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伏安法中检测限评估策略:方法的比较与评价

Strategies for assessing the limit of detection in voltammetric methods: comparison and evaluation of approaches.

作者信息

Ott Colby E

机构信息

National Institute of Standards and Technology, USA.

出版信息

Analyst. 2024 Aug 5;149(16):4295-4309. doi: 10.1039/d4an00636d.

DOI:10.1039/d4an00636d
PMID:38990215
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11300140/
Abstract

The realm of analytical chemistry continues to struggle with defining and evaluating the limit of detection in analytical methods in the sense that a multitude of definitions, criteria, caveats, and methods have been proposed, developed, and adopted across disciplines. The last decade has seen a surge in the growth of electrochemical methods and studies in the field of forensic science and forensic chemistry. While many disciplines within forensic science have established method validation guidelines, the historical and current lack of electrochemical methods within forensic laboratories throughout the United States has left a major gap in knowledge, inhibiting the adoption and utilization of electrochemistry, which may serve as a powerful tool in many subdisciplines of forensics. As such, this work begins this discussion by focusing first on the limit of detection (LOD), with application toward both qualitative and quantitative methods. Both inorganic (ferrocyanide and lead) and organic (diphenylamine, naltrexone, and acetaminophen) target analytes were analyzed two common voltammetry methods: cyclic voltammetry and square-wave voltammetry. The LOD for each analyte was estimated and/or calculated following a variety of literature-described methods and compared. The accuracy and reliability of these LOD characteristics based on the experimental data is described herein along with suggestions and recommendations. This manuscript is intended to compare the resulting LOD values from various methods and provide a starting point for the incorporation of electrochemistry into the forensic science laboratory, beginning a focused discussion on the development of validation guidelines and parameters needed for the adoption of this technology in forensic laboratories in order to meet the standards required by the criminal justice system.

摘要

分析化学领域在定义和评估分析方法的检测限方面仍存在困难,因为跨学科已经提出、开发并采用了众多的定义、标准、注意事项和方法。过去十年见证了电化学方法以及法医学和法医化学领域研究的激增。虽然法医学中的许多学科已经建立了方法验证指南,但美国各地法医实验室中历史上和目前电化学方法的缺乏造成了重大的知识空白,阻碍了电化学的采用和利用,而电化学在法医学的许多子学科中可能是一个强大的工具。因此,这项工作首先聚焦于检测限(LOD)展开讨论,并将其应用于定性和定量方法。使用两种常见的伏安法:循环伏安法和方波伏安法对无机(亚铁氰化物和铅)和有机(二苯胺、纳曲酮和对乙酰氨基酚)目标分析物进行了分析。按照各种文献描述的方法估算和/或计算了每种分析物的LOD,并进行了比较。本文描述了基于实验数据的这些LOD特性的准确性和可靠性,以及相关建议。本手稿旨在比较各种方法得出的LOD值,并为将电化学纳入法医科学实验室提供一个起点,开启关于制定验证指南和参数的重点讨论,以便在法医实验室采用这项技术,从而满足刑事司法系统要求的标准。