4.3 Article

Discrimination of phenethylamine regioisomers and structural analogues by Raman spectroscopy

Journal

JOURNAL OF FORENSIC SCIENCES
Volume 66, Issue 1, Pages 365-374

Publisher

WILEY
DOI: 10.1111/1556-4029.14563

Keywords

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Funding

  1. National Key Research and Development Program of China [2016YFC0800903]

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This study demonstrated the ability of Raman spectroscopy to distinguish phenethylamines, even for highly similar structural analogues. Raman showed high distinguishing ability for phenethylamine regioisomers with different substitution positions and structural analogues with different groups. The study also validated the practical use of the Raman method in forensic field by correctly identifying 95% of seized samples.
In this study, the Raman spectra of 21 phenethylamines were obtained using far-red excitation (785 nm). The distinguishing ability of Raman for phenethylamines, especially for phenethylamine regioisomers and structural analogues, was investigated. Here, the evaluation of a cross section of Raman spectra demonstrated that all types of phenethylamines were distinguishable, even for certain structural analogues with high spectrum similarity. Raman exhibited high distinguishing ability for phenethylamine regioisomers that differ in the substitution position of halogen, methoxy, alkyl, or other substituted groups; as well as for structural analogues containing different groups, such as furanyl, 2,3-dihydrofuranyl, halogen, and alkyl substituted at the same position. The Raman spectra for homologues with differences in only a methyl group were found to be highly similar; however, their spectra demonstrated small but detectable differences. Four analogue mixtures and 59 seized samples were also analyzed to study the practical use of the Raman method in forensic field. 95% of the seized samples were correctly identified, which significantly validated the ability of Raman method in identifying the correct isomers. Accordingly, this study provides a non-destructive, high-throughput and minimal sample preparation technique for the discrimination of phenethylamines.

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