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Relating charge transport and performance in single-layer graded-composition organic light-emitting devices

机译:单层渐变组成的有机发光器件中的电荷传输和性能相关

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摘要

Efficient electrophosphorescence is demonstrated using single-layer organic light-emitting devices (OLEDs) containing fac-tris(2-phenylpyridine) iridium (Ⅲ) [Ir(ppy)3], bis(l-phenylisoquinoline)-(acetylacetonate) iridium (Ⅲ) [PQIr], and iridium(Ⅲ) bis[(4,6-difluorophenyl)-pyridinato-N,C2 ]picolinate [Firpic] for emission in the green, red, and blue, respectively. Peak forward-emitted external quantum (ηEqe) and power efficiencies (Ηp) of ηeqe = (16.9 ± 0.4)% and Ηp = (65.0 ± 1.1)lm/W, Ηeqe = (12.0 ± 0.4)% and Ηp =(8.3 ±1.1) lm/W, and Ηeqb=(10.9 ± 0.3)% and ηp =(28.1 ± 1.1)lm/W, are obtained for optimized green, red, and blue OLEDs, respectively. Devices are doped uniformly with the phosphorescent guest, and contain a continuously-varying host composition from predominately hole-transporting material (HTM) at the anode to predominately electron transporting material (ETM) at the cathode. The highly tunable composition gradient allows for the optimization of electron-hole charge balance and low-voltage operation while maintaining charge and exciton confinement. For each emitter, the optimum composition gradient is understood by considering the dependence of the electron and hole charge carrier mobilities on HTM:ETM composition.
机译:使用包含fac-三(2-苯基吡啶)铱(Ⅲ)[Ir(ppy)3],双(1-苯基异喹啉)-(乙酰丙酮)铱(Ⅲ)的单层有机发光器件(OLED)证明了有效的电致磷光。 )[PQIr]和铱(Ⅲ)双[(4,6-二氟苯基)-吡啶基-N,C2]吡啶甲酸[Firpic]分别以绿色,红色和蓝色发射。 ηeqe=(16.9±0.4)%和hp =(65.0±1.1)lm / W,eqe =(12.0±0.4)%和hp =(8.3±)的峰值前向发射外部量子(ηEqe)和功率效率(Ηp)对于优化的绿色,红色和蓝色OLED分别获得1.1)lm / W和Heqb =(10.9±0.3)%和ηp=(28.1±1.1)lm / W。器件用磷光客体均匀掺杂,并且包含从阳极处的主要空穴传输材料(HTM)到阴极处的主要电子传输材料(ETM)连续变化的主体组成。高度可调的成分梯度可优化电子空穴电荷平衡和低压操作,同时保持电荷和激子约束。对于每个发射器,可以通过考虑电子和空穴载流子迁移率对HTM:ETM成分的依赖性来理解最佳成分梯度。

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  • 来源
    《Journal of Applied Physics》 |2011年第8期|p.084515.1-084515.8|共8页
  • 作者单位

    Department of Electrical and Computer Engineering, University of Minnesota, Minneapolis, Minnesota 55455, USA;

    Department of Chemical Engineering and Materials Science, University of Minnesota, Minneapolis, Minnesota 55455, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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