Université de Rennes 1, UMR-CNRS 6226, Institut des Sciences Chimiques de Rennes, Equipe MaCSE, Campus de Beaulieu, 35042 Rennes cedex, France.
Talanta. 2012 Aug 30;98:152-6. doi: 10.1016/j.talanta.2012.06.063. Epub 2012 Jun 28.
A flow sensor for trace analysis of zinc, using graphite felt as working electrode is reported here. A flow cell, well-adapted to 3-D porous electrodes and capable to do both the preconcentration step at a cathodic potential and the stripping of the zinc was successfully developed. It was demonstrated that this cell allows to obtain better electrochemical signals for Zn(2+) compared to a standard three-electrodes cell and that the percolation during accumulation increases the kinetics of electrodeposition. The influence on Zn(2+) signal of the deposition potential, the time of deposition and the flow rate was studied. The resulting sensor shows a linear response towards Zn(2+) with a linear range of 10(-6)-10(-4)M and a limit of detection of 5×10(-7) M for an analysis time of 5 min. The interferences study showed that the Cr(3+), Pb(2+), Cd(2+) ions have a small effect on the Zn electrochemical signal, whereas Fe(3+), Cu(2+), Co(2+) and Ni(2+) ions strongly influence it. The electrode was tested on real samples (tap water spiked with Zn(2+), food supplement) with a good recovery by applying the standard addition method.
本文报道了一种用于痕量锌分析的流动传感器,该传感器采用石墨毡作为工作电极。本文成功开发了一种适用于 3D 多孔电极的流通池,该流通池能够在阴极电位下进行预浓缩步骤和锌的剥离。结果表明,与标准三电极池相比,该池可以获得更好的锌(2+)电化学信号,并且在积累过程中的渗流增加了电沉积的动力学。研究了沉积电位、沉积时间和流速对 Zn(2+)信号的影响。所得传感器对 Zn(2+)表现出线性响应,线性范围为 10(-6)-10(-4)M,检测限为 5×10(-7) M,分析时间为 5 min。干扰研究表明,Cr(3+)、Pb(2+)、Cd(2+)离子对锌电化学信号的影响较小,而 Fe(3+)、Cu(2+)、Co(2+)和 Ni(2+)离子对其影响较大。通过应用标准加入法,该电极在实际样品(加锌的自来水、食品补充剂)上进行了测试,回收率良好。