纳米材料在药物滥用电催化检测中的应用进展

Colani T. Fakude , Refiloe P. Modise , Aderemi B. Haruna , Jeseelan Pillay , Kenneth I. Ozoemena
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摘要

药物滥用在全球范围内以前所未有的速度激增,对公共卫生构成重大挑战,直接影响社会、犯罪和经济。本文综述了纳米材料在药物滥用的定性和定量电催化分析中的应用,主要是阿片类药物(如海洛因(HER)、吗啡(MOR)、可待因(COD)、芬太尼(FEN)和曲马多(TR)),以及通过直接氧化的成瘾性兴奋剂(如可卡因(COC)和甲基苯丙胺(MAM))。电分析技术由于其低成本、便携性、易用性和小型化的可能性而引起了人们对生成使用点传感器的关注。基于电分析的设备可以帮助急救人员识别未知粉末并治疗药物滥用受害者。根据药物的治疗和使用目的,可以对药物电化学分析的研究进展进行分类和讨论,特别侧重于药物的电化学反应机制。因此,这篇综述讨论了基于各种策略引入的电催化性能的传感器增强,如表面纳米结构、导电聚合物的使用和电极表面的阳极氧化。最后,提出了关键的展望,并对未来的发展提出了建议和展望。
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Advances in the application of nanomaterials for the electrocatalytic detection of drugs of abuse

Drug abuse has proliferated at an unprecedented rate worldwide, posing significant public health challenges that directly impact society, criminality, and the economy. This review presents the application of nanomaterials for qualitative and quantitative electrocatalytic analysis of drugs of abuse, mostly opioids (such as heroin (HER), morphine (MOR), codeine (COD), fentanyl (FEN), and tramadol (TR)), and addictive stimulants (such as cocaine (COC) and methamphetamine (MAM)) via direct oxidation. Electroanalytical techniques have attracted attention for generating point-of-use sensors because of their low cost, portability, ease of use, and the possibility of miniaturization. Electroanalytical-based devices can assist first responders with tools to identify unknown powders and to treat victims of drug abuse. Based on the drug therapeutic and usage purposes, research advances in drug electroanalysis can be classified and discussed with special emphasis on the electrochemical reaction mechanism of the drug. Therefore, this review discusses sensor enhancement based on the electrocatalytic properties introduced by various strategies, such as surface nanostructuring, the use of conducting polymers, and anodization of electrode surfaces Finally, a critical outlook is presented with recommendations and prospects for future development.

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