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Raman and SERS identification of YABA, a popular street drug

Applications | 2021 | MetrohmInstrumentation
RAMAN Spectroscopy
Industries
Forensics
Manufacturer
Metrohm

Summary

Importance of the Topic


Rapid on-site identification of illicit substances is vital to support law enforcement, ensure operator safety, and accelerate forensic workflows. Yaba tablets combine potent stimulants with colored coatings and excipients, creating analytical challenges that portable, dual-mode techniques can address.

Aims and Overview of the Study


This application highlights a two-step approach to identify both major and minor active ingredients in Yaba tablets using one handheld device. The objective is to demonstrate rapid, accurate detection of caffeine (dominant) and methamphetamine (trace) without extensive sample preparation.

Methodology


Analysis involved two complementary techniques:
  • Bulk Raman Spectroscopy: Direct measurement of intact tablets using the MIRA DS right-angle attachment for swift, nondestructive identification of the primary component.
  • Surface-Enhanced Raman Spectroscopy (SERS): Tablet fragments dissolved in ethyl acetate, applied onto silver P-SERS strips to amplify signals of the minor alkaloid methamphetamine.

Instrumentation Used


  • MIRA DS Advanced handheld Raman spectrometer featuring Orbital-Raster-Scan technology and a built-in illicit materials library.
  • ID Kit – Ag P-SERS, containing silver P-SERS strips, disposable spatula, dropper, and sample vials for SERS sample preparation.

Main Results and Discussion


Raman analysis produced a high Hit Quality Index (HQI = 0.81) for caffeine, confirming its prevalence. Subsequent SERS testing successfully detected methamphetamine with clear spectral correlation to library references. Both workflows delivered confident identifications in under a minute per test, even through colored tablet coatings.

Benefits and Practical Applications of the Method


  • Nondestructive, rapid screening of tablets and powders in field environments.
  • Presumptive identification of both bulk and trace compounds using one compact instrument.
  • Enhanced operator protection by enabling through-container analysis and reducing handling of unknown substances.

Future Trends and Potential Applications


Advances may include integration of machine learning for automated spectral interpretation, development of next-generation SERS substrates to broaden analyte coverage, and expansion of dual-mode handheld analyzers for diverse illicit and hazardous materials. These innovations will further streamline on-site forensic and security operations.

Conclusion


The MIRA DS handheld Raman system, combined with SERS capability, delivers a robust, efficient solution for on-site presumptive testing of complex drug matrices. Its dual-analysis approach enables accurate detection of both major and minor components in a single workflow, supporting rapid decision-making in law enforcement and forensic contexts.

Content was automatically generated from an orignal PDF document using AI and may contain inaccuracies.

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