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Free-Surface Microfluidics/Surface-Enhanced Raman Spectroscopy for Real-Time Trace Vapor Detection of Explosives

机译:自由表面微流体/表面增强拉曼光谱用于炸药的实时痕量蒸汽检测

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摘要

The dominant physical transport processes are analyzed in a free-surface microfluidic and surface-enhanced Raman spectroscopy (SERS) chemical detection system. The analysis describes the characteristic fluid dynamics and mass transport effects occurring in a microfluidic detection system whose analyte absorption and concentration capability is designed to operate on principles inspired by canine olfaction. The detection system provides continuous, real-time monitoring of particular vapor-phase analytes at concentrations of 1 ppb. The system is designed with a large free-surface-to-volume ratio microfluidic channel which allows for polar or hydrophilic airborne analytes to readily be partitioned from the surrounding gas phase into the aqueous phase for detection. The microfluidic stream can concentrate certain molecules by up to 6 orders of magnitude, and SERS can enhance the Raman signal by 9-10 orders of magnitude for molecules residing in the so-called SERS "hot spots", providing extremely high detection sensitivity. The resulting vibrational spectra are sufficiently specific to identify the detected analyte unambiguously. Detection performance was demonstrated using a nominal 1 ppb, 2,4-dinitrotoluene (2,4-DNT) vapor stream entrained within N_2 gas. Applications to homeland security arise from the system's high sensitivity and its ability to provide highly reproducible, continuous chemical detection monitoring with minimal sampling requirements.
机译:主要的物理传输过程在自由表面微流控和表面增强拉曼光谱(SERS)化学检测系统中进行了分析。该分析描述了在微流体检测系统中发生的特征性流体动力学和传质效应,该系统的分析物吸收和浓缩能力旨在根据犬嗅觉原理进行操作。该检测系统可对浓度为1 ppb的特定气相分析物进行连续,实时的监控。该系统设计有较大的自由表面体积比微流体通道,该通道可使极性或亲水性空气传播的分析物容易地从周围的气相分配到水相中进行检测。微流体流可以将某些分子浓缩达6个数量级,SERS可以将驻留在所谓的SERS“热点”中的分子的拉曼信号增强9-10个数量级,从而提供极高的检测灵敏度。所产生的振动光谱具有足够的特异性,可以明确识别检测到的分析物。使用标称的1 ppb,2,4-二硝基甲苯(2,4-DNT)蒸气流夹带在N_2气体中证明了检测性能。国土安全的应用源于该系统的高灵敏度及其以最小的采样要求提供高度可重复的连续化学检测监控的能力。

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