Lim Dong Hwan, Lee Seok Jae, Koo Ja Ryong, Kim Bo Young, Shin Hyun Su, Lee Kum Hee, Lee Sang Youn, Kim Woo Young, Yoon Seung Soo, Kim Young Kwan
J Nanosci Nanotechnol. 2014 Aug;14(8):5998-6001. doi: 10.1166/jnn.2014.8442.
We report an improvement of efficiency in red phosphorescent organic light-emitting diodes (PHOLEDs) based on a combination of heterojunction (HJ) structure and mixed host (MH) system using a phosphorescent red emitter: bis(2-phenylquinolinato)-acetylacetonate iridium III [Ir(pq)2(acac)] doped in 4,4,N,N'-dicarbazolebiphenyl (CBP) of hole transport type host material and 1,3,5-tris(N-phenylbenzimidazole-2-yl)benzene (TPBi) of electron transport type host material. This combination device resulted in an effective electron and hole balance and distribution of the recombination zone. Therefore, highly efficient red PHOLEDs with maximum luminous efficiency and external quantum efficiency of 21.93 cd/A and 14.09% were achieved. Moreover, the combination device showed a power efficiency of 9.51 lm/W, which is higher than 7.61 lm/W in the control device at a luminance of 1000 cd/m2.
我们报道了基于异质结(HJ)结构和混合主体(MH)体系相结合的红色磷光有机发光二极管(PHOLED)的效率提升,该体系使用了磷光红色发光体:双(2-苯基喹啉基)-乙酰丙酮铱III [Ir(pq)2(acac)],其掺杂在空穴传输型主体材料4,4,N,N'-二咔唑联苯(CBP)和电子传输型主体材料1,3,5-三(N-苯基苯并咪唑-2-基)苯(TPBi)中。这种组合器件实现了有效的电子和空穴平衡以及复合区的分布。因此,获得了高效的红色PHOLED,其最大发光效率和外量子效率分别为21.93 cd/A和14.09%。此外,该组合器件在1000 cd/m2的亮度下显示出9.51 lm/W的功率效率,高于对照器件的7.61 lm/W。