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Highly flexible organic light-emitting diodes based on ZnS/Ag/WO_3 multilayer transparent electrodes

机译:基于ZnS / Ag / WO_3多层透明电极的高柔性有机发光二极管

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We report our study on highly flexible organic light-emitting diodes based on ZnS/Ag/W0_3 (ZAW) multilayer transparent electrodes in which high conductivity and ductility of Ag layers allow for efficient sheet conduction and flexibility while ZnS and W0_3 layers provide a means for enhancement in optical transmission and/or carrier-injection. Devices with ZAW anodes fabricated on planarized plastic substrates not only exhibit a performance and operational stability comparable to or better than those of ITO-based devices but also show a mechanical flexibility that is far superior to that of ITO-based devices. Experimental results show that a consistent performance can be obtained in ZAW-based devices upon repeated bending down to a radius of curvature of 5 mm, below which the flexibility of the devices is limited ultimately by the delamination occurring at cathode/organic interfaces rather than by the ZAW electrodes themselves.
机译:我们报告了基于ZnS / Ag / W0_3(ZAW)多层透明电极的高柔韧性有机发光二极管的研究,其中Ag层的高导电性和延展性可实现有效的片导电性和柔韧性,而ZnS和W0_3层则提供了一种增强光传输和/或载流子注入。在平面化塑料基板上制造具有ZAW阳极的器件,不仅具有与基于ITO的器件相当或更好的性能和操作稳定性,而且还具有远远优于基于ITO的器件的机械柔韧性。实验结果表明,基于ZAW的器件在反复弯曲至5 mm的曲率半径时可以获得稳定的性能,在此以下,该器件的柔韧性最终受到阴极/有机界面处发生分层的限制,而不是受到ZAW电极本身。

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