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Sensitivity Comparison of Vapor Trace Detection of Explosives Based on Chemo-Mechanical Sensing with Optical Detection and Capacitive Sensing with Electronic Detection

机译:基于化学机械感应与光学检测和电容感应与电子检测的炸药蒸气痕量检测灵敏度比较

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The article offers a comparison of the sensitivities for vapour trace detection of Trinitrotoluene (TNT) explosives of two different sensor systems: a chemo-mechanical sensor based on chemically modified Atomic Force Microscope (AFM) cantilevers based on Micro Electro Mechanical System (MEMS) technology with optical detection (CMO), and a miniature system based on capacitive detection of chemically functionalized planar capacitors with interdigitated electrodes with a comb-like structure with electronic detection (CE). In both cases (either CMO or CE), the sensor surfaces are chemically functionalized with a layer of APhS (trimethoxyphenylsilane) molecules, which give the strongest sensor response for TNT. The construction and calibration of a vapour generator is also presented. The measurements of the sensor response to TNT are performed under equal conditions for both systems, and the results show that CE system with ultrasensitive electronics is far superior to optical detection using MEMS. Using CMO system, we can detect 300 molecules of TNT in 10+12 molecules of N2 carrier gas, whereas the CE system can detect three molecules of TNT in 10+12 molecules of carrier N2.
机译:本文比较了两种不同传感器系统的三硝基甲苯(TNT)炸药的蒸气痕量检测灵敏度:基于微电子机械系统(MEMS)技术的基于化学修饰的原子力显微镜(AFM)悬臂的化学机械传感器带有光学检测(CMO)的微型系统,以及基于电容式检测功能的微型系统,该电容器具有带梳状结构且具有电子检测(CE)的叉指式电极的化学功能化平面电容器。在这两种情况下(无论是CMO还是CE),传感器表面都经过APhS(三甲氧基苯基硅烷)分子层的化学功能处理,从而为TNT提供了最强的传感器响应。还介绍了蒸汽发生器的构造和校准。两种系统在相同条件下进行的传感器对TNT响应的测量结果表明,具有超灵敏电子器件的CE系统远远优于使用MEMS的光学检测。使用CMO系统,我们可以在10 +12 分子N 2 载气中检测到300个TNT分子,而CE系统可以在10 2 的> +12 个分子。

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