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Flexible polymeric light emitting diodes

机译:柔性聚合物发光二极管

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摘要

Flexibility is one of the most frequently mentioned advantages if organic light emitting diodes are compared to other display technologies. In this contribution we show how the different functional layers respond to applied mechanical stress. To characterize the intrinsic flexibility of the stacked layers in an organic light emitting diode separately, samples with anode and cathode layers on flexible plastic substrates are investigated separately first. We observe that the ITO can withstand more than 30 000 bending cycles, concave as well as convex, down to a radius of curvature of 8 mm without apparent damage. Furthermore, the operational characteristics of completed flexible organic light-emitting devices built on indium-tin oxide coated poly(ether sulfone) under single bending cycles are investigated. Performance data taken at 15 mm radius of curvature show no influence compared to the non-planar conditions.
机译:如果将有机发光二极管与其他显示技术进行比较,则灵活性是最常提及的优势之一。在这一贡献中,我们展示了不同的功能层如何响应所施加的机械应力。为了分别表征有机发光二极管中堆叠层的固有柔韧性,首先分别研究在柔性塑料基板上具有阳极和阴极层的样品。我们观察到,ITO可以承受超过3万个弯曲周期(凹形和凸形),直至曲率半径为8 mm,而没有明显损坏。此外,研究了在单个弯曲循环下基于氧化铟锡涂层的聚醚砜制成的完整柔性有机发光器件的工作特性。与非平面条件相比,在15 mm曲率半径处获得的性能数据没有影响。

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