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Low-temperature remote plasma enhanced atomic layer deposition of ZrO2/zircone nanolaminate film for efficient encapsulation of flexible organic light-emitting diodes

机译:ZrO2 / zircone纳米层压膜的低温远程等离子体增强原子层沉积可有效封装柔性有机发光二极管

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摘要

Encapsulation is essential to protect the air-sensitive components of organic light-emitting diodes (OLEDs) such as active layers and cathode electrodes. In this study, hybrid zirconium inorganic/organic nanolaminates were fabricated using remote plasma enhanced atomic layer deposition (PEALD) and molecular layer deposition at a low temperature. The nanolaminate serves as a thin-film encapsulation layer for OLEDs. The reaction mechanism of PEALD process was investigated using an in-situ quartz crystal microbalance (QCM) and in-situ quadrupole mass spectrometer (QMS). The bonds present in the films were determined by Fourier transform infrared spectroscopy. The primary reaction byproducts in PEALD, such as CO, CO2, NO, H2O, as well as the related fragments during the O2 plasma process were characterized using the QMS, indicating a combustion-like reaction process. The self-limiting nature and growth mechanisms of the ZrO2 during the complex surface chemical reaction of the ligand and O2 plasma were monitored using the QCM. The remote PEALD ZrO2/zircone nanolaminate structure prolonged the transmission path of water vapor and smooth surface morphology. Consequently, the water barrier properties were significantly improved (reaching 3.078 × 10−5 g/m2/day). This study also shows that flexible OLEDs can be successfully encapsulated to achieve a significantly longer lifetime.
机译:封装对于保护有机发光二极管(OLED)的空气敏感组件(例如有源层和阴极电极)至关重要。在这项研究中,使用远程等离子体增强的原子层沉积(PEALD)和低温下的分子层沉积方法制备了杂化锆无机/有机纳米层压材料。纳米层压板用作OLED的薄膜封装层。利用原位石英晶体微量天平(QCM)和原位四极质谱仪(QMS)研究了PEALD过程的反应机理。薄膜中存在的键通过傅立叶变换红外光谱法确定。使用QMS对PEALD中的主要反应副产物(如CO,CO2,NO,H2O)以及O2等离子体过程中的相关碎片进行了表征,表明了类似燃烧的反应过程。使用QCM监测配体与O2等离子体的复杂表面化学反应过程中ZrO2的自限性和生长机理。远距离的PEALD ZrO2 / zircone纳米层状结构延长了水蒸气的传输路径,并延长了表面形貌。结果,水阻隔性得到显着改善(达到3.078×10 -5 g / m 2 /天)。这项研究还表明,柔性OLED可以成功封装,以实现更长的使用寿命。

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