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Identification and Quantification of Explosives in Nanolitre Solution Volumes by Raman Spectroscopy in Suspended Core Optical Fibers

机译:悬浮纤芯光纤中拉曼光谱的纳升溶液体积中炸药的鉴定和定量

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摘要

A novel approach for identifying explosive species is reported, using Raman spectroscopy in suspended core optical fibers. Numerical simulations are presented that predict the strength of the observed signal as a function of fiber geometry, with the calculated trends verified experimentally and used to optimize the sensors. This technique is used to identify hydrogen peroxide in water solutions at volumes less than 60 nL and to quantify microgram amounts of material using the solvent's Raman signature as an internal calibration standard. The same system, without further modifications, is also used to detect 1,4-dinitrobenzene, a model molecule for nitrobenzene-based explosives such as 2,4,6-trinitrotoluene (TNT).
机译:报道了一种在悬浮芯光纤中使用拉曼光谱法鉴定爆炸物的新颖方法。提出了数值模拟,该数值模拟根据纤维的几何形状预测了观察到的信号的强度,并通过实验验证了计算出的趋势并用于优化传感器。该技术用于鉴定水溶液中小于60 nL的过氧化氢,并使用溶剂的拉曼标记作为内部校准标准品来量化微克物质。未经进一步修改的相同系统也可用于检测1,4-二硝基苯,这是基于硝基苯的炸药(例如2,4,6-三硝基甲苯(TNT))的模型分子。

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