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Near-Infrared-Light Mediated Ratiometric Luminescent Sensor for Multimode Visualized Assays of Explosives

机译:用于炸药多模式可视化分析的近红外光比例发光传感器

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摘要

The development of a portable and easy-to-use device for the detection of explosives with high sensitivity and selectivity is in high demand for homeland security and public safety. In this study, we demonstrate miniaturized devices depending on the upconversion ratiometric luminescent probe for point-of-care (POC) assay of explosives with the naked-eye. When the PEI-coated upconversion nanoparticles (UCNPs) selectively bonded to 2,4,6-trinitrotoluene (TNT) explosives by the formation of Meisenheimer complex, the formed of UCNP-Meisenheimer complexes show turned visible multicolor upconversion luminescence (UCL) on account of TNT-modulating Forster resonance energy transfer process under near-infrared excitation. With UCL emission at 808 nm as internal standard and ratiometric UCL at 477 nm to that at 808 nm (I_(477)/I_(808)) as output signal, the probe can simultaneously meet the accuracy for TNT explosives quantitative analysis. In addition, this easy-to-use visual technique provides a powerful tool for convenient POC assay of rapid explosives identification.
机译:对于国土安全和公共安全,迫切需要开发便携式且易于使用的具有高灵敏度和选择性的爆炸物检测装置。在这项研究中,我们展示了依靠上转换比例发光探针的微型设备,用于肉眼观察爆炸物的即时检验(POC)。当通过形成Meisenheimer配合物而将PEI包覆的上转换纳米粒子(UCNP)选择性地键合至2,4,6-三硝基甲苯(TNT)炸药时,UCNP-Meisenheimer配合物的形成由于可见光而变成了可见的多色上转换发光(UCL)。近红外激发下的TNT-调制Forster共振能量转移过程。通过将808 nm的UCL发射作为内标,并将477 nm与808 nm的比例UCL(I_(477)/ I_(808))作为输出信号,该探头可以同时满足TNT炸药定量分析的精度。此外,这种易于使用的视觉技术为快速鉴定爆炸物提供了方便的POC分析的强大工具。

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