ZHOU Si-cheng, GAO Jing-xuan, MA Su-yang etc. Properties Adjustment for Organic Light-emitting Diodes by Doping Ir-complex Dyes[J]. Chinese Journal of Luminescence, 2016,37(5): 548-555
ZHOU Si-cheng, GAO Jing-xuan, MA Su-yang etc. Properties Adjustment for Organic Light-emitting Diodes by Doping Ir-complex Dyes[J]. Chinese Journal of Luminescence, 2016,37(5): 548-555 DOI: 10.3788/fgxb20163705.0548.
Properties Adjustment for Organic Light-emitting Diodes by Doping Ir-complex Dyes
Through doping different organic dyes in organic light-emitting diodes (OLEDs) with the same structures
we hope to investigate the relationship between the energy gaps of the doped dyes and the emission wavelength of the devices
as well as to analyze the energy transfer mechanism in the system. The structure of the OLED is ITO/NPB/CBP:dyes/TPBi/Mg:Ag/Ag
and the doped organic dyes include Ir(MDQ)
2
(acac)
Ir(ppy)
3
and Firpic. The three doped devices have almost the same threshold voltages and emit red
green and blue light
respectively. At an luminance of 100 cd/m
2
the green-light device doped Ir(ppy)
3
achieves the highest external quantum efficiency of 7.64%. Meanwhile
the red-light device doped Ir(MDQ)
2
(acac) has the external quantum efficiency of 2.75%
which is the lowest one among the three devices
while the blue-light one doped Firpic achieves an external efficiency of 5.65%. The differences of the emission wavelength and the external quantum efficiency of those devices are assigned to the difference of the energy gaps of the dyes. Further analysis also shows that energy transfer between the CBP and the dyes exists.
关键词
Keywords
references
丁邦东. 稠环芳烃材料在有机电致发光器件中的应用研究[D]. 上海:上海大学, 2008. Ding B D. Application Studies of Fused-ring Aromatic Compounds in Organic Light Emitting Devices[D]. Shanghai:University of Shanghai, 2008. (in Chinese)
TANG C W, VANSLYKE S A. Organic electroluminescent diodes[J]. Appl. Phys. Lett., 1987, 51(12):913-915.
陈金鑫,黄希文. OLED梦幻显示器:材料与器件[M]. 北京:人民邮电出版社, 2011. CHEN J X, HUANG X W. Dream OLED Display:Materials and Device[M]. Beijing:Posts & Telecom Press, 2011. (in Chinese)
陆勍,陈炳月,杨魏强,等. 双电子传输层对有机发光二极管效率及其衰减的改善[J]. 发光学报, 2015, 36(9):1053-1058. LU Q, CHEN B Y, YANG W Q, et al.. Improved efficiency and its roll-off of organic light-emitting diodes with double electron transport layers[J]. Chin. J. Lumin., 2015, 36(9):1053-1058. (in Chinese)
YANG J W, CHOI M K, KIMD H, et al.. Designed assembly and integration of colloidal nanocrystals for device applications[J]. Adv. Mater., 2015, 27(6):1176-1207.
CHOI S J, LEE H J, GHAFFARIR, et al.. Recent advanvces in flexible and stretchable bio-electronic devices integrated with nanomaterials[J]. Adv. Mater., 2016, DOI:10.1002/adma.201504150.
LEE H, KIM M, KIM I, et al.. Flexible and stretchable optoelectronic devices using silver nanowires and graphene[J]. Adv. Mater., 2016, DOI:10.1002/adma.201505559.
SONG W, LEE I, LEE J Y. Host engineering for high quantum efficiency blue and white fluorescent organic light-emitting diodes[J]. Adv. Mater., 2015, 27:4358-4363.
TANG C W, VAN SLYKE S A, CHEM C H. Electroluminescence of doped organic thin films[J]. J. Appl. Phys., 1989, 65(9):3610-3616.
武明珠,郭闰达,张振松,等. 面向彩色有机微显示的有机白光顶发射器件[J]. 液晶与显示, 2015, 30(5):790-795. WU M Z, GUO R D, ZHANG Z S, et al.. Top emitting white organic light emitting diodes towards full color organic microdisplay[J]. Chin. J. Liq. Cryst. Disp., 2015, 30(5):790-795. (in Chinese)
WANG Q, OSWALD I W H, YANG X L, et al.. Non-doped phosphorescent organic light-emitting device with above 31% external quantum efficiency[J]. Adv. Mater., 2014, 26:8107-8113.
LEE J H, CHENG S H, YOO S J, et al.. An exciplex forming host for highly efficient blue organic light emitting diodes with low driving voltage[J]. Adv. Funct. Mater., 2015, 25:361-366.
PERUMAL A, FABER H, YAACOBI-GROSS N, et al.. High-efficiency, solution-processed, multilayer phosphorescent organic light-emitting diodes with a copper thiocyanate hole-injection/hole-transport layer[J]. Adv. Mater., 2015, 27:93-100.
CUI L S, XIE Y M, WANGY K, et al.. Pure hydrocarbon hosts for 100% exciton harvesting in both phosphorescent and fluorescent light-emitting devices[J]. Adv. Mater., 2015, 27:4213-4217.
WANG H, MENG L Q, SHEN X X, et al.. Highly efficient orange and red phosphorescent organic light-emitting diodes with low roll-off of efficiency using a novel thermally activated delayed fluorescence material as host[J]. Adv. Mater., 2015, 27:4041-4047.
应根裕,王健. 光电显示原理与系统[M]. 北京:清华大学出版社, 2015:334. YING G Y, WANG J. Principles and System of Photoelectric Display[M]. Beijing:Tsinghua University Press, 2015:334. (in Chinese)
宋心琦,周福添,刘剑波. 光化学:原理、技术与应用[M]. 北京:高等教育出版社, 2001:15. SONG X Q, ZHOU F T, LIU J B. Photochemsitr:Principles, Techniques, Applications[M]. Beijing:Higher Education Press, 2001:15. (in Chinese)
SZE S M, NG K K. Physics of Semiconductor Devices[M]. New York:John Wiley & Sons, Inc., 2007.