4.5 Review

Nanostructured material-based optical and electrochemical detection of amoxicillin antibiotic

期刊

LUMINESCENCE
卷 38, 期 7, 页码 1064-1086

出版社

WILEY
DOI: 10.1002/bio.4408

关键词

amoxicillin detection; antibiotics; electrochemical sensor; nanostructured materials; optical sensor

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This review article provides valuable and up-to-date information on nanostructured material-based optical and electrochemical sensors for detecting amoxicillin (AMX) in various biological and chemical samples. The role of different nanostructured materials in enhancing the performance of optical and electrochemical sensors has been discussed. The article also briefly discusses nanocomposite-based photo-electrochemical sensors and the market availability of biosensors for AMX detection.
The penicillin derivative amoxicillin (AMX) plays an important role in treating various types of infections caused by bacteria. However, excessive use of AMX may have negative health effects. Therefore, it is of utmost importance to detect and quantify the AMX in pharmaceutical drugs, biological fluids, and environmental samples with high sensitivity. Therefore, this review article provides valuable and up-to-date information on nanostructured material-based optical and electrochemical sensors to detect AMX in various biological and chemical samples. The role of using different nanostructured materials on the performance of important optical sensors such as colorimetric sensors, fluorescence sensors, surface-enhanced Raman scattering sensors, chemiluminescence/electroluminescence sensors, optical immunosensors, optical fibre-based sensors, and several important electrochemical sensors based on different electrode types have been discussed. Moreover, nanocomposites, polymer, and MXenes-based electrochemical sensors have also been discussed, in which such materials are being used to further enhance the sensitivity of these sensors. Furthermore, nanocomposite-based photo-electrochemical sensors and the market availability of biosensors including AMX have also been discussed briefly. Finally, the conclusion, challenges, and future perspectives of the above-mentioned sensing techniques for AMX detection are presented.

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