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Updated: Jul 9, 2026

A Filter-based Surface Enhanced Raman Spectroscopic Assay for Rapid Detection of Chemical Contaminants
Published on: February 19, 2016
Liquid-phase microextraction assisted surface-enhanced Raman spectroscopy: On-site quantification of amphetamine-type
Tongfei Gao1, Zhuangzhuang Dong2, Jianhua Xiong2
1Key Laboratory of Evidence Science, China University of Political Science and Law, Ministry of Education, Beijing, 100088, China; Collaborative Innovation Center of Judicial Civilization, Beijing, 100088, China; Department of Forensic Medicine, Huazhong University of Science and Technology, #13 Hangkong Road, Wuhan, 430030, China.
None:
The widespread abuse of amphetamine-type stimulants (ATS) poses severe threats to public security and health, necessitating rapid and accurate on-site detection of ATS specially at crime scenes for criminal detection and illicit drug control. However, detection of complex samples at crime scenes by surface-enhanced Raman scattering (SERS) is still a challenge because of the matrix effect. Flat membrane-based liquid-phase microextraction (FM-LPME) enables efficient separation and sufficient sample clean-up. FM-LPME was used to overcome the matrix effect on SERS, and a sensing platform of FM-LPME-SERS was developed for rapid and accurate detection of ATS. The effect of key operation factors on FM-LPME performance was investigated. ENB and NPOE were identified as efficient supported liquid membrane solvent. For SERS, silver nanoparticles synthesized by sodium citrate reduction displayed superior enhancement in SERS signal, and the SERS signal for ATS could be further improved by sodium bromide. Finally, a quantitative model based on partial least squares regression was established to analyze the FM-LPME-SERS sensing data, which displayed satisfactory analytical performance for blood spot, urine, and wastewater samples with acceptable detection limit (0.011-0.570 μg mL-1), high repeatability (RSD ≤13%), and satisfactory accuracy (90-114%). This method was successfully applied to analyze wastewater samples from a drug production site provided by the Public Security Bureau in XX Province. Therefore, FM-LPME-SERS is a powerful tool for on-site detecting ATS in complex samples, which is of great importance for forensic science and public security. We believe this work will expand the applicability of SERS for complex samples.
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