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首页> 外文期刊>Organic & biomolecular chemistry >Water/alcohol soluble electron injection material containing azacrown ether groups: synthesis, characterization and application to enhancement of electroluminescence
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Water/alcohol soluble electron injection material containing azacrown ether groups: synthesis, characterization and application to enhancement of electroluminescence

机译:含氮杂皇冠醚基团的水/醇溶电子注入材料:合成,表征及其在增强电致发光中的应用

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摘要

Using an environmentally stable metal as the cathode in a polymer light-emitting diode (PLED) is an essential requirement for its practical application. We present the preparation of a water/alcohol soluble copoly(p-phenylene) (P1) containing pendant azacrown ether and ethylene glycol ether groups as a highly efficient electron injection layer (EIL) for PLEDs, allowing the use of environmentally stable aluminum as the cathode. Multilayer PLEDs [ITO/PEDOT:PSS/PF-Green-B/EIL/Al] using P1 as EIL exhibit significantly enhanced device performance, particularly in the presence of K_2CO_3 or Cs_2CO_3. The maximum luminous power efficiency and maximum luminance of the device with Cs_2CO_3-doped P1 as EIL were enhanced to 9.16 lm W~(-1) and 17 050 cd m~(-2), respectively, compared with those without EIL (0.16 lm W~(-1), 890 cd m~(-2)). The turn-on voltage was also significantly reduced from 5.7 V to 3.7 V simultaneously. The performance enhancement has been attributed to improved electron injection which has been confirmed by the rise in open-circuit voltage (V_(oc)) obtained from photovoltaic measurements. The incorporation of such an electron injection layer significantly enhances device performance for PLEDs with an environmentally stable metal as the cathode.
机译:在聚合物发光二极管(PLED)中,使用环境稳定的金属作为阴极是其实际应用的基本要求。我们提出了一种水/醇溶共聚(对亚苯基)(P1)的制备方法,其中含有侧基氮杂冠醚和乙二醇醚基团作为PLED的高效电子注入层(EIL),从而允许使用环境稳定的铝作为PLED。阴极。使用P1作为EIL的多层PLED [ITO / PEDOT:PSS / PF-Green-B / EIL / Al]显示出显着增强的器件性能,尤其是在存在K_2CO_3或Cs_2CO_3的情况下。与没有EIL(0.16 lm)相比,以Cs_2CO_3掺杂的P1作为EIL的器件的最大发光效率和最大亮度分别提高到9.16 lm W〜(-1)和17050 cd m〜(-2)。 W〜(-1),890 cd m〜(-2))。同时,导通电压也从5.7 V显着降低到3.7V。性能的提高归因于电子注入的改善,这已从光伏测量获得的开路电压(V_(oc))的上升中得到证实。这种电子注入层的结合显着增强了以环境稳定的金属作为阴极的PLED的器件性能。

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  • 来源
    《Organic & biomolecular chemistry》 |2014年第9期|1430-1439|共10页
  • 作者单位

    Department of Chemical Engineering, National Cheng Rung University, Tainan, Taiwan;

    Department of Chemical Engineering, National Cheng Rung University, Tainan, Taiwan;

    Department of Chemical Engineering, National Cheng Rung University, Tainan, Taiwan;

    Department of Photonics, National Cheng Kung University, Taiwan;

    Department of Chemical Engineering, National Cheng Rung University, Tainan, Taiwan;

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