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Nitroaromatic explosives detection using electrochemically exfoliated graphene

机译:使用电化学剥离石墨烯检测硝基芳烃爆炸物

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摘要

Detection of nitroaromatic explosives is of paramount importance from security point of view. Graphene sheets obtained from the electrochemical anodic exfoliation of graphite foil in different electrolytes (LiClO4 and Na2SO4) were compared and tested as electrode material for the electrochemical detection of 2,4-dinitrotoluene (DNT) and 2,4,6-trinitrotoluene (TNT) in seawater. Voltammetry analysis demonstrated the superior electrochemical performance of graphene produced in LiClO4, resulting in higher sensitivity and linearity for the explosives detection and lower limit of detection (LOD) compared to the graphene obtained in Na2SO4. We attribute this to the presence of oxygen functionalities onto the graphene material obtained in LiClO4 which enable charge electrostatic interactions with the –NO2 groups of the analyte, in addition to π-π stacking interactions with the aromatic moiety. Research findings obtained from this study would assist in the development of portable devices for the on-site detection of nitroaromatic explosives.
机译:从安全的角度来看,硝基芳香族爆炸物的检测至关重要。比较了在不同电解质(LiClO4和Na2SO4)中通过石墨箔的电化学阳极剥离获得的石墨烯片,并测试了其作为电化学检测2,4-二硝基甲苯(DNT)和2,4,6-三硝基甲苯(TNT)的电极材料在海水中。伏安分析表明,与在Na2SO4中获得的石墨烯相比,LiClO4中产生的石墨烯具有优异的电化学性能,从而导致爆炸物检测具有更高的灵敏度和线性,而检测限(LOD)更低。我们将其归因于在LiClO4中获得的石墨烯材料上存在氧官能团,除了与芳族部分的π-π堆积相互作用外,它还使电荷与分析物的–NO2基团发生静电相互作用。从这项研究中获得的研究结果将有助于开发用于现场检测硝基芳族炸药的便携式设备。

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