Direct through-container Raman spectroscopic analyses of samples housed in glass and plastic containers: a review

IF 5.4 2区 化学 Q1 INSTRUMENTS & INSTRUMENTATION
Yoonjeong Lee, Jaejin Kim, Haeseong Jeong, Hoeil Chung
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引用次数: 2

Abstract

Abstract This review summarizes current trends in direct through-container Raman spectroscopic analyses of housed samples without external sampling. Nonsampling Raman measurement is a relatively simple technique that avoids damaging or contaminating a sample’s commercial value by opening the container. The most demanding aspect of such techniques is the need to minimize or eliminate spectral interference from the container when analyzing the housed samples. To reduce the spectral peaks associated with the container, which can be either fluorescent or nonfluorescent, various measurement configurations, including spatially offset Raman scattering and/or algorithm-based background subtractions, have been employed. Here, reports on the former technique are categorized according to their analytical purposes into qualitative chemical identification and quantitative determination of component concentrations of housed samples. Studies in each group are further classified by container material, either glass or polymer (plastic), as the optical properties of each, as well as the dominance of their Raman spectral peaks, are different. Prospects for advances and unresolved issues in through-container Raman measurement are also discussed.
直接通过容器拉曼光谱分析的样品安置在玻璃和塑料容器:回顾
摘要本文综述了目前无外部采样的直接通过容器拉曼光谱分析方法的发展趋势。非采样拉曼测量是一种相对简单的技术,通过打开容器避免损坏或污染样品的商业价值。这种技术最苛刻的方面是,在分析所装样品时,需要最大限度地减少或消除来自容器的光谱干扰。为了减少与荧光或非荧光容器相关的光谱峰,采用了各种测量配置,包括空间偏移拉曼散射和/或基于算法的背景减法。在这里,关于前一种技术的报告根据其分析目的分为定性化学鉴定和定量测定样品的成分浓度。每一组的研究根据容器材料进一步分类,要么是玻璃,要么是聚合物(塑料),因为每种材料的光学性质以及它们的拉曼光谱峰的主导地位都是不同的。讨论了通过容器拉曼测量的发展前景和尚未解决的问题。
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来源期刊
Applied Spectroscopy Reviews
Applied Spectroscopy Reviews 工程技术-光谱学
CiteScore
13.80
自引率
1.60%
发文量
23
审稿时长
1 months
期刊介绍: Applied Spectroscopy Reviews provides the latest information on the principles, methods, and applications of all the diverse branches of spectroscopy, from X-ray, infrared, Raman, atomic absorption, and ESR to microwave, mass, NQR, NMR, and ICP. This international, single-source journal presents discussions that relate physical concepts to chemical applications for chemists, physicists, and other scientists using spectroscopic techniques.
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