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硫代乙酰胺在水介质中的阳极伏安法及其安培测定法

Anodic Voltammetry of Thioacetamide and its Amperometric Determination in Aqueous Media.

作者信息

Cinghită Dan, Radovan Ciprian, Dascălu Daniela

机构信息

West University of Timisoara, Laboratory of Electrochemistry, Str. Pestalozzi Nr. 16, 300115, Timisoara, Romania.

出版信息

Sensors (Basel). 2008 Aug 4;8(8):4560-4581. doi: 10.3390/s8084560.

Abstract

TAA is a harmful, presumptive pollutant in tap waters and waste waters. Several alternatives have been tested as new possibilities for the anodic determination of TAA in aqueous solutions, simulated waste waters and tap water. The electrochemical behaviour of thioacetamide (TAA) was investigated at a boron-doped diamond (BDD) electrode both in unbuffered 0.1 M Na₂SO₄ and buffered solutions as supporting electrolytes. The anodic oxidation of TAA showed well-defined limiting currents or current peaks and a good linearity of the amperometric signal vs. concentration plots. The analytical parameters of sensitivity, RSD and LOD, obtained under various experimental conditions, suggest the suitability of the BDD electrode for electroanalytical purposes. Low fouling effects, good reproducibility and stability, as well as the sharpness of the amperometric signals in both unbuffered/ buffered acidic or neutral media, highly superior to those obtained using a glassy carbon (GC) electrode, recommend the unmodified BDD electrode as a promising potential amperometric sensor for environmental applications, regarding the direct anodic determination of TAA in aqueous media.

摘要

硫代乙酰胺是自来水和废水中一种有害的、推定的污染物。已经测试了几种替代方法,作为在水溶液、模拟废水和自来水中阳极测定硫代乙酰胺的新可能性。在未缓冲的0.1 M Na₂SO₄和缓冲溶液作为支持电解质的情况下,在硼掺杂金刚石(BDD)电极上研究了硫代乙酰胺(TAA)的电化学行为。硫代乙酰胺的阳极氧化显示出明确的极限电流或电流峰,并且安培信号与浓度图具有良好的线性关系。在各种实验条件下获得的灵敏度、相对标准偏差和检测限等分析参数表明,BDD电极适用于电分析目的。低污染效应、良好的重现性和稳定性,以及在未缓冲/缓冲的酸性或中性介质中安培信号的尖锐度,大大优于使用玻碳(GC)电极获得的结果,这使得未修饰的BDD电极成为一种有前景的潜在安培传感器,可用于环境应用中直接阳极测定水性介质中的硫代乙酰胺。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/beb5/3705459/248bdca0180b/sensors-08-04560f1.jpg

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