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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Enhanced lifetime of organic light-emitting diodes using soluble tetraalkyl-substituted copper phthalocyanines as anode buffer layers
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Enhanced lifetime of organic light-emitting diodes using soluble tetraalkyl-substituted copper phthalocyanines as anode buffer layers

机译:使用可溶性四烷基取代的酞菁铜作为阳极缓冲层的有机发光二极管的使用寿命延长

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摘要

This study describes two soluble tetraalkyl-substituted copper phthalo-cyanines (CuPcs) as hole-blocking materials that can be used in the Alq3-based organic light-emitting diodes (OLEDs). The hole-blocking characteristics of these Pc layers significantly impeded hole injection into the Alq(3) emitting layer and thus decreased the production of unstable cationic Alq(3) species, giving an enhanced OLED efficiency and stability compared with that of devices containing the widely used PEDOT:PSS. Moreover, the insolubility of the CuPcs in water together with their extremely high thermal and chemical stabilities led to the effective protection of the ITO anode, resulting in the increased operational stability of the OLEDs in air and the enhancement of the OLED durability.
机译:这项研究描述了两种可溶的四烷基取代的铜酞菁铜(CuPcs)作为空穴阻挡材料,可用于基于Alq3的有机发光二极管(OLED)。这些Pc层的空穴阻挡特性显着阻碍了向Alq(3)发射层中的空穴注入,因此减少了不稳定阳离子Alq(3)种类的产生,与包含这种物质的器件相比,OLED的效率和稳定性得到了提高二手的PEDOT:PSS。此外,CuPcs在水中的不溶性以及极高的热稳定性和化学稳定性导致对ITO阳极的有效保护,从而提高了OLED在空气中的运行稳定性并提高了OLED的耐用性。

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