 cd m–2 and 8.4% at 100 cd m–2. The latter is coupled with an ultradeep red emission (0.70, 0.27) and a potential color saturation of 108%. Besides the intrinsically high-efficiency nature of the phosphorescent complex, the record high efficiency may be attributable to the spirally configured fluorene moiety in the fluorescent compound to prevent concentration-quenching effect, a proper host to enable an effective host-to-guest energy transfer, and the employed cohost with electron-trapping character to enable a balanced carrier injection.
ISSN:1932-7447
1932-7455
DOI:10.1021/acs.jpcc.6b07740