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Polymer light emitting diodes based on polyfluorenes

机译:基于聚芴的聚合物发光二极管

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摘要

This dissertation is devoted to the study on Polymer Light-Emitting Diodes (PLEDs) based on polyfluorenes (PFs), a promising class of semiconductive polymers for Light-Emitting Diode (LED) applications. Recently Light Emitting Polymers (LEPs) have clearly made their entry into display technology by virtue of their potential application for large-area flat-panel displays with the advantages of low cost, wide viewing angle, fast switching time, high efficiency, low driving voltage, as well as their flexibility and adaptability. Compared to inorganic materials, the efficiency of PLEDs is, however, still low. And for the application of PFs in PLEDs, an undesired longwavelength emission band is a main barrier, which occurs during device operation and results in both color instability and reduced efficiency. In this study, several types of PLED devices based on neat PFs or PF blends were designed, fabricated, and characterized: (1) PF2/6:PFB blended devices, (2) end-capped PF2/6 devices, (3) F8BT:PPB blended devices, and (4) end-capped PF2/6:F8BT blended devices. DMP-end-capped PF2/6, PFB and PPB are novel polymers. For PF2/6, only a few results have been reported although it is of great significance for study of effect of blending and end-capping on device performance and color stability.;In comparison with pure PFs, the enhanced properties were observed from blend devices although the improvement might result from different reasons. For example, DMP-end-capped PF2/6:F8BT blended devices demonstrated better performance than either of the blend components with a maximum luminance of 1074 cd/m2 at 213.6 mA/cm2, a maximum external quantum efficiency of 0.16% and a maximum luminance efficiency of 0.514 cd/A at 205.2 mA/cm2, which was assigned to efficient energy transfer of excitations.;Besides the increase in efficiencies as compared to PF2/6, long-wavelength emission is significantly suppressed for end-capped PF2/6, which dominates the EL spectrum of PF2/6. In the case of DMP-end-capping, EL spectrum peaked at 420, 445, and 485 nm, all maxima falling into violet-blue region. This might be due to the efficient hole trapping at the end-capper groups, the shift of the exciton recombination zone, or the enhancement in the polymer resistance to oxidation.;The pristine PF2/6 device was modeled by using space charge limited current theory for the hole-only case. The hole mobility is regarded as field-dependent. The calculated current density-voltage characteristics fit the experimental data very well at electric fields above 6.5 x 105V/cm. The electrical characteristics of neat PF2/6 and neat F8BT-based devices were also simulated via exploiting a commercial TCAD software package.
机译:本论文致力于基于聚芴(PF)的高分子发光二极管(PLED)的研究,这是一种很有前景的用于发光二极管(LED)的半导体聚合物。近年来,发光聚合物(LEP)凭借其在低成本,宽视角,快速切换时间,高效率,低驱动电压方面的优势在大面积平板显示器中的潜在应用,显然已进入显示技术。 ,以及它们的灵活性和适应性。然而,与无机材料相比,PLED的效率仍然很低。对于PF在PLED中的应用,不希望的长波长发射带是主要的障碍,它会在器件工作期间发生,并导致颜色不稳定和效率降低。在这项研究中,设计,制造和表征了几种基于纯PF或PF共混物的PLED器件:(1)PF2 / 6:PFB混合器件;(2)封端的PF2 / 6器件;(3)F8BT :PPB混合设备,以及(4)封端的PF2 / 6:F8BT混合设备。 DMP封端的PF2 / 6,PFB和PPB是新型聚合物。对于PF2 / 6,虽然只有很少的结果报道,但是对于研究共混和封端对器件性能和颜色稳定性的影响具有重要意义。;与纯PF相比,共混器件具有增强的性能尽管改进可能来自不同的原因。例如,DMP端基封端的PF2 / 6:F8BT混合器件表现出比任何一种混合组分都更好的性能,在213.6 mA / cm2时最大亮度为1074 cd / m2,最大外部量子效率为0.16%,最大在205.2 mA / cm2时的发光效率为0.514 cd / A,这被指定为激发的有效能量传递;;与PF2 / 6相比,效率有所提高,但封端PF2 / 6的长波长发射得到了显着抑制,它主导着PF2 / 6的EL光谱。在DMP封端的情况下,EL光谱在420、445和485 nm处达到峰值,所有最大值都落在紫蓝色区域。这可能是由于末端封端基团处的空穴有效捕获,激子复合区的移动或聚合物抗氧化性的提高所致。原始PF2 / 6器件是使用空间电荷限制电流理论建模的仅用于孔的情况。空穴迁移率被认为与场有关。在6.5 x 105V / cm以上的电场下,计算出的电流密度-电压特性非常符合实验数据。通过使用商业化的TCAD软件包,还可以对基于PF2 / 6和基于F8BT的纯净设备的电气特性进行仿真。

著录项

  • 作者

    Zhang, Quishu.;

  • 作者单位

    Louisiana Tech University.;

  • 授予单位 Louisiana Tech University.;
  • 学科 Electrical engineering.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 141 p.
  • 总页数 141
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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