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首页> 外文期刊>Electrochimica Acta >Simultaneous determination of Cd(II) and Pb(II) using square wave anodic stripping voltammetry at a gold nanoparticle-graphene-cysteine composite modified bismuth film electrode
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Simultaneous determination of Cd(II) and Pb(II) using square wave anodic stripping voltammetry at a gold nanoparticle-graphene-cysteine composite modified bismuth film electrode

机译:金纳米粒子-石墨烯-半胱氨酸复合修饰铋膜电极上方波阳极溶出伏安法同时测定Cd(II)和Pb(II)

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摘要

A sensitive platform for the simultaneous electrochemical determination of Cd(II) and Pb(II) in aqueous solution has been developed based on the gold nanoparticle-graphene-cysteine composite (Au-GN-Cys) modified bismuth film glassy carbon electrode (GCE) using square wave anodic stripping voltammetry (SWASV). The synergistic effect of cysteine as well as the enlarged, activated surface and good electrical conductivity of gold nanoparticles and graphene contributed to the deposition of Cd(II) and Pb(II) on the electrode surface. Under the optimum conditions, a linear relationship existed between the currents and the concentrations of Cd(II) and Pb(II) in the range between 0.50 μg L~(-1) to 40 μg L~(-1) with the detection limits of 0.10 μgL~(-1) for Cd(II) and 0.05 μgL~(-1) for Pb(II), respectively, based on a signal-to-noise ratio equal to 3 (S/N = 3). The interference experiments show that some metal cations had little influence on the SWASV signals of Cd(II) and Pb(II). In addition, the developed electrode displayed a good repeatability and reproducibility. These studies imply that the Au-GN-Cys composites might be an alternative candidate for practical applications in electrochemical detection of metal ions.
机译:基于金纳米粒子-石墨烯-半胱氨酸复合物(Au-GN-Cys)修饰的铋膜玻璃碳电极(GCE),开发了一种同时电化学测定水溶液中Cd(II)和Pb(II)的灵敏平台。使用方波阳极溶出伏安法(SWASV)。半胱氨酸的协同作用以及金纳米颗粒和石墨烯的扩大的活化表面以及良好的导电性有助于Cd(II)和Pb(II)在电极表面的沉积。在最佳条件下,电流与Cd(II)和Pb(II)的浓度在0.50μgL〜(-1)至40μgL〜(-1)之间呈线性关系,且具有检测限基于等于3的信噪比(S / N = 3),Cd(II)的0.10μgL〜(-1)和Pb(II)的0.05μgL〜(-1)。干扰实验表明,某些金属阳离子对Cd(II)和Pb(II)的SWASV信号影响很小。另外,显影的电极显示出良好的可重复性和可再现性。这些研究表明,Au-GN-Cys复合材料可能是实际应用中金属离子电化学检测的替代候选材料。

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