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An Ionic Molecular Glass as Electron Injection Layer for Efficient Polymer Light-Emitting Diode

机译:一种离子分子玻璃作为高效聚合物发光二极管的电子注入层

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摘要

An ionic molecular glass based on a dendronized monoammonium salt has been facilely synthesized and utilized as an interfacial electron-injection layer in a light-emitting diode (LED). The characterization of a yellow-green LED that involves an Al cathode and a thin layer of the new compound spin cast from a methanol solution has shown device performances comparable to those obtained with a Ba/Al cathode. Photovoltaic measurements under white light irradiation reveal that a thin layer of the new compound can significantly increase the built-in potential and thus facilitate electron injection from an Al cathode. Furthermore, it is interesting to observe that the new ionic salt could undergo reorganization on the emissive conjugated polymer layer, which leads to the formation of nearly uniform nanoaggregates.
机译:已经容易地合成了基于树枝状单铵盐的离子分子玻璃,并将其用作发光二极管(LED)中的界面电子注入层。包括铝阴极和由甲醇溶液旋转浇铸的新化合物薄层的黄绿色LED的特性显示出与用钡/铝阴极获得的器件性能相当的器件性能。在白光照射下的光伏测量结果表明,新化合物的薄层可以显着增加内置电势,因此有利于从Al阴极注入电子。此外,有趣的是,观察到新的离子盐可能会在发射的共轭聚合物层上发生重组,从而导致形成几乎均匀的纳米聚集体。

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