Bimodal (Photo)electrochemical Sensor for Cetirizine Detection

IF 2.7 3区 化学 Q2 CHEMISTRY, ANALYTICAL
Electroanalysis Pub Date : 2025-02-12 DOI:10.1002/elan.12018
Daniele Fumagalli, Wafa Aidli, Luigi Falciola, Valentina Pifferi
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引用次数: 0

Abstract

A bimodal sensor able to effectively detect cetirizine, an antihistaminic drug, was proposed. The device is based on the catalytic properties of silver and the photoactivity of TiO2 and can be used as dual electrochemical-photoelectrochemical sensor, with good performances in cetirizine quantification both through the molecule's reduction and its photo-oxidation, with limits of detections of (3.2 ± 0.1) and (1.03 ± 0.08) µM, respectively. The use of these two materials allows for greater stability, robustness, and reusability compared to using two separate electrodes. Furthermore, a comparison of the results obtained with the two techniques can help in identifying and eliminating the effects of interferents, thus increasing the reliability of the detection.

Abstract Image

用于西替利嗪检测的双峰(光电)电化学传感器
提出了一种能够有效检测抗组胺药物西替利嗪的双峰传感器。该装置基于银的催化性能和TiO2的光活性,可作为电化学-光电化学双传感器,通过分子还原和光氧化对西噻利嗪的定量均具有良好的性能,检出限分别为(3.2±0.1)µM和(1.03±0.08)µM。与使用两个单独的电极相比,这两种材料的使用具有更高的稳定性、稳健性和可重用性。此外,比较两种技术获得的结果有助于识别和消除干扰的影响,从而提高检测的可靠性。
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来源期刊
Electroanalysis
Electroanalysis 化学-电化学
CiteScore
6.00
自引率
3.30%
发文量
222
审稿时长
2.4 months
期刊介绍: Electroanalysis is an international, peer-reviewed journal covering all branches of electroanalytical chemistry, including both fundamental and application papers as well as reviews dealing with new electrochemical sensors and biosensors, nanobioelectronics devices, analytical voltammetry, potentiometry, new electrochemical detection schemes based on novel nanomaterials, fuel cells and biofuel cells, and important practical applications. Serving as a vital communication link between the research labs and the field, Electroanalysis helps you to quickly adapt the latest innovations into practical clinical, environmental, food analysis, industrial and energy-related applications. Electroanalysis provides the most comprehensive coverage of the field and is the number one source for information on electroanalytical chemistry, electrochemical sensors and biosensors and fuel/biofuel cells.
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