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首页> 外文期刊>Sensors and Actuators >An Electrochemical Sensor Based On The Reduction Of Screen-printed Bismuth Oxide For The Determination Of Trace Lead And Cadmium
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An Electrochemical Sensor Based On The Reduction Of Screen-printed Bismuth Oxide For The Determination Of Trace Lead And Cadmium

机译:基于丝网印刷氧化铋还原的电化学传感器,用于痕量铅和镉的测定

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摘要

By combining a screen-printing method with an electrochemical reduction process, an electrochemical sensor to measure trace amounts of lead and cadmium was newly designed, fabricated and characterized. Bismuth oxide was printed on the electrode surface, and it was then electrochemically reduced to bismuth at a potential of -1.2 V in 0.1 M KOH. The stability of the fabricated Bi electrode was evaluated by repetitive measurements, and the interference of copper ions was investigated. The concentrations of lead and cadmium were also measured by square wave anodic stripping voltammetry. Bismuth film, reduced from screen-printed bismuth oxide, showed a well-defined and reproducible stripping response. The electrode exhibited linear behavior in the range of 20-100 μg/L of lead and cadmium (correlation coefficients: 0.999 and 0.998, respectively) with detection limits of 2.3 μg/L for lead and 1.5 μg/L for cadmium. The applicability of the electrode to real samples was evaluated and the results were in good agreement with ICP-MS analysis. These results facilitate the widespread use of screen-printing techniques for the preparation of electrochemical sensors.
机译:通过将丝网印刷方法与电化学还原工艺相结合,新设计,制造和表征了一种用于测量痕量铅和镉的电化学传感器。在电极表面上印刷氧化铋,然后在0.1 M KOH中以-1.2 V的电位将其电化学还原为铋。通过重复测量来评估制成的Bi电极的稳定性,并研究铜离子的干扰。铅和镉的浓度也通过方波阳极溶出伏安法测量。从丝网印刷的氧化铋还原后的铋膜显示出清晰可重复的剥离反应。电极在铅和镉的20-100μg/ L范围内表现出线性行为(相关系数分别为0.999和0.998),铅的检测极限为2.3μg/ L,镉的检测极限为1.5μg/ L。评估了电极对实际样品的适用性,结果与ICP-MS分析非常吻合。这些结果促进了丝网印刷技术广泛用于制备电化学传感器。

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