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首页> 外文期刊>Journal of Polymer Science, Part A. Polymer Chemistry >Synthesis of Thermal-Stable and Photo-Crosslinkable Polyfluorenes for the Applications of Polymer Light-Emitting Diodes
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Synthesis of Thermal-Stable and Photo-Crosslinkable Polyfluorenes for the Applications of Polymer Light-Emitting Diodes

机译:用于聚合物发光二极管的热稳定和光交联性聚芴的合成

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摘要

Three polyfluorene derivatives which have oxetane-containing phenyl group at C-9 position were synthesized via the palladium-catalyzed Suzuki-coupling reaction. The synthesized polymers PFB, PFG, and PFR emit blue, green, and red light, respectively. A double-layer device with the configuration of ITO/PEDOT/polymer/Ca/Al using PFB as the active layer showed a threshold voltage of 5 V, a maximum brightness of 2030 cd/m(2), and a maximum current efficiency of 0.35 cd/A. Using PFG as the active layer, the device exhibited a threshold voltage of 6 V, a maximum brightness of 6447 cd/m(2), and a maximum current efficiency of 1.27 cd/A. Using PFR as the active layer, the device showed a threshold voltage of 4 V, a maximum brightness of 2135 cd/m(2), and a maximum current efficiency of 0.16 cd/A. Better electroluminescent performance was also found based on different design of device structures. Due to photo-crosslinking property of oxetane groups, the UV-exposed thin films are insoluble in common organic solvents. A device comprised of blue, green, and red-emissive pixels was successfully fabricated by spin-coating and photo-lithographic processes. In addition, a white light-emitting device with CIE coordinate of (0.34, 0.33) was achieved by blending PFR into a host material PFB as the active layer.
机译:通过钯催化的Suzuki偶联反应,合成了三种在C-9位具有氧杂环丁烷苯基的聚芴衍生物。合成的聚合物PFB,PFG和PFR分别发出蓝色,绿色和红色光。使用PFB作为有源层的ITO / PEDOT /聚合物/ Ca / Al双层器件的阈值电压为5 V,最大亮度为2030 cd / m(2),最大电流效率为0.35 cd / A。使用PFG作为有源层,该器件的阈值电压为6 V,最大亮度为6447 cd / m(2),最大电流效率为1.27 cd / A。使用PFR作为有源层,该器件的阈值电压为4 V,最大亮度为2135 cd / m(2),最大电流效率为0.16 cd / A。基于器件结构的不同设计,还发现了更好的电致发光性能。由于氧杂环丁烷基的光交联性质,暴露于紫外线的薄膜不溶于普通的有机溶剂。通过旋涂和光刻工艺成功制造了由蓝色,绿色和红色发光像素组成的设备。另外,通过将PFR掺入作为活性层的主体材料PFB中,获得了具有CIE坐标为(0.34,0.33)的白色发光装置。

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