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Magnetic–Plasmonic Nanocomposites as Versatile Substrates for Surface–enhanced Raman Scattering (SERS) Spectroscopy

  • Ecem Tiryaki (Corresponding author)
  • , Tolga Zorlu (Corresponding author)
  • , Ramon A. Alvarez-Puebla (Corresponding author)

Publications: Contribution to journalReviewPeer Reviewed

Abstract

Surface–enhanced Raman scattering (SERS) spectroscopy, a highly sensitive technique for detecting trace–level analytes, relies on plasmonic substrates. The choice of substrate, its morphology, and the excitation wavelength are crucial in SERS applications. To address advanced SERS requirements, the design and use of efficient nanocomposite substrates have become increasingly important. Notably, magnetic–plasmonic (MP) nanocomposites, which combine magnetic and plasmonic properties within a single particle system, stand out as promising nanoarchitectures with versatile applications in nanomedicine and SERS spectroscopy. In this review, we present an overview of MP nanocomposite fabrication methods, explore surface functionalization strategies, and evaluate their use in SERS. Our focus is on how different nanocomposite designs, magnetic and plasmonic properties, and surface modifications can significantly influence their SERS-related characteristics, thereby affecting their performance in specific applications such as separation, environmental monitoring, and biological applications. Reviewing recent studies highlights the multifaceted nature of these materials, which have great potential to transform SERS applications across a range of fields, from medical diagnostics to environmental monitoring. Finally, we discuss the prospects of MP nanocomposites, anticipating favorable developments that will make substantial contributions to various scientific and technological areas.

Original languageEnglish
Article numbere202303987
JournalChemistry - A European Journal
Volume30
Issue number24
Early online date31 Jan 2024
DOIs
Publication statusPublished - 25 Apr 2024

Funding

This research was supported by the projects PID2020‐120306RB‐I00 and PID2020‐113704RB‐I00 (funded by MCIN/AEI/10.13039/501100011033), PDC2021‐121787‐I00 (funded by MCIN/AEI/10.13039/501100011033 and European Union Next Generation EU/PRTR), 2020SGR00166 (funded by Generalitat de Cataluña) and 2021PFR‐URV‐B2‐02 (funded by Universitat Rovira I Virgili).

Austrian Fields of Science 2012

  • 104008 Catalysis
  • 104015 Organic chemistry
  • 104026 Spectroscopy

Keywords

  • Magnetic materials
  • Magneto–plasmonic nanocomposites
  • Plasmonic materials
  • SERS

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