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Porous Au–Ag nanoparticles from galvanic replacement applied as single‐particle SERS probe for quantitative monitoring

Lu Wang, Sergiy Patskovsky, Bastien Gauthier-Soumis and Michel Meunier

Article (2021)

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Abstract

Plasmonic nanostructures have raised the interest of biomedical applications of surface-enhanced Raman scattering (SERS). To improve the enhancement and produce sensitive SERS probes, porous Au–Ag alloy nanoparticles (NPs) are synthesized by dealloying Au–Ag alloy NP-precursors with Au or Ag core in aqueous colloidal environment through galvanic replacement reaction. The novel designed core–shell Au–Ag alloy NP-precursors facilitate controllable synthesis of porous nanostructure, and dealloying degree during the reaction has significant effect on structural and spectral properties of dealloyed porous NPs. Narrow-dispersed dealloyed NPs are obtained using NPs of Au/Ag ratio from 10/90 to 40/60 with Au and Ag core to produce solid core@porous shell and porous nanoshells, having rough surface, hollowness, and porosity around 30–60%. The clean nanostructure from colloidal synthesis exhibits a redshifted plasmon peak up to near-infrared region, and the large accessible surface induces highly localized surface plasmon resonance and generates robust SERS activity. Thus, the porous NPs produce intensely enhanced Raman signal up to 68-fold higher than 100 nm AuNP enhancement at single-particle level, and the estimated Raman enhancement around 7800, showing the potential for highly sensitive SERS probes. The single-particle SERS probes are effectively demonstrated in quantitative monitoring of anticancer drug Doxorubicin release.

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Additional Information: Groupe de recherche: LP2L
Department: Department of Engineering Physics
Research Center: Other
Funders: NSERC
PolyPublie URL: https://publications.polymtl.ca/50082/
Journal Title: Small (vol. 18, no. 1)
Publisher: Wiley
DOI: 10.1002/smll.202105209
Official URL: https://doi.org/10.1002/smll.202105209
Date Deposited: 18 Apr 2023 14:59
Last Modified: 19 Mar 2026 14:07
Cite in APA 7: Wang, L., Patskovsky, S., Gauthier-Soumis, B., & Meunier, M. (2021). Porous Au–Ag nanoparticles from galvanic replacement applied as single‐particle SERS probe for quantitative monitoring. Small, 18(1), 2105209 (13 pages). https://doi.org/10.1002/smll.202105209

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