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Power-law-type electron injection through lithium fluoride nanolayers in phosphorescence organic light-emitting devices

机译:磷光有机发光器件中通过氟化锂纳米层的幂律型电子注入

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摘要

This work reports a power-law-type electron injection model that accounts for the thickness effect of lithium fluoride (LiF) nanolayers used as an electron injection layer in phosphorescence organic light-emitting devices (PHOLEDs). A series of PHOLEDs were fabricated with various LiF thicknesses in order to investigate the influence of LiF nanolayer thickness on the device current. The PHOLEDs exhibited pronouncedly changed electron currents by only 0.2 nm thickness variation. The device current as a function of LiF thickness excellently followed the power-law model proposed in this study, from which a physical constant indicating the intrinsic nature of electron injection materials has been extracted.
机译:这项工作报告了幂律型电子注入模型,该模型说明了在磷光有机发光器件(PHOLED)中用作电子注入层的氟化锂(LiF)纳米层的厚度效应。为了研究LiF纳米层厚度对器件电流的影响,制造了一系列具有各种LiF厚度的PHOLED。 PHOLED仅通过0.2 nm的厚度变化即可显示出明显变化的电子电流。器件电流作为LiF厚度的函数很好地遵循了这项研究中提出的幂律模型,从中提取了指示电子注入材料固有性质的物理常数。

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