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A Micro-Preconcentrator Combined Olfactory Sensing System with a Micromechanical Cantilever Sensor for Detecting 24-Dinitrotoluene Gas Vapor

机译:微型预浓缩器与微机械悬臂式传感器组合的嗅觉检测系统用于检测24-二硝基甲苯气体蒸气

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摘要

Preventing unexpected explosive attacks and tracing explosion-related molecules require the development of highly sensitive gas-vapor detection systems. For that purpose, a micromechanical cantilever-based olfactory sensing system including a sample preconcentrator was developed to detect 2,4-dinitrotoluene (2,4-DNT), which is a well-known by-product of the explosive molecule trinitrotoluene (TNT) and exists in concentrations on the order of parts per billion in the atmosphere at room temperature. A peptide receptor (His-Pro-Asn-Phe-Ser-Lys-Tyr-Ile-Leu-His-Gln-Arg) that has high binding affinity for 2,4-DNT was immobilized on the surface of the cantilever sensors to detect 2,4-DNT vapor for highly selective detection. A micro-preconcentrator (µPC) was developed using Tenax-TA adsorbent to produce higher concentrations of 2,4-DNT molecules. The preconcentration was achieved via adsorption and thermal desorption phenomena occurring between target molecules and the adsorbent. The µPC directly integrated with a cantilever sensor and enhanced the sensitivity of the cantilever sensor as a pretreatment tool for the target vapor. The response was rapidly saturated within 5 min and sustained for more than 10 min when the concentrated vapor was introduced. By calculating preconcentration factor values, we verified that the cantilever sensor provides up to an eightfold improvement in sensing performance.
机译:防止意外爆炸袭击并追踪与爆炸有关的分子,需要开发高度灵敏的气体-蒸气检测系统。为此,开发了一种基于微机械悬臂的嗅觉传感系统,其中包括样品预浓缩器,以检测2,4-二硝基甲苯(2,4-DNT),这是爆炸性分子三硝基甲苯(TNT)的众所周知的副产物。在室温下,其浓度约为十亿分之几。将对2,4-DNT具有高结合亲和力的肽受体(His-Pro-Asn-Phe-Ser-Lys-Tyr-Ile-Leu-His-Gln-Arg)固定在悬臂传感器的表面进行检测2,4-DNT蒸气用于高度选择性的检测。使用Tenax-TA吸附剂开发了微型预浓缩器(µPC),可产生更高浓度的2,4-DNT分子。通过在目标分子和吸附剂之间发生的吸附和热解吸现象来实现预浓缩。 µPC直接与悬臂传感器集成在一起,并提高了悬臂传感器作为目标蒸汽预处理工具的灵敏度。当引入浓蒸汽时,反应在5分钟内迅速饱和并持续10分钟以上。通过计算预浓缩因子值,我们验证了悬臂传感器在传感性能方面可提高八倍。

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