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利用电化学还原石墨烯测定爆炸物。

Determination of explosives using electrochemically reduced graphene.

机构信息

Key Laboratory of Analytical Chemistry for Life Science, School of Chemistry and Chemical Engineering, Nanjing University, Nanjing 210093, China.

出版信息

Chem Asian J. 2011 May 2;6(5):1210-6. doi: 10.1002/asia.201000836. Epub 2011 Mar 8.

Abstract

A graphene-based electrochemical sensing platform for sensitive determination of explosive nitroaromatic compounds (NACs) was constructed by means of electrochemical reduction of graphene oxide (GO) on a glassy carbon electrode (GCE). The electrochemically reduced graphene (ER-GO) adhered strongly onto the GCE surface with a wrinkled morphology that showed a large active surface area. 2,4-Dinitrotoluene (2,4-DNT), as a model analyte, was detected by using stripping voltammetry, which gave a low detection limit of 42 nmol  L(-1) (signal-to-noise ratio=3) and a wide linear range from 5.49×10(-7) to 1.1×10(-5)  M. Further characterizations by electrochemistry, IR, and Raman spectra confirmed that the greatly improved electrochemical reduction signal of DNT on the ER-GO-modified GC electrode could be ascribed to the excellent electrocatalytic activity and high surface-area-to-volume ratio of graphene, and the strong π-π stacking interactions between 2,4-DNT and the graphene surface. Other explosive nitroaromatic compounds including 1,3-dinitrobenzene (1,3-DNB), 2,4,6-trinitrotoluene (TNT), and 1,3,5-trinitrobenzene (TNB) could also be detected on the ER-GO-modified GC electrode at the nM level. Experimental results showed that electrochemical reduction of GO on the GC electrode was a fast, simple, and controllable method for the construction of a graphene-modified electrode for sensing NACs and other sensing applications.

摘要

基于石墨烯的电化学传感平台通过在玻碳电极(GCE)上电还原氧化石墨烯(GO)构建,用于灵敏测定爆炸硝基芳烃化合物(NACs)。电化学还原的石墨烯(ER-GO)强烈附着在 GCE 表面上,具有褶皱形态,显示出较大的活性表面积。以 2,4-二硝基甲苯(2,4-DNT)为模型分析物,通过溶出伏安法进行检测,检测限低至 42 nmol L(-1)(信噪比=3),线性范围从 5.49×10(-7)到 1.1×10(-5) M。通过电化学、IR 和拉曼光谱进一步表征,证实 DNT 在 ER-GO 修饰的 GC 电极上电化学还原信号的大大提高归因于石墨烯的优异电催化活性和高表面积与体积比,以及 2,4-DNT 和石墨烯表面之间的强π-π堆积相互作用。其他爆炸硝基芳烃化合物,包括 1,3-二硝基苯(1,3-DNB)、2,4,6-三硝基甲苯(TNT)和 1,3,5-三硝基苯(TNB),也可以在 ER-GO 修饰的 GC 电极上以 nM 级检测到。实验结果表明,在 GC 电极上电还原 GO 是构建用于检测 NACs 和其他传感应用的石墨烯修饰电极的一种快速、简单和可控的方法。

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