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Coupling Paper-Based Microfluidics and Lab on a Chip Technologies for Confirmatory Analysis of Trinitro Aromatic Explosives

机译:耦合纸基微流控技术和芯片技术实验室,用于三硝基芳族炸药的确证分析

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A new microfluidic paper-based analytical device (μPAD) in conjunction with confirmation by a lab on chip analysis was developed for detection of three trinitro aromatic explosives. Potassium hydroxide was deposited on the μPADs (0.5 μL, 1.5 M), creating a color change reaction when explosives are present, with detection limits of approximately 7.5 ± 1.0 ng for TNB, 12.5 ± 2.0 ng for TNT and 15.0 ± 2.0 ng for tetryl. For confirmatory analysis, positive μPADs were sampled using a 5 mm hole-punch, followed by extraction of explosives from the punched chad in 30 s using 20 μL borate/SDS buffer. The extractions had efficiencies of 96.5 ± 1.7%. The extracted explosives were then analyzed with the Agilent 2100 Bioanalyzer lab on a chip device with minimum detectable amounts of 3.8 ± 0.1 ng for TNB, 7.0 ± 0.9 ng for TNT, and 4.7 ± 0.2 ng for tetryl. A simulated in-field scenario demonstrated the feasibility of coupling the μPAD technique with the lab on a chip device to detect and identify 1 μg of explosives distributed on a surface of 100 cm~2.
机译:开发了一种新的基于微流纸的分析设​​备(μPAD),并经芯片实验室分析确认,可检测三种三硝基芳族炸药。氢氧化钾沉积在μPAD(0.5μL,1.5 M)上,当存在爆炸物时会产生变色反应,TNB的检出限约为7.5±1.0 ng,TNT的检出限约为12.5±2.0 ng,Tetryl的检出限为15.0±2.0 ng 。为了进行验证性分析,使用5毫米打孔器对阳性μPAD进行采样,然后在30 s内使用20μL硼酸盐/ SDS缓冲液从打孔的乍得中提取炸药。提取效率为96.5±1.7%。然后在芯片设备上用Agilent 2100生物分析仪实验室分析提取的炸药,最小可检测量为TNB 3.8±0.1 ng,TNT 7.0±0.9 ng,替替利4.7±0.2 ng。现场模拟实验证明了将μPAD技术与实验室结合在芯片设备上的可行性,以检测和识别分布在100 cm〜2表面上的1μg炸药。

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