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固体取样电热蒸发耦合电感耦合等离子体发射光谱法的法医分析。

Forensic analysis by solid sampling electrothermal vaporization coupled to inductively coupled plasma optical emission spectrometry.

机构信息

Department of Chemistry, Queen's University, 90 Bader Lane, Kingston, ON K7L 3N6, Canada.

出版信息

Chem Commun (Camb). 2023 Jun 29;59(53):8190-8204. doi: 10.1039/d3cc01732j.

DOI:10.1039/d3cc01732j
PMID:37294436
Abstract

To analyze trace evidence found at crime scenes, non-destructive analysis techniques or analysis techniques requiring minute amounts of sample are preferred. One such technique is solid sampling electrothermal vaporization (ETV) coupled to inductively coupled plasma optical emission spectrometry (ICPOES), which requires only 0.1-5 mg of sample. As a result, it has been utilized in several applications of forensic research. This article discusses the capabilities of ETV-ICPOES among current analytical methods and introduces its value as a tool for the analysis of forensic evidence. The latest advancements of ETV-ICPOES demonstrate the diverse opportunities for the identification, determination, and discrimination of evidence. Methods of ETV-ICPOES for the direct analysis of various physical evidence, including trace evidence, are reviewed. Some methods involve quantification of multiple elements using, commonly, matrix-matched external calibration with certified reference materials. Other methods combine qualitative multi-element analysis, based on the area of each analyte peak produced during the vaporization step of the ETV temperature program, and multivariate analysis using principal component analysis or linear discriminant analysis. In all cases, internal standardization with an argon emission line first compensates for sample loading effects on the plasma. Perspectives for utilizing ETV-ICPOES in future forensic settings are also offered.

摘要

为了分析犯罪现场发现的微量物证,首选非破坏性分析技术或仅需微量样品的分析技术。其中一种技术是固相采样电热蒸发(ETV)与电感耦合等离子体光学发射光谱法(ICPOES)相结合,仅需 0.1-5 毫克的样品。因此,它已在法医研究的多个应用中得到了利用。本文讨论了 ETV-ICPOES 在当前分析方法中的能力,并介绍了它作为法医证据分析工具的价值。ETV-ICPOES 的最新进展展示了用于识别、确定和区分证据的多种机会。本文综述了 ETV-ICPOES 直接分析各种物证(包括微量物证)的方法。一些方法涉及使用通常采用基体匹配外部校准和认证参考物质对多个元素进行定量。其他方法则将基于 ETV 温度程序蒸发步骤中产生的每个分析物峰的面积的定性多元素分析与基于主成分分析或线性判别分析的多元分析相结合。在所有情况下,均使用氩发射线进行内标化,首先补偿样品对等离子体的加载效应。本文还提供了在未来法医环境中利用 ETV-ICPOES 的展望。

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