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

Authors
Lee, YoonjeongKim, JaejinJeong, HaeseongChung, Hoeil
Issue Date
Aug-2023
Publisher
TAYLOR & FRANCIS INC
Keywords
Through-container Raman analysis; spatially offset Raman scattering; axially perpendicular offset scheme; glass container; plastic container
Citation
APPLIED SPECTROSCOPY REVIEWS, v.58, no.7, pp 509 - 524
Pages
16
Indexed
SCIE
SCOPUS
Journal Title
APPLIED SPECTROSCOPY REVIEWS
Volume
58
Number
7
Start Page
509
End Page
524
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/211088
DOI
10.1080/05704928.2022.2051535
ISSN
0570-4928
1520-569X
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.
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