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Miniature Nitro and Peroxide Vapor Sensors Using Nanoporous Thin Films

机译:使用纳米多孔薄膜的微型硝基和过氧化物蒸汽传感器

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With the increased and continuous threat of terrorist attacks in public areas, new sensors are required to safeguard the public from homemade explosive devices. Current commercial sensors for explosive vapors are high-cost, bulky equipment, not amenable to mass production, thus limiting their widespread deployment within society. We are conducting research on polymer-based microsensors that can overcome these limitations. Our devices offer an approach to the realization of low-cost sensors that can readily be placed as a network of electronic sentinels that can be permanently located in the areas of public access. The polymers are chemically tailored to have a high affinity for nitro and peroxide vapors and are grown electrochemically on microelectrodes. Novel nanoporous polymer-based sensors are demonstrated with a detection level of 200 ppb of nitro vapors. In addition, a prototype reversible sensor for peroxide vapors is demonstrated to low ppm concentrations.
机译:随着在公共场所发生恐怖袭击的威胁不断增加,需要使用新的传感器来保护公众免受自制爆炸装置的伤害。当前用于爆炸性蒸气的商业传感器是高成本,笨重的设备,不适合大规模生产,因此限制了它们在社会中的广泛部署。我们正在研究可以克服这些限制的基于聚合物的微传感器。我们的设备提供了一种实现低成本传感器的方法,该方法可以轻松地作为电子哨兵网络放置,这些哨兵可以永久地位于公共访问区域。对聚合物进行化学修饰,使其对硝基和过氧化物蒸气具有高亲和力,并在微电极上进行电化学生长。新型基于纳米孔聚合物的传感器被证明具有200 ppb的硝基蒸气检测水平。此外,一种用于过氧化物蒸汽的可逆原型传感器被证明具有低ppm浓度。

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