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Highly efficient organic light-emitting diodes (OLEDs) based on an iridium complex with rigid cyclometalated ligand

✍ Scribed by Guanghui Zhang; Ho-Hsiu Chou; Xiaoqing Jiang; Peipei Sun; Chien-Hong Cheng; Yousuke Ooyama; Yutaka Harima


Publisher
Elsevier Science
Year
2010
Tongue
English
Weight
597 KB
Volume
11
Category
Article
ISSN
1566-1199

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✦ Synopsis


A red-emitting iridium complex (DMBA) 2 Ir(acac) (DMBA = 5,acridine, acac = acetylacetone) containing rigid cyclometalated ligand DMBA was synthesized and its photophysical, electrochemical and electroluminescent properties were characterized. Organic light emitting devices utilizing the complex as dopant emitter were fabricated. When double hole-transporting layers were adopted, the brightness and efficiencies of electroluminescent devices were improved greatly. Based on the excimer emission, a maximum brightness of 66,312 cd m Γ€2 at 15 V, together with a maximum external quantum efficiency of 17.7% at 5.0 V was achieved at a doping concentration of 5%. The result suggests that the introduction of a methylenedioxy group into the N-heterocycle of the cyclometalated ligand leads to higher-energy MLCT transitions and a blue shift of the photoluminescence spectrum.


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