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首页> 外文期刊>Synthetic Metals >Performance reproducibility of organic light-emitting devices under exposure to atmospheric water vapor during fabrication: Sensitivity and chaotic-like behaviour of the quantum yield
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Performance reproducibility of organic light-emitting devices under exposure to atmospheric water vapor during fabrication: Sensitivity and chaotic-like behaviour of the quantum yield

机译:有机发光器件在制造过程中暴露于大气水蒸气下的性能再现性:量子产率的灵敏度和类混沌行为

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摘要

Organic electronic devices are generally sensitive to atmospheric conditions, especially to water vapor when combined with oxygen. Organic light-emitting devices are such an example. Usually, atmospheric water vapor has detrimental consequences on the devices performance. However, as shown by our experimental results, in some (still uncontrolled) circumstances, oxidation processes accelerated by water vapor can be beneficial to performance. Thus, high humidity level is not only a detrimental issue to OLEDs. in addition, it appears that the occurrence of antagonist mechanisms and the devices sensitivity to initial structural conditions of organic materials and electrodes leads to an unpredictable, chaotic-like, behaviour of organic light-emitting quantum yield when they are exposed to atmospheric water vapor.
机译:有机电子设备通常对大气条件敏感,特别是与氧气结合时对水蒸气敏感。有机发光器件就是这样的例子。通常,大气中的水蒸气会对设备性能产生不利影响。但是,如我们的实验结果所示,在某些(仍然不受控制)的情况下,水蒸气加速的氧化过程可能会对性能有所帮助。因此,高湿度水平不仅是OLED的有害问题。另外,似乎当有机材料和电极暴露于大气水蒸气中时,拮抗机制的出现以及装置对有机材料和电极的初始结构条件的敏感性导致了有机发光量子产率的不可预测的,类似于混沌的行为。

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