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Wireless Hazard Badges to Detect Nerve-Agent Simulants

机译:无线危险徽章可检测神经代理商模拟物

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摘要

Human exposure to hazardous chemicals can have adverse short-and long-term health effects. In this Communication, we have developed a single-use wearable hazard badge that dosimetrically detects diethylchlorophosphate (DCP), a model organophosphorous cholinesterase inhibitor simulant. Improved chemically actuated resonant devices (CARDs) are fabricated in a single step and unambiguously relate changes in chemiresistance to a wireless readout. To provide selective and readily manufacturable sensor elements for this platform, we developed an ionic-liquid-mediated single walled carbon nanotube based chemidosimetric scheme with DCP limits of detection of 28 ppb. As a practical demonstration, an 8 h workday time weighted average equivalent exposure of 10 ppb DCP effects an irreversible change in smartphone readout.
机译:人体接触有害化学物质会对短期和长期健康产生不利影响。在本交流中,我们开发了一次性使用的可穿戴式危险徽章,该徽章可从剂量上检测有机磷胆碱酯酶抑制剂模拟物二乙基氯磷酸酯(DCP)。改进的化学致动谐振装置(CARD)一步制造,并将化学电阻的变化与无线读数明确相关。为了为该平台提供选择性且易于制造的传感器元件,我们开发了一种基于离子液体介导的单壁碳纳米管的化学计量方案,其DCP检测限为28 ppb。作为实际演示,工作日8小时加权平均等效暴露量为10 ppb DCP会导致智能手机读数发生不可逆转的变化。

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