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Portable lock-in amplifier for microcantilever based sensor array. Application to explosives detection using Co-BEA type zeolites as sensing materials

机译:便携式锁定放大器,用于基于微悬臂梁的传感器阵列。以Co-BEA型沸石为传感材料在爆炸物检测中的应用

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Recent advances in microcantilever-based sensors have led to a significant increase in sensitivity, making them a competitive solution in highly demanding applications as explosives detection. However, these sensors face severe challenges related to: reliability, sensitivity, reproducibility and throughput; that have yet to be solved for commercial applications. This paper describes our efforts in this direction, particularly on the reproducible detection of nitroaromatic type explosives by means of parallelization combined with: i) nanoporous solids as sensing materials; and, ii) a portable low-power electronic readout interface capable of both excitation and measurement of the multisensing platform. The response of the sensor array, comprising 4 microcantilevers, due to presence of 2-nitrotoluene, a common explosive taggant, has been properly monitored. The obtained results with 4 identical Co-BEA coated Si microcantilevers underline the importance of a proper sensing material degassing on the sensor performance.
机译:基于微悬臂梁的传感器的最新进展已大大提高了灵敏度,使其成为爆炸物检测等高要求应用中的竞争解决方案。但是,这些传感器面临着严峻的挑战,这些挑战涉及:可靠性,灵敏度,可重复性和通量;商业应用尚未解决的问题。本文描述了我们在这一方向上的努力,特别是通过平行化结合以下方法可重复检测硝基芳族类炸药:i)纳米多孔固体作为传感材料; ii)便携式低功耗电子读出接口,能够激励和测量多感测平台。由于2-硝基甲苯(一种常见的爆炸性标签剂)的存在,包含4个微悬臂梁的传感器阵列的响应已得到了适当的监控。用4个相同的Co-BEA涂层的Si微悬臂梁获得的结果强调了适当的传感材料脱气对传感器性能的重要性。

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