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Sensitive electrochemical detection of Hg(Ⅱ) via a FeOOH modified nanoporous gold microelectrode

机译:FeOOH修饰的纳米多孔金微电极灵敏电化学检测Hg(Ⅱ)

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摘要

As a global scale pollutant, mercury poses serious risks for human health and the environment; thus, it is of critical importance to develop a simple and efficient sensing protocol to achieve the precise detection of Hg(II). Here we report on the facile fabrication of electro-synthesized FeOOH nanoflakes on nanoporous gold (NPG) microwires. The resulting FeOOH/NPG microelectrode was applied to the electrochemical detection of Hg(II) via square wave voltammetry (SWV). Nanoporous gold microwires with 3D network structures can provide a large specific surface area, facilitate analyte transport and electron transfer, and enhance the electro-catalytical activity of FeOOH-Au. Meanwhile FeOOH nanoflakes, with high adsorption capacities can accumulate analytes onto the electrode surface. Under the optimized conditions, excellent electrochemical performance was achieved with a high sensitivity of 123.5 mu A mu M-1 cm(-2) and low detection limit of 7.81 nM, respectively. In addition, no obvious interference from common ions (e.g., Cu(II), Pb(II), Cd(II)) was observed, and the FeOOH/NPG microelectrode demonstrated exceptional stability. Furthermore, the fabricated electrochemical sensor could be utilized for the detection of Hg(II) in tap water and lake water samples.
机译:汞作为一种全球性污染物,对人类健康和环境构成了严重风险;因此,开发一种简单有效的传感方案以实现对Hg(II)的精确检测至关重要。在这里,我们报告了在纳米孔金(NPG)微线上进行电合成FeOOH纳米片的简便制造。通过方波伏安法(SWV)将所得的FeOOH / NPG微电极应用于Hg(II)的电化学检测。具有3D网络结构的纳米多孔金微丝可提供较大的比表面积,促进分析物的运输和电子转移,并增强FeOOH-Au的电催化活性。同时,具有高吸附能力的FeOOH纳米薄片可以将分析物积累到电极表面上。在优化的条件下,获得了优异的电化学性能,灵敏度分别为123.5μAmu M-1 cm(-2)和7.81 nM。此外,未观察到来自常见离子(例如Cu(II),Pb(II),Cd(II))的明显干扰,并且FeOOH / NPG微电极表现出出色的稳定性。此外,所制造的电化学传感器可用于检测自来水和湖水样品中的Hg(II)。

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