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Design, fabrication and characterization of capacitive humidity sensors based on emerging flexible technologies

机译:基于新兴的灵活技术的电容式湿度传感器的设计,制造和表征

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摘要

This work presents a case-based comparison between two emerging fabrication techniques for the development of conductive patterns for flexible electronics: inkjet-printing and nanographene production by laser-scribing. In particular, these two methods are used to fabricate planar interdigitated electrode (IDE) capacitors with Kapton (R) HN polyimide as supporting flexible substrate. Silver-based electrodes are manufactured by inkjet-printing, while a laser-scribing technique is used to obtain laser-reduced graphene oxide (laser-rGO) patterns from deposited graphene oxide (GO) and laser-induced graphene (LIG) layouts from the bare polyimide substrate. The comparison is focused on the application of these IDE capacitors as relative humidity (RH) sensors. The different sensors are benchmarked in terms of sensitivities to RH as well as thermal drift and linearity considering frequency dependencies. The results show that the manufactured capacitors exhibit a very competitive performance as capacitive structures when compared with other similar capacitive sensors from the literature. Furthermore, inkjet-printed and LIG-based capacitors stand out for its thermal stability and linearity.
机译:这项工作提出了一种基于案例的比较,用于开发用于柔性电子产品的导电图案的两种新兴制造技术:喷墨印刷和通过激光划刻生产纳米石墨烯。特别地,这两种方法用于制造以Kapton HN聚酰亚胺作为支撑柔性基板的平面叉指式电极(IDE)电容器。银基电极是通过喷墨印刷制造的,而激光刻划技术则用于从沉积的氧化石墨烯(GO)和激光诱导的石墨烯(LIG)布局中获得激光还原的氧化石墨烯(laser-rGO)图案。裸聚酰亚胺衬底。比较的重点是这些IDE电容器作为相对湿度(RH)传感器的应用。考虑到频率依赖性,对传感器的相对灵敏度以及相对于温度的热漂移和线性度进行了基准测试。结果表明,与文献中的其他类似电容传感器相比,制造的电容器在电容结构方面表现出非常有竞争力的性能。此外,喷墨印刷和基于LIG的电容器因其热稳定性和线性而引人注目。

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