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Laser-induced graphene gas sensors for environmental monitoring

石墨烯 激光器 材料科学 环境监测 纳米技术 环境科学 环境化学 遥感 化学 光学 物理 环境工程 地质学
作者
Cadré Francis,Attila Rektor,Tony Valayil-Varghese,Nicholas McKibben,Isaac Estrada,Jennifer S. Forbey,David Estrada
出处
期刊:Frontiers in Chemistry [Frontiers Media SA]
卷期号:12: 1448205-1448205 被引量:16
标识
DOI:10.3389/fchem.2024.1448205
摘要

Artemesia tridentata is a foundational plant taxon in western North America and an important medicinal plant threatened by climate change. Low-cost fabrication of sensors is critical for developing large-area sensor networks for understanding and monitoring a range of environmental conditions. However, the availability of materials and manufacturing processes is still in the early stages, limiting the capacity to develop cost-effective sensors at a large scale. In this study, we demonstrate the fabrication of low-cost flexible sensors using laser-induced graphene (LIG); a graphitic material synthesized using a 450-nm wavelength bench top laser patterned onto polyimide substrates. We demonstrate the effect of the intensity and focus of the incident beam on the morphology and electrical properties of the synthesized material. Raman analyses of the synthesized LIG show a defect-rich graphene with a crystallite size in the tens of nanometers. This shows that the high level of disorder within the LIG structure, along with the porous nature of the material provide a good surface for gas adsorption. The initial characterization of the material has shown an analyte response represented by a change in resistance of up to 5% in the presence of volatile organic compounds (VOCs) that are emitted and detected by Artemisia species. Bend testing up to 100 cycles provides evidence that these sensors will remain resilient when deployed across the landscapes to assess VOC signaling in plant communities. The versatile low-cost laser writing technique highlights the promise of low-cost and scalable fabrication of LIG sensors for gas sensor monitoring.

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