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Spectrally narrowed leaky waveguide edge emission and transient electroluminescent dynamics of OLEDs.

机译:OLED的光谱窄泄漏波导边缘发射和瞬态电致发光动力学。

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摘要

There are two major research works presented in this dissertation. The first research project (Chapter 4) is spectrally narrowed edge emission from Organic Light Emitting Diodes. The second project (Chapter 5) is about transient electroluminescent dynamics in OLEDs. Chapter 1 is a general introduction of OLEDs. Chapter 2 is a general introduction of organic semiconductor lasers. Chapter 3 is a description of the thermal evaporation method for OLED fabrication.The detail of the first project was presented in Chapter 4. Extremely narrowed spectrum was observed from the edge of OLED devices. A threshold thickness exists, above which the spectrum is narrow, and below which the spectrum is broad. The FWHM of spectrum depends on the material of the organic thin films, the thickness of the organic layers, and length of the OLED device. A superlinear relationship between the output intensity of the edge emission and the length of the device was observed, which is probably due to the misalignment of the device edge and the optical fiber detector. The original motivation of this research is for organic semiconductor laser that hasn't been realized due to the extremely high photon absorption in OLED devices. Although we didn't succeed in fabricating an electrically pumped organic laser diode, we made a comprehensive research in edge emission of OLEDs which provides valuable results in understanding light distribution and propagation in OLED devices.Chapter 5 focuses on the second project. A strong spike was observed at the falling edge of a pulse, and a long tail followed. The spike was due to the recombination of correlated charge pair (CCP) created by trapped carriers in guest molecules of the recombination zone. When the bias was turned off, along with the decreasing of electric field in the device, the electric field induced quenching decreases and the recombination rate of the CCP increases which result in the spike. This research project provides a profound understanding of the EL dynamics of OLED, and the theoretical model can fit and explain the experiment data quite well.
机译:本文提出了两项​​主要的研究工作。第一个研究项目(第4章)是有机发光二极管的光谱窄边发射。第二个项目(第5章)涉及OLED中的瞬态电致发光动力学。第1章概述了OLED。第2章概述了有机半导体激光器。第3章介绍了OLED制造的热蒸发方法。第4章介绍了第一个项目的详细信息。从OLED器件的边缘观察到了极窄的光谱。存在阈值厚度,在该阈值厚度之上光谱窄,而在其之下光谱光谱宽。光谱的FWHM取决于有机薄膜的材料,有机层的厚度和OLED器件的长度。观察到边缘发射的输出强度与设备长度之间的超线性关系,这可能是由于设备边缘与光纤检测器未对准造成的。这项研究的最初动机是针对有机半导体激光器,由于OLED器件中的光子吸收极高,因此尚未实现。尽管我们没有成功地制造出电泵浦有机激光二极管,但我们对OLED的边缘发射进行了全面的研究,这为了解OLED器件中的光分布和传播提供了有价值的成果。第5章重点研究第二个项目。在脉冲的下降沿观察到强烈的尖峰,随后出现长尾巴。峰值是由于重组区的客体分子中捕获的载流子产生的相关电荷对(CCP)的重组所致。当偏置关闭时,随着器件中电场的减小,电场感应的猝灭减小,CCP的复合率增加,从而导致尖峰。该研究项目对OLED的EL动力学有深刻的理解,理论模型可以很好地拟合和解释实验数据。

著录项

  • 作者

    Gan, Zhengqing.;

  • 作者单位

    Iowa State University.;

  • 授予单位 Iowa State University.;
  • 学科 Physics Condensed Matter.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 161 p.
  • 总页数 161
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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