一种用于可穿戴无线安全系统的基于线程的氨气传感器

T. Seesaard, Sasiprapa Seaon, C. Khunarak, P. Lorwongtragool, T. Kerdcharoen
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引用次数: 10

摘要

采用两种简单的工艺,设计并制备了基于聚苯甲酸部分异丁基/甲基混合酯和多壁碳纳米管(PSE/MWCNT)纳米复合材料的氨气检测传感器;钩针和浸渍(浸)涂层工艺。这种基于织物的气体传感器制造的新维度适用于直接集成到柔性基板中,作为可穿戴气体检测仪器,如气体防护服、气体安全鞋和防毒面具。这种传感器采用了不会刺激佩戴者的柔软材料。这项工作开辟了一个新的视角,克服了众所周知的基于织物的气体传感器的局限性,如生产过程的复杂性、高成本和高功耗。因此,它导致科学与智能艺术之间的创新融合。因此,我们可以制作一种基于Xbee通信技术的廉价无线气体检测仪,具有低功耗。测试了该传感器对氨、吡啶、乙酸、乙醇和丙酮等挥发性化合物的选择性和灵敏度。结果表明,该传感器对NH3具有较高的灵敏度和特异性。监测NH3直到它达到5ppm的浓度是可能的,而且它也有恢复的能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A novel creation of thread-based ammonia gas sensors for wearable wireless security system
Thread-based gas sensor based on poly (styrenecomaleic acid) partial isobutyl/methyl mixed ester and multi-walled carbon nanotube (PSE/MWCNT) nanocomposite for NH3 detection has been designed and created from two simple processes; crochet and immersion (dip) coating processes. This new dimension of fabric-based gas sensors fabrication is suitable for integrating directly into the flexible substrates to be applied as wearable gas detection instruments such as gas-protective clothing, gas safety shoes and gas masks. Soft materials which do not irritate the wearer have been used for this sensor. This work opens a new perspective that overcomes the well-known limitation for creating a fabric-based gas sensor such as the complexity of the production process, high cost and high power consumption in operating. Thus it leads to an innovative integration between science and smart art. As a result, we can make a cheap wireless gas detector based on Xbee communication technology, with low power consumption. This sensor was tested for its selectivity and sensitivity performance toward several volatile compounds, namely ammonia, pyridine, acetic acid, ethanol and acetone. The results revealed that this sensor has higher sensitivity and specificity to NH3 than other gases. It is possible to monitor NH3 until it reaches a concentration of 5 ppm and also has the ability to recover as well.
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