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Sustainable Fully Printed UV Sensors on Cork Using Zinc Oxide/Ethylcellulose Inks

机译:使用氧化锌/乙基纤维素油墨的软木塞上可持续的全印UV传感器

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摘要

Low-cost and large-scale production techniques for flexible electronics have evolved greatly in recent years, having great impact in applications such as wearable technology and the internet of things. In this work, we demonstrate fully screen-printed UV photodetectors, successfully fabricated at a low temperature on a cork substrate, using as the active layer a mixture of zinc oxide nanoparticles and ethylcellulose. The photoresponse under irradiation with a UV lamp with peak emission at 302 nm exhibited a quasi-quadratic behavior directly proportional to the applied voltage, with a photocurrent of about 5.5 and 20 μA when applying 1.5 V and 5 V, respectively. The dark current stayed below 150 nA, while the rise and falling times were, respectively, below 5 and 2 s for both applied voltages. The performance was stable over continuous operation and showed a degradation of only 9% after 100 bending cycles in a 45 mm radius test cylinder. These are promising results regarding the use of this type of sensor in wearable applications such as cork hats, bracelets, or bags.
机译:近年来,柔性电子的低成本,大规模生产技术得到了长足发展,对可穿戴技术和物联网等应用产生了巨大影响。在这项工作中,我们演示了完全丝网印刷的紫外线光电探测器,该探测器在低温下成功地在软木衬底上制造,使用氧化锌纳米颗粒和乙基纤维素的混合物作为活性层。在峰值波长为302 nm的UV灯照射下,光响应表现出与所施加电压成正比的准二次行为,分别施加1.5 V和5 V时的光电流分别为5.5和20μA。暗电流保持在150 nA以下,而两种施加电压的上升和下降时间分别在5 s和2 s以下。在连续运行中,性能稳定,在半径为45 mm的测试缸中进行100次弯曲后,性能仅下降9%。这些类型的传感器在可穿戴应用(例如软木帽,手镯或包)中的使用,这些结果令人鼓舞。

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