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Sensing of some interesting NACs through fluorescence quenching studies.

机译:通过荧光猝灭研究检测一些有趣的NAC。

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The development of reliable detection of explosives is one of the pressing concerns in antiterrorism efforts and environmental pollution controls. Different sensors have been developed for detection and trace detection of explosive materials and High energy Materials (HEMS). However these are found to have limitation in terms of cost and easy adaptability. In recent studies fluorescence-based sensing technology has emerged as one of the most promising approaches for trace explosives detection due to the advantages such as short response time, excellent sensitivity, and instrumental simplicity. Herein, we report the synthesis of camphor sulfonic acid doped polyaniline (CSA-PANI) synthesised through chemical route and its characterization employing various experimental tools. We report the efficiency of our CSA-PANI as fast, sensitive, selective, reliable and cost effective material for detection of nitro-aromatic explosives (NACs) like picric acid and Para-Nitrotoluene. The successful demonstration through fluorescence quenching of conjugated polymers of NACs is envisaged with N-methyl pyrrolidone as solvent. Quenching efficiency has been estimated by Stern-Volmer equation. The mechanism for the ultra sensitivity of CSA-PANI to detect PA is attributed to the "molecular-wire effect", through photo induced electron transfer (PET) process is evidenced from spectroscopic and redox studies.
机译:发展可靠的爆炸物检测是反恐努力和环境污染控制的紧迫问题之一。已经开发出用于检测和追踪爆炸性材料和高能材料(HEMS)的不同传感器。然而,发现这些在成本和容易适应性方面具有局限性。在最近的研究中,基于荧光的传感技术由于具有响应时间短,灵敏度高和仪器简便等优点,已成为痕量炸药检测中最有前途的方法之一。本文中,我们报告了通过化学途径合成的樟脑磺酸掺杂聚苯胺(CSA-PANI)的合成及其使用各种实验工具的表征。我们报告了CSA-PANI作为快速,灵敏,选择性,可靠和经济高效的材料的效率,可用于检测苦味酸和对硝基甲苯等硝基芳族炸药(NAC)。设想使用N-甲基吡咯烷酮作为溶剂,通过NAC的共轭聚合物的荧光猝灭的成功演示。淬火效率已通过Stern-Volmer方程估算。 CSA-PANI检测PA的超灵敏性机制归因于“分子线效应”,这是通过光谱和氧化还原研究证明,是通过光致电子转移(PET)过程实现的。

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