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首页> 外文期刊>Analytical and bioanalytical chemistry >Electrochemical properties of silver-copper alloy microelectrodes for use in voltammetric field apparatus
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Electrochemical properties of silver-copper alloy microelectrodes for use in voltammetric field apparatus

机译:伏安现场设备中使用的银铜合金微电极的电化学性能

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摘要

Microelectrodes of silver - copper alloys have been evaluated for use in voltammetric analyses. Increased overpotential towards the hydrogen overvoltage reaction ( HER) was found as a function of increased copper content in the silver. A study of oxidizing products by cyclic voltammetry ( CV) in NaOH solution showed ten anodic and eight cathodic peaks which are described in the present paper. The behaviour of these alloy electrodes is somewhere between pure silver and pure copper electrodes. Differential pulse anodic stripping voltammetry (DPASV) was used to measure zinc, cadmium and lead in ultrapure water only ( 18 M Omega cm), and good linearity was found for all metals (r(2) = 0.998) in the range of 0.5 to 5 ppb with a 600- to 1,200- s plating time. It was additionally found that cadmium and lead were better separated on the alloy electrodes compared to pure silver electrodes. Measurements of nickel were carried out on alloy electrodes by use of adsorptive differential pulse cathodic stripping voltammetry (Ad-DPCSV), and good linearity (r(2)= 1.000) was found in the range from 0.5 to 5 ppb with an adsorption time of 120 s. The alloy electrodes were also found to be sensitive to nitrate, and good linearity (r(2)= 0.997) was found in the range from 1 mg L-1 to 100 mg L-1 using differential pulse voltammetry ( DPV) scanning from - 450 mV to - 1,500 mV. Addition of nitrate in ultrapure water afforded two different peaks related to the successive reductions of nitrate and nitrite. In ammonium buffer solution ( pH 8.6) only one peak resulting from reduction of nitrate was observed. Furthermore, the use of alloy electrodes containing 17% Cu was tested in real samples, by installing it in a voltammetric system for monitoring of zinc and lead in a polluted river, the river Deule, near the town of Douai in northern France. Results were found to be in agreement with parallel measurements carried out by ICP-MS.
机译:银-铜合金微电极已被评估用于伏安分析。已发现,随着银中铜含量的增加,氢过电压反应(HER)的过电位增加。在NaOH溶液中通过循环伏安法(CV)对氧化产物进行的研究显示了十个阳极峰和八个阴极峰,本文对此进行了描述。这些合金电极的行为介于纯银电极和纯铜电极之间。差分脉冲阳极溶出伏安法(DPASV)仅用于测量超纯水(18 M Omega cm)中的锌,镉和铅,并且所有金属(r(2)= 0.998)的线性范围在0.5至0.5之间。 5 ppb,电镀时间为600至1200秒。另外还发现,与纯银电极相比,镉和铅在合金电极上的分离效果更好。使用吸附差分脉冲阴极溶出伏安法(Ad-DPCSV)在合金电极上进行镍的测量,发现线性良好(r(2)= 1.000)在0.5到5 ppb的范围内,吸附时间为120秒还发现合金电极对硝酸盐敏感,并且使用从-扫描的差分脉冲伏安法(DPV)在1 mg L-1至100 mg L-1范围内发现了良好的线性(r(2)= 0.997)。 450 mV至-1,500 mV。在超纯水中添加硝酸盐可得到两个与硝酸盐和亚硝酸盐连续减少有关的峰。在铵缓冲溶液(pH 8.6)中,仅观察到一个由硝酸盐还原引起的峰。此外,在实际样品中测试了含17%Cu的合金电极的使用,方法是将其安装在伏安系统中,以监测污染的河流(法国北部杜埃附近的Deule河)中的锌和铅。发现结果与ICP-MS进行的平行测量相符。

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