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首页> 外文期刊>IEEE Transactions on Electron Devices >Novel light-emitting devices based on pyridine-containing conjugated polymers
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Novel light-emitting devices based on pyridine-containing conjugated polymers

机译:基于含吡啶的共轭聚合物的新型发光器件

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摘要

We present novel light-emitting devices based on several pyridine-containing conjugated polymers and copolymers in various device configurations. The high electron affinity of pyridine-based polymers improves stability and electron transport properties of the polymers and enables the use of relatively stable metals such as Al as electron injecting contacts. Bilayer devices utilizing poly(9-vinyl carbazole) (PVK) as a hole-transporting/electron-blocking polymer show dramatically improved efficiency and brightness as compared to single layer devices. This is attributed to charge confinement and exciplex emission at the PVK/emitting polymer interface. The incorporation of conducting polyaniline network electrode into PVK reduces the device turn-on voltage significantly while maintaining the high efficiency. Two novel device configurations that enable the use of high work function metals as electrodes are pointed out.
机译:我们提出了基于几种含吡啶的共轭聚合物和共聚物在各种设备配置中的新型发光器件。吡啶基聚合物的高电子亲和力改善了聚合物的稳定性和电子传输性能,并允许使用相对稳定的金属(例如Al)作为电子注入触点。与单层器件相比,利用聚(9-乙烯基咔唑)(PVK)作为空穴传输/电子阻挡聚合物的双层器件显示出显着改善的效率和亮度。这归因于在PVK /发射聚合物界面处的电荷限制和激基复合物发射。将导电聚苯胺网络电极并入PVK中可显着降低器件的开启电压,同时保持高效率。指出了两种新颖的装置构造,其使得能够使用高功函数金属作为电极。

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