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March 13, 2026ACS Applied Optical Materials4 citations

Forensic Detection: A Comprehensive Review of SERS Mechanisms and Applications

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KMKarishma MuraliDMDhatchayani MuruganRPRavi Pathak

Key Points

  • This review aims to evaluate the effectiveness of SERS in forensic investigations and its technological advancements.
  • Critical examination of recent literature on SERS applications in forensics
  • Evaluation of different nanoengineered plasmonic structures for signal enhancement
  • Discussion of operational simplicity and validation requirements for SERS in forensic contexts
  • SERS demonstrates ultrahigh sensitivity and single-molecule detection capability
  • Effective in diverse forensic applications including gunshot residue and drug identification
  • Advancements in substrate design enhance signal and support operational ease

Abstract

Forensic investigations increasingly demand analytical techniques that are rapid, highly sensitive, and nondestructive, while remaining reliable for complex, trace-level, and degraded evidence. Surface-enhanced Raman spectroscopy (SERS) has emerged as a powerful analytical platform that addresses these requirements by providing molecular fingerprinting with ultrahigh sensitivity and enabling single-molecule detection. This review critically examines recent progress in forensic SERS and highlights its expanding role across diverse forensic applications. Few examples are questioned in document analysis and ink discrimination, fingerprint imaging and chemical mapping, biological trace evidence, gunshot residue and explosive detection, and illicit drug identification in various complex matrices. Nanoengineered plasmonic architectures as advanced SERS substrates, ranging from silver and gold nanocubes, nanorods, nanopastes, and sol–gel capillaries to adhesive nanofilms and flexible “place-and-play” platforms, have shown signal enhancement and operational simplicity. This review also discusses current limitations and validation requirements and outlines technological pathways forward, including hybrid analytical systems, microfluidic and lab-on-a-chip SERS devices, AI-assisted spectral libraries, and sustainable, low-cost substrate designs. With these developments, SERS is increasingly deployable and transformative, positioning it as an analytical platform for routine implementation in next-generation forensic science.

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Cite This Study

Murali et al. (2026) studied this question.

synapsesocial.com/papers/69b3abe702a1e69014ccd2cbhttps://doi.org/10.1021/acsaom.6c00017
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