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Polycarbazole-based networks made by photo-crosslinking for hole transporting layers of OLED devices

机译:通过光交联制成的基于聚咔唑的网络,用于OLED器件的空穴传输层

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摘要

Cross-linkable polycarbazole copolymers have been synthesized starting from 3,6-diiodo-9-(2-ethylhexyl)carbazole and 3,6-diodo-9-[6-(3-ethyloxetan-3-ylmethoxy)hexyl]carba-zole monomers in a Ni(O)-catalyzed Yamamoto-type aryl-aryl coupling. The synthesized materials were characterized by various techniques including differential scanning calo-rimetry, thermogravimetry and cyclic voltammetry. Insoluble layers of the copolymers have been obtained by photo-crosslinking thin films of the materials. Organic light emitting diodes using the crosslinked polycarbazole networks as hole transporting layer demonstrated a turn-on voltage of ca. 4 V, a maximum brightness of 15,000 cd/m~2, and maximum OLED efficiency of 8.5 cd/A.
机译:从3,6-二碘-9-(2-乙基己基)咔唑和3,6-二碘-9- [6-(3-乙基氧杂-3-基甲氧基)己基]咔唑开始合成可交联的聚咔唑共聚物Ni(O)催化的Yamamoto型芳基-芳基偶联中的单体。合成的材料通过包括差示扫描量热法,热重分析法和循环伏安法在内的各种技术进行表征。共聚物的不溶层是通过使材料的薄膜光交联而获得的。使用交联的聚咔唑网络作为空穴传输层的有机发光二极管显示出大约为1的开启电压。 4 V,最大亮度为15,000 cd / m〜2,最大OLED效率为8.5 cd / A。

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  • 来源
    《Organic Electronics》 |2011年第12期|p.2253-2257|共5页
  • 作者单位

    Department of Organic Technology, Kaunas University of Technology, Radvilenu Plentas 19, LT-50254 Kaunas, Lithuania;

    State Key Laboratory of Polymer Physics and Chemistry, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun 130022, China;

    State Key Laboratory of Polymer Physics and Chemistry, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun 130022, China;

    Macromolecular Chemistry Croup and Institute of Polymer Technology, Wuppertal University, GauJSstraJSe 20, D-42179 Wuppertal, Germany;

    Macromolecular Chemistry Croup and Institute of Polymer Technology, Wuppertal University, GauJSstraJSe 20, D-42179 Wuppertal, Germany;

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

    polycarbazole; cross-linkable material; light emitting diode; photometric efficiency;

    机译:聚咔唑可交联材料;发光二极管;光度效率;

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