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An OFF-ON detection method for copper(ii) ions using a AgAu-NG nanocomposite modified electrode

机译:铜(II)离子使用Alau-Ng纳米复合材料改性电极的铜(II)离子的脱纸检测方法

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摘要

An OFF-ON detection method for Cu2+ was developed at the AgAu bimetallic nanoparticle decorated nitrogen-doped graphene (AgAu-NG) nanocomposite modified electrode. The measurement was based on the copper-catalyzed oxidation of cysteamine (Cys) to regulate the oxidation peak current of Ag. In the absence of Cu2+, Cys can bind to the surface of AgAu-NG via the Ag-S or Au-S bond, thus leading to an obvious decrease of the oxidation peak current of Ag. However, in the presence of Cu2+, Cu2+ can greatly catalyze the oxidation of Cys by dissolved O-2 to form cystamine, which would fall off the surface of AgAu-NG nanocomposites, leading to the partial recovery of the oxidation peak current of Ag. With the increase in the concentration of Cu2+, the oxidation peak current of Ag in the presence of Cys increases accordingly. So, the concentration of Cu2+ can be measured. By using the optimum conditions, this method can detect Cu2+ concentrations down to 0.3 nM (S/N = 3) with a linear response range of 1 nM-1 mM. Furthermore, this method was applied to determine Cu2+ concentrations in river water samples and showed excellent analytical performance.
机译:在Agau双金属纳米粒子装饰氮掺杂石墨烯(Agau-Ng)纳米复合材料改性电极上开发了Cu2 +的离子检测方法。测量基于半胱胺(Cys)的铜催化氧化,以调节Ag的氧化峰值电流。在没有Cu2 +的情况下,Cys可以通过Ag-S或AU-S键与Agau-Ng的表面结合,从而导致Ag的氧化峰值电流明显降低。然而,在Cu 2 +的存在下,Cu2 +可以通过溶解的O-2大大催化Cys的氧化以形成胱胺,这将脱落Agau-Ng纳米复合材料的表面,导致Ag的氧化峰值电流的部分恢复。随着Cu2 +浓度的增加,Cys存在下Ag的氧化峰值电流相应地增加。因此,可以测量Cu2 +的浓度。通过使用最佳条件,该方法可以检测到0.3nm(S / N = 3)的Cu2 +浓度,线性响应范围为1nm-1mm。此外,应用该方法以确定河水样品中的Cu2 +浓度,并显示出优异的分析性能。

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