Torma Ferenc, Kádár Mihály, Tóth Klára, Tatár Eniko
Research Group for Technical Analytical Chemistry of the Hungarian Academy of Sciences, Department of Inorganic and Analytical Chemistry, Budapest University of Technology and Economics, Szent Gellért tér 4, H-1111, Budapest, Hungary.
Anal Chim Acta. 2008 Jul 7;619(2):173-82. doi: 10.1016/j.aca.2008.05.004. Epub 2008 May 8.
This paper describes the fabrication, characterisation and the application of a Nafion/2,2'-bipyridyl/bismuth composite film-coated glassy carbon electrode (NC(Bpy)BiFE) for the anodic stripping voltammetric determination of trace metal ions (Zn2+, Cd2+ and Pb2+). The NC(Bpy)BiFE electrode is prepared by first applying a 2.5 mm3 drop of a coating solution containing 0.5 wt% Nafion and 0.1% (w/v) 2,2'-bipyridil (Bpy) onto the surface of a glassy carbon electrode, while the Bi film was plated in situ simultaneously with the target metal ions at -1.4V. The main advantage of the polymer coated bismuth film electrode is that the sensitivity of the stripping responses is increased considerably due to the incorporation of the neutral chelating agent of 2,2'-bipyridyl (Bpy) in the Nafion film, while the Nafion coating improved the mechanical stability of the bismuth film and its resistance to the interference of surfactants. The key experimental parameters relevant to both the electrode fabrication and the voltammetric measurement were optimized on the basis of the stripping signals. With a 2 min deposition time in the presence of oxygen, linear calibration curves were obtained in a wide concentration range (about 2-0.001 microM) with detection limits of 8.6 nM (0.56 microg dm(-3)) for Zn2+, 1.1 nM (0.12 microg dm(-3)) for Cd2+ and 0.37 nM (0.077 microg dm(-3)) for Pb(2+). For nine successive preconcentration/determination/electrode renewal experiments the standard deviations were between 3 and 5% at 1.2 microM for zinc and 0.3-0.3 microM concentration level for lead and cadmium, respectively, and the method exhibited excellent selectivity in the presence of the excess of several potential interfering metal ions. The analytical utility of the stripping voltammetric method elaborated was tested in the assay of heavy metals in some real samples and the method was validated by ICP-MS technique.
本文描述了一种用于阳极溶出伏安法测定痕量金属离子(Zn2+、Cd2+和Pb2+)的Nafion/2,2'-联吡啶/铋复合膜修饰玻碳电极(NC(Bpy)BiFE)的制备、表征及应用。NC(Bpy)BiFE电极的制备方法是,先在玻碳电极表面滴加2.5 mm3含有0.5 wt% Nafion和0.1%(w/v)2,2'-联吡啶(Bpy)的涂层溶液,同时在-1.4V下与目标金属离子原位电镀铋膜。聚合物修饰铋膜电极的主要优点是,由于在Nafion膜中引入了中性螯合剂2,2'-联吡啶(Bpy),溶出响应的灵敏度显著提高,同时Nafion涂层提高了铋膜的机械稳定性及其对表面活性剂干扰的抗性。基于溶出信号对与电极制备和伏安测量相关的关键实验参数进行了优化。在有氧条件下沉积2分钟,在较宽的浓度范围(约2 - 0.001 microM)内获得了线性校准曲线,Zn2+的检测限为8.6 nM(0.56 microg dm(-3)),Cd2+为1.1 nM(0.12 microg dm(-3)),Pb(2+)为0.37 nM(0.077 microg dm(-3))。在锌浓度为1.2 microM、铅和镉浓度分别为0.3 - 0.3 microM水平下进行九次连续的预富集/测定/电极更新实验,标准偏差分别在3%至5%之间,该方法在存在几种潜在干扰金属离子过量的情况下表现出优异的选择性。所阐述的溶出伏安法的分析实用性在一些实际样品中的重金属测定中进行了测试,并通过电感耦合等离子体质谱(ICP-MS)技术进行了验证。