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An optical and electrical study of full thermally activated delayed fluorescent white organic light-emitting diodes.
Pereira, Daniel de Sa; Dos Santos, Paloma L; Ward, Jonathan S; Data, Przemyslaw; Okazaki, Masato; Takeda, Youhei; Minakata, Satoshi; Bryce, Martin R; Monkman, Andrew P.
Afiliação
  • Pereira DS; Physics Department, Durham University, South Road, Durham, DH1 3LE, United Kingdom. daniel.a.pereira@durham.ac.uk.
  • Dos Santos PL; Physics Department, Durham University, South Road, Durham, DH1 3LE, United Kingdom.
  • Ward JS; Department of Chemistry, Durham University, South Road, Durham, DH1 3LE, United Kingdom.
  • Data P; Physics Department, Durham University, South Road, Durham, DH1 3LE, United Kingdom.
  • Okazaki M; Centre of Polymer and Carbon Materials, Polish Academy of Science, M. Curie-Sklodowskiej 34, 41-819, Zabrze, Poland.
  • Takeda Y; Faculty of Chemistry, Silesian University of Technology, M. Strzody 9, 44-100, Gliwice, Poland.
  • Minakata S; Department of Applied Chemistry Graduate School of Engineering Osaka University, Yamadaoka 2-1, Suita Osaka, 565-0871, Japan.
  • Bryce MR; Department of Applied Chemistry Graduate School of Engineering Osaka University, Yamadaoka 2-1, Suita Osaka, 565-0871, Japan.
  • Monkman AP; Department of Applied Chemistry Graduate School of Engineering Osaka University, Yamadaoka 2-1, Suita Osaka, 565-0871, Japan.
Sci Rep ; 7(1): 6234, 2017 07 24.
Article em En | MEDLINE | ID: mdl-28740185
We report on the engineering of full thermally activated delayed fluorescence - based white organic light emitting diodes (W-OLEDs) composed of three emitters (2,7-bis(9,9-dimethyl-acridin-10-yl)-9,9-dimethylthioxanthene-S,S-dioxide (DDMA-TXO2), 2,7-bis(phenoxazin-10-yl)-9,9-dimethylthioxanthene-S,S-dioxide (DPO-TXO2) and 3,11-di(10H-phenoxazin-10-yl)dibenzo[a,j]phenazine (POZ-DBPHZ) in two different hosts. By controlling the device design through the study of the emission of DDMA-TXO2 and DPO-TXO2, the behaviour of POZ-DBPHZ in a device with more than one emitter, and the combination of the three materials, respectively, we show that external quantum efficiencies as high as 16% can be obtained for a structure with a correlated colour temperature close to warm white, together with colour rendering index close to 80. However it is in their performance stability that provides the true breakthrough: at 1000 cd/m2 the efficiencies were still above 10%, which is one of the best for this type of devices.

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Sci Rep Ano de publicação: 2017 Tipo de documento: Article País de afiliação: Reino Unido País de publicação: Reino Unido

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Sci Rep Ano de publicação: 2017 Tipo de documento: Article País de afiliação: Reino Unido País de publicação: Reino Unido