期刊文献+

采用复合母体的高效高显色指数白光有机发光二极管 被引量:4

Double-host High Efficiency White Organic Light-emitting Diodes with High Color Rendering Index
在线阅读 下载PDF
导出
摘要 采用复合母体技术制备了一种高效率高显色指数白光有机发光二极管。驱动电压在8 V到12 V变化时,器件的CIE-1931色坐标由(0.343 2,0.339 7)变化到(0.324 3,0.321 8),相关色温由5 035 K变化到5 915 K,其显色指数均保持在90以上。器件在14 V时达到最大亮度,为27 853 cd/m2,在7.5 V时达到最大效率为9.58 cd/A。实验中通过调节绿色和红色发光层的厚度来调节器件的发光光谱,通过敏化绿色和红色发光成分以实现电致发光效率的提高,器件的最大效率比没有采用敏化机制的参比器件提高了73.6%。 High efficiency white organic light-emitting diodes(WOLEDs) with high color rendering index(CRI) was fabricated.The white light was composed by the blue emission of 9,10-di(2-naphthyl) anthracene and the enhanced green and red emissions of tris-(8-hydroxyquinolinato) aluminum and 4-(dicyanomethylene)-2-t-butyl-6-(1,1,7,7-tetramethyljulolidyl-9-enyl)-4H-pyran,respectively.The WOLED shows the Commission Internationale de l'Eclairage-1931 coordinates vary from(0.343 2,0.339 7) to(0.324 3,0.321 8),the correlated color temperature varies from 5 035 K to 5 915 K and all the CRIs exceed 90 when the driving voltage changes from 8 V to 12 V.A maximum brightness of 27 853 cd/m2 at 14 V and a peak current efficiency of 9.58 cd/A at 7.5 V are attained,respectively.The electroluminescent(EL) spectrum is tuned by changing the thickness of the green and red emission layers.The efficiency enhancement is realised by sensitising the green and red light emissions.The maximum efficiency is increased by 73.6% compared to the control device.
出处 《发光学报》 EI CAS CSCD 北大核心 2012年第3期299-303,共5页 Chinese Journal of Luminescence
基金 秦皇岛市科学技术研究与发展计划(201101A113) 燕山大学博士基金(B580) 吉林省科技发展计划(20110321)资助项目
作者简介 朱键卓(1982-),男,河北秦皇岛人,主要从事有机半导体器件的研究。E-mail:zhujz@ysu.edu.cn
  • 相关文献

参考文献3

二级参考文献24

  • 1陈光红,于映,罗仲梓,吴清鑫.AZ5214E反转光刻胶的性能研究及其在剥离工艺中的应用[J].功能材料,2005,36(3):431-433. 被引量:17
  • 2才华,司玉娟,郎六琪,刘式墉.彩色有源OLED显示屏上像素仿真及外围驱动电路设计[J].发光学报,2006,27(4):618-623. 被引量:7
  • 3Khan M A, Xu Wei, Cao Jin, et al. Spectral studies of white organic light-emitting devices based on multi-emitting layers [ J ]. Displays, 2007, 28 ( 1 ) : 26-30.
  • 4Liu Yingliang, Di Cong-an, Xin Yuanrong, et al. Organic light-emitting diode based on a carbazole compound [ J]. Synthetic Metals, 2006, 156(11-13) :824-827.
  • 5Shizuo Tokito, Tetsuo Tsutsui, Yasunori Taga. Microcavity organic light-emitting diodes for strongly directed pure red, green, and blue emissions [J]. J. Appl. Phys. , 1999, 86(51) :2407-2411.
  • 6Jung Boo Young, Kim Nam Young, Lee Changhee. Control of resonant wavelength from organic light-emitting materials by use of a Fabry-Perot microcavity structure [J]. Appl. Opt. , 2002, 41(16) :3312-3318.
  • 7Deppe D G, Lel C, Lin C C, et al. Spontaneous emission from planar microstrucyures[J]. J. Modern Optics, 1994, 41 (2) :325-344.
  • 8Michel Schaer,Frank Niiesch,Detlef Berner,et al.Water vapor and oxygen degradation mechanisms in organic light emitting diodes[J].Advanced Functional Materials,2001,11 (2):116-121.
  • 9Christophe Py,Marie D'Iorio,Ye Tao,et al.A passive matrix addressed organic electroluminescent display using a stack of insulators as row separators[J].Synthetic Metals,2000,113(1-2):155-159.
  • 10Christophe Py,Dan Roth,Isabelle Lévesque,et al.An integrated shadow-mask based on a stack of inorganic insulators for high-resolution OLEDs using evaporated or spun-on materials[J].Synthetic Metals,2001,122 (1):225-227.

共引文献20

同被引文献35

  • 1许运华,彭俊彪,曹镛.白光有机电致发光器件进展[J].化学进展,2006,18(4):389-398. 被引量:20
  • 2Shirota Y, Kageyama H. Charge carrier transporting molecular materials and their applications in devices [J].Chem. Rev., 2007, 107(4):953-1010.
  • 3Tiwari S, Greenham N C. Charge mobility measurement techniques in organic semiconductors [J].Opt. Quant. Electron., 2009, 41(2):69-89.
  • 4Hosokawa C, Tokailin H, Higashi H, et al. Transient behavior of organic thin film electroluminescence [J].Appl. Phys. Lett., 1992, 60(10):1220-1222.
  • 5Pal A J, Osterbacka R, Kallman K M, et al. Transient electroluminescence: Mobility and response time in quinquethiophene Langmuir-Blodgett films [J].Appl. Phys. Lett., 1997, 71(2):228-230.
  • 6Kawabe Y, Abe J. Electron mobility measurement using exciplex-type organic light-emitting diodes [J].Appl. Phys. Lett., 2002, 81(3):493-495.
  • 7Heun S, Borsenberger P M. A comparative study of hole transport in vapor-deposited molecular glasses of N,N',N″,N'''-tetrakis(4-methylphenyl)-(1,1'-biphenyl)-4,4'-diamine and N,N'-diphenyl-N,N'-bis(3-methylphenyl)-(1,1'-biphenyl)-4,4'-diamine [J].Chem. Phys., 1995, 200(1-2):245-255.
  • 8Fong H H, Lun K C, So S K. Hole transports in molecularly doped triphenylamine derivative [J].Chem. Phys. Lett., 2002, 353(5-6):407-413.
  • 9Savvateev V, Yakimov A, Davidov D. Transient elecroluminescence from poly(phenylenevinylene)-based devices [J].Adv. Mater., 1999, 11(7):519-531.
  • 10Campbell A J, Bradley D D C, Antoniadis H, et al. Trap-free, space-charge-limited currents in a polyfluorene copolymer using pretreated indium tin oxide as a hole injecting contact [J].Synth. Met., 2001, 122(1):161-163.

引证文献4

二级引证文献10

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部