Santos-Betancourt Alejandro, Santos-Ceballos José Carlos, Alouani Mohamed Ayoub, Malik Shuja Bashir, Romero Alfonso, Ramírez José Luis, Vilanova Xavier, Llobet Eduard
Universitat Rovira i Virgili, Microsystems Nanotechnologies for Chemical Analysis (MINOS), Departament d'Enginyeria Electronica, Països Catalans, 26, 43007 Tarragona, Catalunya, Spain.
Sensors (Basel). 2024 Feb 22;24(5):1431. doi: 10.3390/s24051431.
This paper presents the integration of a sensing layer over interdigitated electrodes and an electronic circuit on the same flexible printed circuit board. This integration provides an effective technique to use this design as a wearable gas measuring system in a target application, exhibiting high performance, low power consumption, and being lightweight for on-site monitoring. The wearable system proves the concept of using an NFC tag combined with a chemoresistive gas sensor as a cumulative gas sensor, having the possibility of holding the data for a working day, and completely capturing the exposure of a person to NO concentrations. Three different types of sensors were tested, depositing the sensing layers on gold electrodes over Kapton substrate: bare graphene, graphene decorated with 5 wt.% zinc oxide nanoflowers, or nanopillars. The deposited layers were characterized using FESEM, EDX, XRD, and Raman spectroscopy to determine their crystalline structure, morphological and chemical compositions. The gas sensing performance of the sensors was analyzed against NO (dry and humid conditions) and other interfering species (dry conditions) to check their sensitivity and selectivity. The resultant-built wearable NFC tag system accumulates the data in a non-volatile memory every minute and has an average low power consumption of 24.9 µW in dynamic operation. Also, it can be easily attached to a work vest.
本文介绍了在同一柔性印刷电路板上集成叉指电极上的传感层和电子电路。这种集成提供了一种有效的技术,可将该设计用作目标应用中的可穿戴气体测量系统,具有高性能、低功耗且重量轻,便于现场监测。该可穿戴系统证明了使用与化学电阻式气体传感器相结合的NFC标签作为累积气体传感器的概念,有可能保存一个工作日的数据,并完全捕捉一个人对NO浓度的暴露情况。测试了三种不同类型的传感器,将传感层沉积在Kapton基板上的金电极上:裸石墨烯、装饰有5 wt.%氧化锌纳米花的石墨烯或纳米柱。使用场发射扫描电子显微镜(FESEM)、能量散射X射线光谱(EDX)、X射线衍射(XRD)和拉曼光谱对沉积层进行表征,以确定其晶体结构、形态和化学成分。针对NO(干燥和潮湿条件)以及其他干扰物质(干燥条件)分析了传感器的气敏性能,以检查其灵敏度和选择性。最终构建的可穿戴NFC标签系统每分钟将数据累积到非易失性存储器中,动态运行时的平均低功耗为24.9微瓦。此外,它可以很容易地附着在工作背心上。