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Multimodal Fluorescent Polymer Sensor for Highly Sensitive Detection of Nitroaromatics

机译:多模式荧光聚合物传感器用于高灵敏度检测硝基芳烃

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摘要

Detection of nitroaromatic explosives with high sensitivity and selectivity is extremely important for civilian and military safety. Here, we report the synthesis and multimodal sensing applications of an emissive alanine based dansyl tagged copolymer P(MMA-co-Dansyl-Ala-HEMA) (>DCP), synthesized by RAFT copolymerization. The fluorescent co-polymer exhibited high sensitivity and selectivity towards conventional nitroaromatic explosives such as DNT, TNT and TNP in solution at lower range of µM level and also with saturated vapor of NACs. The quantum yield of the co-polymer was measured to be very high (Φf = 77%) which make it an ideal candidate for sensing in solution as well as in vapor phase. The fluorescence signal from >DCP copolymer gets significantly quenched upon addition of aliquots of DNT, TNT, and TNP. The Stern-Volmer constant was calculated to be very high. The quenching mechanism was further established by fluorescence up-conversion, time-resolved fluorescence and steady state absorption spectroscopy. The energetics of sensing process was calculated by Density Functional Theory (DFT) studies. We also fabricate a thin film polymer sensor which was able to detect nitroaromatic vapors with high selectivity. This opens up the possibility of building a low-cost and light-weight nitroaromatic explosives sensor for field use.
机译:具有高灵敏度和选择性的硝基芳族炸药的检测对民用和军事安全极为重要。在这里,我们报告了通过RAFT共聚合成的基于发射性丙氨酸的丹酰基标记的共聚物P(MMA-co-Dansyl-Ala-HEMA)(> DCP )的合成和多峰传感应用。该荧光共聚物对传统的硝基芳族炸药(如DNT,TNT和TNP)在较低µM范围的溶液中以及在NAC的饱和蒸汽中均表现出高灵敏度和选择性。测得该共聚物的量子产率非常高(Φf== 77%),这使其成为在溶液和气相中进行传感的理想候选物。加入DNT,TNT和TNP的等分试样后,来自> DCP 共聚物的荧光信号被显着淬灭。计算出的斯特恩-沃尔默常数非常高。通过荧光上转换,时间分辨荧光和稳态吸收光谱进一步建立了猝灭机理。通过密度泛函理论(DFT)研究计算出感应过程的能量。我们还制造了一种薄膜聚合物传感器,该传感器能够以高选择性检测硝基芳族蒸气。这就开辟了构建低成本,轻量的硝基芳族炸药传感器以供现场使用的可能性。

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