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室温离子液体电化学传感器:对扑热息痛检测的综述。

Room Temperature Ionic Liquids-Based Electrochemical Sensors: An Overview on Paracetamol Detection.

机构信息

Department of Chemistry, School of Basic Sciences, VELS Institute of Science, Technology and Advanced Studies (VISTAS), Chennai, Tamil Nadu, India.

Department of Inorganic Chemistry, University of Madras, Guindy Campus, Chennai, Tamil Nadu, India.

出版信息

Crit Rev Anal Chem. 2022;52(6):1422-1431. doi: 10.1080/10408347.2021.1882834. Epub 2021 Feb 23.


DOI:10.1080/10408347.2021.1882834
PMID:33622098
Abstract

Paracetamol (PAR) is an effective antipyretic and analgesic drug utilized worldwide, safer at therapeutic levels but over-dosing and the chronic usage of PAR results in accumulation of toxic metabolites, which leads to kidney and liver damages. Hence, a simple, rapid, cost-effective, and sensitive analytical technique is needed for the accurate determination of PAR in pharmaceutical and biological samples. Though numerous techniques have been reported for PAR detection, electrochemical methods are being receiving more interest due to their advantages. Moreover, in the past few decades, room temperature ionic liquids (RTILs) have been utilized in electrochemical sensors due to their attractive properties. In this present review, authors gathered research findings available for the determination of PAR using RTIL-based electrochemical sensors and discussed. The advantages and limitations in these systems as well as the future research directions are summarized.

摘要

对乙酰氨基酚(PAR)是一种有效的解热镇痛药,在全球范围内广泛应用,在治疗水平下使用更为安全,但过量用药和长期使用 PAR 会导致有毒代谢物的积累,从而导致肾脏和肝脏损伤。因此,需要一种简单、快速、经济高效且灵敏的分析技术,以便在药物和生物样品中准确测定 PAR。虽然已经报道了许多用于 PAR 检测的技术,但电化学方法由于其优势而受到更多关注。此外,在过去几十年中,室温离子液体(RTIL)由于其独特的性质,已被应用于电化学传感器中。在本次综述中,作者收集了使用基于 RTIL 的电化学传感器测定 PAR 的研究结果并进行了讨论。总结了这些系统的优缺点以及未来的研究方向。

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引用本文的文献

[1]
Simulating the ionic liquid mixing with organic-solvent clarifies the mixture's SFG spectral behavior and the specific surface region originating SFG.

Sci Rep. 2024-10-5

[2]
Synthesis of Copper Molybdate and Its Electrochemical Sensing of Paracetamol.

Cureus. 2024-7-5

[3]
(Bio)Sensing Strategies Based on Ionic Liquid-Functionalized Carbon Nanocomposites for Pharmaceuticals: Towards Greener Electrochemical Tools.

Nanomaterials (Basel). 2022-7-11

[4]
Ionic Liquid-Based Materials for Biomedical Applications.

Nanomaterials (Basel). 2021-9-15

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