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首页> 外文期刊>Applied optics >Fabrication of a laser patterned flexible organic light-emitting diode on an optimized multilayered barrier
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Fabrication of a laser patterned flexible organic light-emitting diode on an optimized multilayered barrier

机译:在优化的多层阻挡层上制造激光图案化的柔性有机发光二极管

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摘要

The fast-growing market of organic electronics stimulates the development of versatile technologies for structuring thin-film materials. Ultraviolet lasers have proven their full potential for patterning organic thin films, but only a few studies report on interaction with thin-film barrier layers. In this paper, we present an approach in which the laser patterning process is optimized together with the barrier film, leading to a highly selective patterning technology without introducing barrier damage. This optimization is crucial, as the barrier damage would lead to moisture and oxygen ingress, with accelerated device degradation as a result. Following process optimization, a laser processed flexible organic LED has been fabricated and thin-film encapsulated and its operation is shown for the first time in atmospheric conditions.
机译:快速发展的有机电子市场刺激了用于构造薄膜材料的多功能技术的发展。紫外线激光器已经证明了其对有机薄膜进行构图的全部潜力,但是只有少数研究报道了与薄膜阻挡层的相互作用。在本文中,我们提出了一种方法,其中将激光构图工艺与阻挡膜一起进行了优化,从而导致了一种高度选择性的构图技术,而又不会引起阻挡层损伤。这种优化至关重要,因为隔离层的破坏会导致水分和氧气进入,从而加速器件性能下降。经过工艺优化后,已经制造出了经过激光处理的柔性有机LED并进行了薄膜封装,并且首次在大气条件下显示了其操作。

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