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用于检测四环素的含活性材料的碳糊电极的制备

Preparation of a Carbon paste electrode with Active materials for the detection of Tetracycline.

作者信息

Zang Akono Adam Ramses, Blaise Niraka, Valery Hambate Gomdje

机构信息

Department of Chemistry, Faculty of Sciences, University of Maroua, Cameroon.

Department of Textile and Leather Engineering, National Advanced School of Engineering of Maroua, University of Maroua, Cameroon.

出版信息

Heliyon. 2024 Mar 21;10(7):e28471. doi: 10.1016/j.heliyon.2024.e28471. eCollection 2024 Apr 15.

Abstract

The Electrochemical sensor based on carbon-clay paste electrode (CCPE) was constructed for sensitive determination of Tetracycline (Tc). The mineralogical composition, morphology, structure and performance of CCPE were characterized using X-ray diffraction powder, Fourier transform infrared spectroscopy (FTIR), Scanning electron microscopy (SEM) and Cyclic Voltammetry analysis. The CCPE is constituted of two types of clay having the ratio 1/1 and 2/1 characteristic of kaolinite and montmorillonite clay respectively. Its porous structure is ascribed to the presence of graphite. The CCPE exhibited a good electrocatalytic activity towards the oxidation of Tc. The electrochemical kinetics and mechanism of Tc were proposed, showing that Tc electrocatalytic oxidation reaction was controlled by diffusion process and took place in three steps. A low concentration of Tc was detected by amperometry with the linear ranges of 0.5μM-0.8 μM (R = 0.98), the sensitivity was 8.01 μA/μM.cm, the limit of detection and quantification were 5.16x10μM(S/N = 3) and 1.72x10μM respectively. Thus, the proposed electrode provides a promising and prospective CCPE sensing platform for the detection of Tc in the environment.

摘要

构建了基于碳糊电极(CCPE)的电化学传感器用于灵敏测定四环素(Tc)。采用X射线衍射粉末、傅里叶变换红外光谱(FTIR)、扫描电子显微镜(SEM)和循环伏安分析对CCPE的矿物组成、形态、结构和性能进行了表征。CCPE由两种比例分别为1/1和2/1的粘土构成,分别具有高岭石和蒙脱石粘土的特征。其多孔结构归因于石墨的存在。CCPE对Tc的氧化表现出良好的电催化活性。提出了Tc的电化学动力学和机理,表明Tc电催化氧化反应受扩散过程控制,分三步进行。采用安培法检测低浓度的Tc,线性范围为0.5μM - 0.8μM(R = 0.98),灵敏度为8.01μA/μM.cm,检测限和定量限分别为5.16x10μM(S/N = 3)和1.72x10μM。因此,所提出的电极提供了一个有前景的CCPE传感平台用于环境中Tc的检测。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c95/10981106/88c26ce388c4/gr1.jpg

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