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不同发光染料的顶发射有机电致发光器件的研制 被引量:3

Top-emitting Organic Light-emitting Devices with Different Luminescent Dyes
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摘要 通过设计合理的微腔结构,制备了基于绿光染料C545t、黄光染料Rubrene、红光染料DCJTB的3种顶发射有机电致发光器件。研究了不同发光染料对顶发射器件的光谱的影响。研究表明,微腔结构对光谱具有窄化作用。绿光、黄光器件的发光峰波长并未随视角增大而明显变化,体现出良好的光谱角度性,而红光器件却出现了明显的光谱蓝移现象。绿光器件的最大功率效率为8.7 lm/W,当电流密度为45 m A/cm2时,亮度能达到7 205 cd/m2;黄光器件的电流效率最大值为11.5 cd/A,当电流密度为48 m A/cm2时,亮度可达到3 770 cd/m2;红光器件的电流效率最大能达到3.54 cd/A,当电流密度为50 m A/cm2时,可获得1 358 cd/m2的亮度。采用合适的发光材料以及合适的器件结构,不仅可以提高顶发射器件的色纯度及发光效率,还可以改善器件发光光谱的角度依赖性。 Three kinds of top-OLEDs with fluorescent dyes-green C545 t,yellow Rubrene and red DCJTB were fabricated by reasonable design of microcavity structure,and the corresponding optical properties were also studied. The results show that the spectrum of OLEDs can be narrowed by micro-cavity effect. With the increasing of the viewing angle,the spectral peak of green C545 t and yellow Rubrene devices don't change significantly and exhibit independence of the viewing angle,however,an obvious blue shift of red DCJTB device can be observed. The maximum power efficiency of green device is 8. 7 lm / W,and the brightness is 7 205 cd / m^2 with the current density of 45 mA / cm^2. The maximum current efficiency of yellow device is 11. 5 cd / A,and the brightness is3 770 cd / m^2 with the current density of 48 mA / cm^2. The maximum current efficiency of red device is 3. 54 cd / A,and the brightness is 1 358 cd / m^2 with the current density of 50 mA / cm^2. Not only the chroma and luminous efficiency but also the angle-independence of the top-OLED can be improved by the use of appropriate luminescent material and suitable device structure.
出处 《发光学报》 EI CAS CSCD 北大核心 2016年第4期446-451,共6页 Chinese Journal of Luminescence
基金 国家自然科学基金(61404053) 华侨大学中央基本业务费(国家基金培育计划JB-ZR1143)资助项目
关键词 顶发射有机电致发光器件 发光染料 微腔 光谱 top-emitting organic light-emitting devices luminescent dyes microcavity spectra
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  • 1杜晓刚,王华,刘慧慧,苗艳勤,景姝.基于Ir(ppy)_3载流子直接复合发光的OLED机理研究[J].发光学报,2014,35(4):481-485. 被引量:5
  • 2杨惠山,陈淑芬,吴志军,赵毅,侯晶莹,刘式墉.硅片上顶发射的有机电致发光器件[J].发光学报,2005,26(2):242-246. 被引量:4
  • 3孙小燕,李文连,洪自若,陈莉丽,初蓓,吕少哲,李斌,张志强,胡知之.微腔结构对铕配合物有机电致发光二极管(OLEDs)性能的提高[J].发光学报,2005,26(2):262-264. 被引量:5
  • 4Soeren Steudel,Kris Myny,Sarah Schols,Peter Vicca,Steve Smout,Ashutosh Tripathi,Bas van der Putten,Jan-Laurens van der Steen,Martin van Neer,Falk Schütze,Olaf R. Hild,Erik van Veenendaal,Pieter van Lieshout,Marcel van Mil,Jan Genoe,Gerwin Gelinck,Paul Heremans.Design and realization of a flexible QQVGA AMOLED display with organic TFTs[J].Organic Electronics.2012(9)
  • 5G Gutiérrez-Heredia,L A González,H N Alshareef,B E Gnade,M Quevedo-López.A flexible organic active matrix circuit fabricated using novel organic thin film transistors and organic light-emitting diodes[J].Semiconductor Science and Technology.2010(11)
  • 6Wenyu Ji,Letian Zhang,Zhang Tianyu,Wenfa Xie,Hanzhuang Zhang.High-contrast and high-efficiency microcavity top-emitting white organic light-emitting devices[J].Organic Electronics.2009(2)
  • 7Li-Shiuan Tsai,Chung-Hwa Wang,Wei-Yu Chen,Wen-Chieh Wang,Jennchang Hwang.Low-voltage organic thin-film transistors with hydrophobic hafnium oxynitride film as gate insulator[J].Organic Electronics.2009(1)
  • 8Gi-Seong Ryu,Ki-Beom Choe,Chung-Kun Song.Array of organic thin film transistors integrated with organic light emitting diodes on a plastic substrate[J].Thin Solid Films.2006(1)
  • 9Wei Wang,Jiawei Shi,Wenhai Jiang,Shuxu Guo,Hongmei Zhang,Baofu Quan,Dongge Ma.High-mobility pentacene thin-film transistors with copolymer-gate dielectric[J].Microelectronics Journal.2006(1)
  • 10Tang C W, Vanslyke S A. Organic electroluminescent diodes [J]. Appl. Phys. Lett. , 1987, 51(12)= 913- 915.

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