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Study of Pore Property of Mesoporous Films Materials for Trace Explosive Detection

机译:用于痕量爆炸物检测的中孔膜材料的孔性能研究

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Thus, here, by using the sol-gel technique and spin coating technology, a series of mesoporous silica thin films doped by silylated naphthol fluorescence dye were successfully fabricated. By selecting the same surfactant triblock copolymer Pluronic F127 (EO_(106)-PO_(70)-EO_(106)) as structure-directing agent, films with different pore structure and similar aperture size were synthesized under different conditions. The films doping fluorescence dye toward nitro explosive 2, 4, 6-trinitrotoluene (TNT) vapor exhibited rapid response rate and extremely high fluorescent quenching efficiency, close to 96.4 % after 1200 s response. The results clearly showed that pore structure control of mesoporous film was an effective way to improve sensor performance. Mesoporous thin films, with different pore structure, easily to be prepared and owning high sensitivity, could be used as a new alternative of trace explosive detecting material.
机译:因此,在此,通过使用溶胶-凝胶技术和旋涂技术,成功地制备了一系列由甲硅烷基化的萘酚荧光染料掺杂的介孔二氧化硅薄膜。通过选择相同的表面活性剂三嵌段共聚物Pluronic F127(EO_(106)-PO_(70)-EO_(106))作为结构导向剂,在不同条件下合成了具有不同孔结构和相似孔径的薄膜。向硝基炸药2、4、6-三硝基甲苯(TNT)蒸气中掺杂荧光染料的薄膜表现出快速的响应速度和极高的荧光猝灭效率,在1200 s响应后接近96.4%。结果清楚地表明,控制中孔膜的孔结构是提高传感器性能的有效方法。具有不同孔结构,易于制备且灵敏度高的中孔薄膜可以用作痕量爆炸物探测材料的新替代品。

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