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Detection of PETN and RDX using a FRET-based fluorescence sensor system

机译:使用基于FRET的荧光传感器系统检测PETN和RDX

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Most of the fluorescence based detection of explosives involves the detection of nitro-aromatic compounds, such as trinitrotoluene (TNT) and dinitrotoluene (DNT). Here, we report a Forster resonance energy transfer (FRET)-based nanosensor system for the highly selective detection of powerful explosives, such as PETN (pentaerythritol tetranitrate) and RDX (cyclotrimethylenetrinitramine). The nanosensor system is composed of cadmium sulfide quantum dots (CdS QDs) and diphenylamine (DPA). Initially, the inherent fluorescence of DPA was quenched by resonance energy transfer to the CdS QDs. During detection, due to the strong interaction of DPA with PETN/RDX, the FRET was turned-off and was accompanied by the recovery of the donor's (DPA) fluorescence. This provides an opportunity to follow the detection in a two-way manner, either the decrease in the FRET intensity at similar to 585 nm or the evolution of fluorescence at similar to 355 nm. The detection limits for PETN and RDX were found to be 10 nM and 20 nM, respectively. The fluorescence lifetime measurements confirmed that the energy transfer process is effective in the CdS QD-DPA sensor system. The details of the molecular interactions, between QD-DPA and DPA-analytes, were established using infrared spectroscopy. The easy one pot synthesis method of CdS QDs, excellent selectivity and very good sensitivity make the present sensor system attractive.
机译:炸药的大多数基于荧光的检测都涉及对硝基芳族化合物的检测,例如三硝基甲苯(TNT)和二硝基甲苯(DNT)。在这里,我们报告一个基于Forster共振能量转移(FRET)的纳米传感器系统,用于高度选择性地检测强大的炸药,例如PETN(季戊四醇四硝酸酯)和RDX(环三亚甲基三硝胺)。纳米传感器系统由硫化镉量子点(CdS QDs)和二苯胺(DPA)组成。最初,DPA的固有荧光通过共振能量转移至CdS QD来猝灭。在检测过程中,由于DPA与PETN / RDX的强烈相互作用,FRET被关闭,并伴随着供体(DPA)荧光的恢复。这提供了一种以双向方式跟踪检测的机会,要么是在类似于585 nm处的FRET强度降低,要么是在类似于355 nm处的荧光演化。发现PETN和RDX的检出限分别为10 nM和20 nM。荧光寿命测量结果证实了能量转移过程在CdS QD-DPA传感器系统中是有效的。 QD-DPA和DPA分析物之间的分子相互作用的详细信息是使用红外光谱法建立的。 CdS QD的简单的一锅合成方法,出色的选择性和非常好的灵敏度使本传感器系统具有吸引力。

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