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Planar solid-phase microextraction-ion mobility spectrometry: a diethoxydiphenylsilane-based coating for the detection of explosives and explosive taggants

机译:平面固相微萃取-离子迁移谱法:用于检测炸药和炸药标签的二乙氧基二苯基硅烷基涂层

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摘要

A novel diethoxydiphenylsilane-based coating for planar solid-phase microextraction was developed using sol–gel technology and used for ion mobility spectrometric detection of the explosives 2,4,6-trinitrotoluene, 2,4-dinitrotoluene, and of the explosive taggant ethylene glycol dinitrate. The trap was characterized in terms of coating thickness, morphology, inter-batch repeatability, and extraction efficiency. An average thickness of 143 ± 13 μm with a uniform distribution of the coating was obtained. Good performances of the developed procedure in terms of both intra-batch and inter-batch repeatability with relative standard deviations <7% were obtained. Experimental design and desirability function were used to find the optimal conditions for simultaneous headspace extraction of the investigated compounds: the optimal values were found in correspondence of a time and a temperature of extraction of 45 min and 40 °C, respectively. Detection and quantitation limits in low nanogram levels were achieved proving the superior extraction capability of the developed coating, obtaining ion mobility spectrometric responses at least two times higher than those achieved using commercial teflon and paper traps.
机译:使用溶胶-凝胶技术开发了一种新型的用于平面固相微萃取的基于二乙氧基二苯基硅烷的涂料,并将其用于炸药2,4,6-三硝基甲苯,2,4-二硝基甲苯和爆炸性标签乙二醇的离子迁移谱检测硝酸盐根据涂层厚度,形态,批间重复性和萃取效率对捕集阱进行了表征。获得具有涂层均匀分布的平均厚度为143±13μm。就批内和批间可重复性而言,相对标准偏差<7%,已开发程序的性能良好。实验设计和合意函数用于找到同时顶空萃取所研究化合物的最佳条件:最佳萃取值分别对应于萃取时间和萃取温度分别为45分钟和40°C的条件。达到低纳克水平的检测和定量限,证明了已开发涂层具有出色的提取能力,获得的离子迁移谱响应至少是使用商用聚四氟乙烯和纸质捕集阱获得的两倍。

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