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Research Article | Publishing Language: Chinese | Open Access

1H-qNMR for the Quantification of Heroin, Cocaine and Common Adulterants

Chunhui SONG1Wei JIA2Cuimei LIU2( )Zhendong HUA2
National Anti-drug Laboratory Beijing Regional Center, Beijing 100164, China
Key Laboratory of Drug Monitoring and Control, Drug Intelligence and Forensic Center, Ministry of Public Security, P. R. C., Beijing 100193, China
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Abstract

For the first time, a general 1H-quantitative nuclear magnetic resonance spectrometry (1H-qNMR) method for the simultaneous quantification of heroin hydrochloride, cocaine, cocaine hydrochloride, and 7 adulterants was established after the discussion of some key quantitative parameters. According to the solubility and stability of heroin hydrochloride, cocaine, and cocaine hydrochloride in different deuterated solvents, and the spectra comparison of seized samples and reference materials, dimethylsulfoxide-d6 was selected as the solvent, and 1,3,5-trimethoxybenzene was selected as the internal standard. The signals at δH 6.09 ppm for internal standard 1,3,5-trimethoxybenzene; at δH 6.87, 6.71, 2.24 ppm for heroin hydrochloride; at δH 7.90, 7.64, 5.12, 3.61 ppm for cocaine; and at δH 7.88, 5.49, 2.79 ppm for cocaine hydrochloride were selected as quantitative peaks.The established 1H-qNMR method was applied for the quantification of 168 seized samples, the content of heroin and cocaine were basically consistent with the results of High-performance liquid chromatography. This method is simple, fast, accurate, does not require standard samples, and shows good tolerance and high reproducibility. It can provide new ideas for the quantification and profiling analysis of seized drug samples.

CLC number: DF795.1 Document code: A Article ID: 1008-3650(2025)03-0243-09

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Forensic Science and Technology
Pages 243-251

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Cite this article:
SONG C, JIA W, LIU C, et al. 1H-qNMR for the Quantification of Heroin, Cocaine and Common Adulterants. Forensic Science and Technology, 2025, 50(3): 243-251. https://doi.org/10.16467/j.1008-3650.2024.0040

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Received: 10 November 2023
Revised: 04 May 2024
Published: 26 June 2024
© 2025 The Editorial Office of Forensic Science and Technology

This is an open access article under the terms of the Creative Commons Attribution 4.0 International License (CC BY 4.0, http://creativecommons.org/licenses/by/4.0/).