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采用方波阳极溶出伏安法一步电化学制备用于饮用水中铅离子痕量检测的SnO修饰电极

One-step electrochemical elaboration of SnO modified electrode for lead ion trace detection in drinking water using SWASV.

作者信息

Lameche Siham, Berrabah Salah Eddine, Benchettara Abdelhakim, Tabti Sabrina, Manseri Amar, Djadi Djaouida, Bardeau Jean-François

机构信息

Laboratory of Electrochemistry-Corrosion, Metallurgy and Mineral Chemistry, Faculty of Chemistry, USTHB, BP 32, 16111, Algiers, Algeria.

Research Center On Semiconductor Technology for Energetic (CRTSE), Thin Films Surface and Interface Division CMSI, 02 Bd. Frantz-Fanon, B.P. 140, Alger-7 Merveilles, Algiers, Algeria.

出版信息

Environ Sci Pollut Res Int. 2023 Mar;30(15):44578-44590. doi: 10.1007/s11356-023-25517-4. Epub 2023 Jan 25.

DOI:10.1007/s11356-023-25517-4
PMID:36696063
Abstract

A facile method was proposed for the elaboration of an electrochemical sensor for heavy metal's trace detection by using square wave anodic stripping voltammetry (SWASV); this method is based on a simple anodic conversion of tin electrode into Sn/SnO modified electrode. Both electrochemical and physico-chemical techniques were used to confirm the modification process and better understand the electrode's behavior. Then, depending on the operating conditions, the response signal was studied and adjusted in order to obtain optimal sensor performance. When optimized, the proposed method reached a lowest detection limit (LOD) of 2.15 μg L (0.0104 μM), and quantification limit (LOQ) of 5.36 μg L (0.0259 μM), in linearity range between from 6.2 and 20.7 μg L. Additionally, after having used the elaborated electrode for ten successive measurements, the repeatability remains very high with an RSD of approximately 5.3%; furthermore, ten other species appear to have very slight effect on Pb(II) detection. Finally, for the method validation, the proposed electrode was able to sense different lead concentration integrated in a local bottled spring water by showing recovery levels ranging from 103.8 to 108.4%.

摘要

提出了一种简便的方法,用于制备采用方波阳极溶出伏安法(SWASV)检测重金属痕量的电化学传感器;该方法基于将锡电极简单阳极转化为Sn/SnO修饰电极。采用电化学和物理化学技术来确认修饰过程并更好地理解电极行为。然后,根据操作条件,研究并调整响应信号以获得最佳传感器性能。优化后,所提出的方法在6.2至20.7μg/L的线性范围内达到了2.15μg/L(0.0104μM)的最低检测限(LOD)和5.36μg/L(0.0259μM)的定量限(LOQ)。此外,在使用制备好的电极进行十次连续测量后,重复性仍然很高,相对标准偏差(RSD)约为5.3%;此外,其他十种物质对Pb(II)检测的影响似乎非常小。最后,为了进行方法验证,所提出的电极能够检测当地瓶装泉水中不同的铅浓度,回收率在103.8%至108.4%之间。

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