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首页> 外文期刊>Journal of Electroanalytical Chemistry: An International Journal Devoted to All Aspects of Electrode Kinetics, Interfacial Structure, Properties of Electrolytes, Colloid and Biological Electrochemistry >The efficacy of the ZnO:alpha-Fe2O3 composites modified carbon paste electrode for the sensitive electrochemical detection of loperamide: A detailed investigation
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The efficacy of the ZnO:alpha-Fe2O3 composites modified carbon paste electrode for the sensitive electrochemical detection of loperamide: A detailed investigation

机译:ZnO:α-Fe2O3复合修饰碳糊电极对洛哌丁胺的灵敏电化学检测的功效:详细研究

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摘要

The efficacy of the ZnO-alpha-Fe2O3 composites as carbon paste electrode (CPE) modifier for sensitive electrochemical detection of loperamide was explored. The composites were synthesized in 1:1, 2:1, and 3:1 (ZnO:alpha-Fe2O3) ratios by the gradual amalgamation of pre-synthesized alpha-Fe2O3 and hydrated gel of Zn2+ that later transformed to the ZnO by thermal treatment The lattice parameters of the composite ZnO and, the probable variations in the oxidation states of the components during the adopted coating procedure were assessed by X-ray diffraction (XRD) and X-ray photoelectron spectroscopy (XPS), respectively. The field-emission scanning electron microscopy (FESEM) imaging of the as-synthesized and carbon paste (CP) dispersed composite powders at various resolutions exposed the increased surface coverage of the alpha-Fe2O3 by the ZnO particles with the increasing loading and the uniform distribution of the composite materials in the matrix of carbon paste. Compared to bare CPE, the composites modified CPEs exhibited significantly decreased charge transfer impedance at the electrode/electrolyte interface evaluated by electrochemical impedance spectroscopy (EIS). The sensing ability of the composites modified electrodes for the detection of loperamide in the aqueous medium was investigated. A higher and affectedly improved cyclic voltammetric (CV) oxidation signal of loperamide was noticed at the prepared ZnO:alpha-Fe2O3/CPEs compared to pure components modified CPEs i.e. ZnO/CPE and alpha-Fe2O3/CPE. Based on the EIS and CV investigations, a superior electrochemical performance of (2:1) ZnO:alpha-Fe2O3/CPE was established. Additionally, under optimized experimental conditions of pH, deposition potential, and accumulation time, loperamide was quantified by square wave stripping voltammetry (SWSV) that resulted in the linear calibration ranges from 0.08-1 and 2-10 mu mol L-1 with detection limits (S/N = 3) of 7.9 and 3.6 nmol L-1. The findings of various electrochemical investigations were correlated to establish the mechanism of charge transport and oxidation of loperamide. (C) 2016 Elsevier B.V. All rights reserved.
机译:探索了ZnO-α-Fe2O3复合材料作为碳糊电极(CPE)改性剂对洛哌丁胺进行灵敏电化学检测的功效。通过逐渐合成预先合成的α-Fe2O3和Zn2 +的水合凝胶(随后通过热处理转化为ZnO),以1:1、2:1和3:1(ZnO:alpha-Fe2O3)的比例合成复合材料。分别通过X射线衍射(XRD)和X射线光电子能谱(XPS)评估了复合ZnO的晶格参数,以及在采用的涂覆过程中组件氧化态的可能变化。合成和碳糊(CP)分散的复合粉末在不同分辨率下的场发射扫描电子显微镜(FESEM)成像暴露了ZnO颗粒增加了α-Fe2O3的表面覆盖率,并增加了载荷并使其分布均匀碳糊基质中的复合材料的成分。与裸露的CPE相比,经电化学阻抗谱(EIS)评估,复合材料改性的CPE在电极/电解质界面处的电荷转移阻抗显着降低。研究了复合修饰电极对水介质中洛哌丁胺的检测能力。与纯组分改性的CPE(即ZnO / CPE和α-Fe2O3/ CPE)相比,在制备的ZnO:α-Fe2O3/ CPEs上观察到了洛哌丁胺的较高且受影响的循环伏安(CV)氧化信号。基于EIS和CV研究,建立了(2:1)ZnO:alpha-Fe2O3 / CPE的优异电化学性能。此外,在优化的pH,沉积电势和积累时间的实验条件下,洛哌丁胺通过方波溶出伏安法(SWSV)进行定量,得出线性校正范围为0.08-1和2-10μmol L-1,并具有检测限(S / N = 3)为7.9和3.6nmol L-1。各种电化学研究的结果相关联,以建立洛哌丁胺的电荷迁移和氧化机理。 (C)2016 Elsevier B.V.保留所有权利。

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