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High efficient and high color rendering index white organic light-emitting diodes

High efficient and high color rendering index white organic light-emitting diodes
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摘要 We have fabricated high-efficient white organic light-emitting diodes (WOLEDs) using two types of electron transport materials with different electron mobility. The effect of the electron mobility on the device performance is discussed. In addition, to generate the desired white emission and high color rendering index, we perform the structure design of OLED, in which the functions of co-host of blue and green dopants on chromatic-stability are investigated. Experimental results find that the maximum color rendering index reaches as high as 91 at the voltage of 8 V. We have fabricated high-efficient white organic light-emitting diodes (WOLEDs) using two types of electron transport materials with different electron mobility. The effect of the electron mobility on the device performance is discussed. In addition, to generate the desired white emission and high color rendering index, we perform the structure design of OLED, in which the functions of co-host of blue and green dopants on chromatic-stability are investigated. Experimental results find that the maximum color rendering index reaches as high as 91 at the voltage of 8 V.
出处 《Journal of Shanghai University(English Edition)》 CAS 2011年第4期252-255,共4页 上海大学学报(英文版)
基金 supported by the Development Foundation for Electronic and Information Industry(2010),the Science and Technology Commission of Shanghai Municipality(Grant No.10DZ1140502) the Mechatronics Engineering Innovation Group Project from Shanghai Education Commission
关键词 white organic light emitting diodes (WOLEDs) charge balance energy transfer color rendering index white organic light emitting diodes (WOLEDs), charge balance, energy transfer, color rendering index
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  • 1D'ANDRADE B W, FORREST S R. White organic light- emitting devices for solid-state lighting [J]. Advanced Materials, 2004, 16(18): 1585-1595.
  • 2Ko Y W, CHUNG C H, Y, KIM B C, HWANG C LEE J H, KIM Y H, SOHN C S, SONG Y H, LIM J, AHN Y J, KANG G W, LEE N, LEE C. Efficient white organic light emission by single emitting layer [J]. Thin Solid Films, 2003, 426(1/2): 246-249.
  • 3DESHPANDE R S, BULOVIC V, FORREST S R. White- light-emitting organic electroluminescent devices based on interlayer sequential energy transfer [J]. Applied Physics Letters, 1999, 75(7): 888 890.
  • 4KIDO J, KIMURA M, NAGAI K. Multilayer white light- emitting organic electroluminescent device [J]. Science, 1995, 267(5202): 1332-1334.
  • 5LEI G T, WANG L D, QIU Y. Multilayer organic electrophosphorescent white light-emitting diodes with- out exciton-blocking layer [J]. Applied Physics Letters, 2006, 88(10): 103508-103510.
  • 6Ko C W, TAO Y T. Bright white organic light-emitting diode [J]. Applied Physics Letters, 2001, 79(25): 4234- 4236.
  • 7SATO Y, OGATA T, ICHINOSAWA S, MURATA Y. Charac- teristics of organic electroluminescent devices with new dopants [J]. Synthetic Metals, 1997, 91(1/3): 103-107.
  • 8HATWAR T K, SPINDLER H, HAMADA Y, SAITO N J P, RICKS M L, YOUNG R MAMENO K, NISHIKAWA R, TAKAHASHI H, RAJESWARAN G. High-efficiency white OLEDs based on small molecules [C]// Proceedings of SPIE, Beijing. 2004, 5214: 233-240.
  • 9Liu T H, Wu Y S, LEE M T, CHEN H H, LIAO C H, CHEN C H. Highly efficient yellow and with organic elec- troluminescent devices base on sterically hindered tetra (t-butyl) rubrene dopant [J]. Applied Physics Letters, 2004, 85(19): 4304-4306.
  • 10SUN Y, GIEBINK N, KANNO H, WA B, THOMPSON M, FORREST S. Management of singlet and triplet excitons for efficient white organic light-emitting devices [J]. Na- ture, 2006, 440(7086): 908-912.

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