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使用金纳米粒子电化学检测水中低浓度的汞。

Electrochemical detection of low concentrations of mercury in water using gold nanoparticles.

机构信息

Institute of Chemistry, The Hebrew University of Jerusalem, Jerusalem 9190401, Israel.

出版信息

Anal Chem. 2015;87(10):5148-55. doi: 10.1021/ac504584f. Epub 2015 May 4.

Abstract

The electrochemical detection of mercury in aqueous solutions was studied at glassy carbon (GC) and indium-tin oxide (ITO) electrodes modified by gold nanoparticles (Au NPs). Two methods of modification were used: electrochemical reduction of HAuCl4 and electrostatic adsorption of Au NPs stabilized by citrate. We found that the Au NPs modified surfaces yielded higher sensitivity and sharper and more reproducible stripping peaks of Hg as compared with the bare electrodes. The effect of the modification by Au NPs on the stripping potential was examined. Interestingly, the stripping of Hg on GC and ITO modified by Au NPs occurred at the same potential as on bare GC and ITO, respectively. Only the full coverage of ITO by either electrochemically deposited Au for a long time or by vapor deposition, shifted the stripping potential more positive by ca. 0.4 V to that observed on a bare Au electrode. These and further experiments led us to conclude that the Au NPs served as nucleation sites for the deposition of Hg, whereas the GC or ITO are superior for the stripping of mercury. Hence, a combination of well-defined Au NPs on ITO or GC were found ideal for the electrochemical detection of Hg. Indeed, we achieved a remarkable detection limit of 1 μm·L(-1) of Hg using an ITO surface modified by electrostatically adsorbed Au NPs.

摘要

水溶液中汞的电化学检测在玻碳(GC)和掺锡氧化铟(ITO)电极上进行,这些电极通过金纳米粒子(Au NPs)进行修饰。采用了两种修饰方法:HAuCl4 的电化学还原和通过柠檬酸稳定的 Au NPs 的静电吸附。我们发现,与裸电极相比,Au NPs 修饰表面产生了更高的灵敏度和更尖锐、更可重复的 Hg 剥离峰。研究了 Au NPs 修饰对剥离电位的影响。有趣的是,Au NPs 修饰的 GC 和 ITO 上 Hg 的剥离电位分别与裸 GC 和 ITO 上的剥离电位相同。只有长时间通过电化学沉积或通过气相沉积使 ITO 完全覆盖,才能将剥离电位正向移动约 0.4 V,使其与裸 Au 电极上观察到的电位相同。这些和进一步的实验使我们得出结论,Au NPs 充当 Hg 沉积的成核位点,而 GC 或 ITO 则更适合 Hg 的剥离。因此,发现具有明确定义的 Au NPs 的 ITO 或 GC 的组合非常适合用于电化学检测 Hg。实际上,我们使用通过静电吸附的 Au NPs 修饰的 ITO 表面实现了 Hg 的显著检测限为 1 μm·L(-1)。

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