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One-dimensional micro-scale patterned conjugated polymer structures in bilayer architecture and light emitting diode application

机译:双层架构和发光二极管应用中的一维微尺寸缀合的聚合物结构

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摘要

To maximize luminescent brightness in organic light-emitting diode (OLED) systems, charge transport dynamics of emissive layer is needed to be controlled. Herein, we pattern aligned micrometer scale conjugated polymer structures using a solution based processing method. Super yellow (SY)-polyethylene oxide (PEO) nanofibers were electrospun using simple uniaxial electrospinning method. A hybrid bilayer of SY-PEO fiber and poly (9,9-dioctylfluorene) derivative PFO film was formed by the sequential deposition of the electrospun fiber and spin-coated film. The maximum brightness of hybrid LED devices was increased over 1.7 fold to that of film-film bilayer device possessing same average film thickness. Besides, optical properties such as absorption/luminescence of SY were modulated by the rapid crystallization and solvent evaporation during electrospinning process compared to the spin-coated film. The electroluminescence enhancement and color control was attributed to balanced charge transport and enhanced Forster resonance energy transfer (FRET).
机译:为了使有机发光二极管(OLED)系统中的发光亮度最大化,需要控制发光层的电荷传输动态。这里,我们使用基于溶液的处理方法模式对准微米凝聚的聚合物结构。使用简单的单轴静电纺丝方法将超黄(SY) - 聚环氧乙烷(PEO)纳米纤维是Electrome的。通过纺丝纤维和旋涂膜的顺序沉积形成SY-PEO纤维和聚(9,9-二辛基氟烯)衍生PFO膜的杂交双层。混合LED器件的最大亮度增加到具有相同平均膜厚度的薄膜膜双层装置的1.7倍。此外,与旋涂膜相比,通过在静电纺丝过程中的快速结晶和溶剂蒸发来调节诸如SY的吸收/发光的光学性质。电致发光增强和颜色控制归因于平衡的电荷传输和增强的福尔斯特共振能量转移(FRET)。

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  • 来源
    《Organic Electronics》 |2020年第12期|105965.1-105965.8|共8页
  • 作者单位

    Department of Chemical Engineering National Taiwan University Taipei 10617 Taiwan;

    Department of Chemical Engineering National Taiwan University Taipei 10617 Taiwan;

    Department of Chemical Engineering National Taiwan University Taipei 10617 Taiwan;

    Institute of Polymer Science and Engineering National Taiwan University Taipei 10617 Taiwan;

    Department of Chemical Engineering National Taiwan University Taipei 10617 Taiwan;

    Department of Chemical Engineering National Taiwan University Taipei 10617 Taiwan Institute of Polymer Science and Engineering National Taiwan University Taipei 10617 Taiwan Advanced Research Center of Green Materials Science and Technology National Taiwan University Taipei 10617 Taiwan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Electrospinning; Nanofiber; Conjugated polymer; Polymer patterning; LED;

    机译:静电纺丝;纳米纤维;共轭聚合物;聚合物图案化;引领;

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