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Improving electron injection and microcavity effect for constructing highly efficient inverted top-emitting organic light-emitting diode

机译:改善电子注入和微腔效应,以构建高效的反向顶发射有机发光二极管

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摘要

We demonstrated a highly efficient inverted top-emitting organic light-emitting diode (ITOLED) by using Ag/Al bilayer reflective cathode and CsO _x electron-injection layer. With tris(8-hydroquinoline) aluminum as electron-transport and emitting layer, the maximum luminous efficiency and power efficiency of ITOLED with CsO _x electron-injection layer reached 8.3 cd/A and 4.3 lm/W, respectively, which have been enhanced by ~40% and ~80%, respectively, in comparison with the counterpart using LiF as electron-injection layer (5.9 cd/A and 2.3 lm/W). The improved performance is resulted from the enhanced electron-injection ability of CsO _x. The superior electron-injection ability of CsO _x was further verified by 'Electron-only' device using current density versus voltage characteristics and impedance spectroscopy measurements. Our results indicated that CsO _x electron-injection layer combined with Ag/Al bilayer reflective cathode provides a convenient approach for constructing highly efficient ITOLED.
机译:我们通过使用Ag / Al双层反射阴极和CsO _x电子注入层展示了一种高效的倒置顶部发射有机发光二极管(ITOLED)。以三(8-氢喹啉)铝作为电子传输和发射层,具有CsO _x电子注入层的ITOLED的最大发光效率和功率效率分别达到8.3 cd / A和4.3 lm / W,这已经通过与使用LiF作为电子注入层的对应物(5.9 cd / A和2.3 lm / W)相比,分别为〜40%和〜80%。性能的提高归因于CsO _x增强的电子注入能力。 CsO _x优异的电子注入能力通过“仅电子”设备使用电流密度与电压特性和阻抗谱测量结果进行了进一步验证。我们的结果表明,CsO_x电子注入层与Ag / Al双层反射阴极相结合为构建高效的ITOLED提供了一种方便的方法。

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