利用微型恒电位仪实现化学战模拟物的远程检测

Micro Pub Date : 2024-01-22 DOI:10.3390/micro4010004
Amer Dawoud, Rashid Mia, J. Motchaalangaram, Wujian Miao, Karl J Wallace
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引用次数: 0

摘要

为远程检测化学战剂(CWA)模拟物开发了一种微型电化学传感器。为促进基于无人机的遥感,本研究的重点是推进小型化和紧凑型电化学传感器的发展,以监测两种化学战剂模拟物--氟磷酸二异丙酯(DFP)和硫代磷酸 O,S-二乙基甲基酯(O,S-DEMPT)。对差分脉冲伏安法(DPV)信号进行处理,并根据 DFP 和 O,S-DEMPT存在和不存在时的氧化还原特性提取出 DPV 特征。在加入 0.10 等量的 DFP 或 O,S-DEMPT 后,记录到电位 (E) 发生了约 0.13 V 的移动。经计算,DFP 和 O,S-DEMPT 的检测限(LOD)分别为 0.25 µM(0.046 ppm)和 0.10 µM(0.017 ppm)。使用便携式 Palmsens Emstat HR 型恒电位仪对这些结果进行了验证,结果证实了使用实验室台式恒电位仪获得的结果。此外,还实现了布尔逻辑("AND "操作),以用于未来的无人机技术部署。这一进步使我们能够制造出一种网络设备,能够在没有持续监督的情况下自主执行任务。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Toward Remote Detection of Chemical Warfare Simulants Using a Miniature Potentiostat
A miniaturized electrochemical sensor was developed for the remote detection of chemical warfare agent (CWA) simulants. To facilitate drone-based remote sensing, this present study focuses on advancing the miniaturized and compact electrochemical sensor for monitoring two CWA simulants, diisopropyl fluorophosphate (DFP) and O,S-diethylmethylphosphonothioate (O,S-DEMPT). The differential pulse voltammetry (DPV) signal was processed, and the DPV signature features were extracted on the basis of the redox properties associated with the absence and the presence of DFP and O,S-DEMPT. Upon the addition of 0.10 equivalence of DFP or O,S-DEMPT, a shift in potential (E) of ~0.13 V was recorded. The limit of detection (LOD) was calculated to be 0.25 µM (0.046 ppm) and 0.10 µM (0.017 ppm) for DFP and O,S-DEMPT, respectively. These results were validated using a portable Palmsens Emstat HR potentiostat, which corroborated the results obtained using a lab benchtop potentiostat. Additionally, Boolean logic (“AND” operation) was implemented for future drone technology deployment. This advancement enables the fabrication of a networked device capable of autonomously executing tasks without constant oversight.
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