Articles producció científica> Química Física i Inorgànica

Unveiling multimodal hot carrier excitation in plasmonic bimetallic Au@Ag nanostars for photochemistry and SERS sensing

  • Identification data

    Identifier: imarina:9389458
    Authors:
    Negrín-Montecelo YElsaidy AGiráldez-Martínez JCarbó-Argibay EWang ZGovorov AOAlvarez-Puebla RACorrea-Duarte MABesteiro LV
    Abstract:
    Plasmonic nanostructures stand at the forefront of nanophotonics research, particularly in sensing and energy conversion applications. Their unique ability to confine light energy at the nanoscale makes them indispensable for a wide array of technological advancements. The study of these structures often makes use of different materials and, even more extensively, explores new shapes and configurations to extend our common repertoire of useful nanophotonics tools. Exploring the creation of bimetallic plasmonic nanostructures combines these two dimensions determining the space of possible plasmonic resonators and opens the possibility of tailoring systems with behavior unavailable to single-metal plasmonic structures. In this paper, we delve into the exploration of bimetallic systems employing plasmonic nanostars. These structures have demonstrated remarkable capabilities for surface-enhanced Raman scattering (SERS) spectroscopy and photochemistry, due to the strong plasmonic response of their peaks, whose disposition following a spherical symmetry makes them largely polarization- and orientation-insensitive. Herein, we report the colloidal synthesis of two different water-stable Au@Ag nanostars, explore their performance as photocatalysts and SERS substrates, and provide an in-depth account of their non-trivial physical response.
  • Others:

    Author, as appears in the article.: Negrín-Montecelo Y; Elsaidy A; Giráldez-Martínez J; Carbó-Argibay E; Wang Z; Govorov AO; Alvarez-Puebla RA; Correa-Duarte MA; Besteiro LV
    Department: Química Física i Inorgànica
    URV's Author/s: Alvarez Puebla, Ramon Angel
    Keywords: Absorption Conversion Efficiency Electrons Field enhancement Hot-electrons Nanocrystals Nanohybrids Nanoparticles Nanostructures Photocatalysis Photocatalyst Plasmonic Plasmonics Silver Surface-enhanced raman scattering (sers) Tio
    Abstract: Plasmonic nanostructures stand at the forefront of nanophotonics research, particularly in sensing and energy conversion applications. Their unique ability to confine light energy at the nanoscale makes them indispensable for a wide array of technological advancements. The study of these structures often makes use of different materials and, even more extensively, explores new shapes and configurations to extend our common repertoire of useful nanophotonics tools. Exploring the creation of bimetallic plasmonic nanostructures combines these two dimensions determining the space of possible plasmonic resonators and opens the possibility of tailoring systems with behavior unavailable to single-metal plasmonic structures. In this paper, we delve into the exploration of bimetallic systems employing plasmonic nanostars. These structures have demonstrated remarkable capabilities for surface-enhanced Raman scattering (SERS) spectroscopy and photochemistry, due to the strong plasmonic response of their peaks, whose disposition following a spherical symmetry makes them largely polarization- and orientation-insensitive. Herein, we report the colloidal synthesis of two different water-stable Au@Ag nanostars, explore their performance as photocatalysts and SERS substrates, and provide an in-depth account of their non-trivial physical response.
    Thematic Areas: Astronomia / física Atomic and molecular physics, and optics Chemistry, physical Condensed matter physics Electrical and electronic engineering Engenharias ii General materials science Materiais Materials science (all) Materials science (miscellaneous) Materials science, multidisciplinary Nanoscience & nanotechnology Nanoscience and nanotechnology Physics, applied Química
    licence for use: https://creativecommons.org/licenses/by/3.0/es/
    Author's mail: ramon.alvarez@urv.cat
    Author identifier: 0000-0003-4770-5756
    Record's date: 2025-02-24
    Paper version: info:eu-repo/semantics/publishedVersion
    Paper original source: Nano Research. 17 (12): 10355-10362
    APA: Negrín-Montecelo Y; Elsaidy A; Giráldez-Martínez J; Carbó-Argibay E; Wang Z; Govorov AO; Alvarez-Puebla RA; Correa-Duarte MA; Besteiro LV (2024). Unveiling multimodal hot carrier excitation in plasmonic bimetallic Au@Ag nanostars for photochemistry and SERS sensing. Nano Research, 17(12), 10355-10362. DOI: 10.1007/s12274-024-6950-5
    Licence document URL: https://repositori.urv.cat/ca/proteccio-de-dades/
    Entity: Universitat Rovira i Virgili
    Journal publication year: 2024
    Publication Type: Journal Publications
  • Keywords:

    Atomic and Molecular Physics, and Optics,Chemistry, Physical,Condensed Matter Physics,Electrical and Electronic Engineering,Materials Science (Miscellaneous),Materials Science, Multidisciplinary,Nanoscience & Nanotechnology,Nanoscience and Nanotechnology,Physics, Applied
    Absorption
    Conversion
    Efficiency
    Electrons
    Field enhancement
    Hot-electrons
    Nanocrystals
    Nanohybrids
    Nanoparticles
    Nanostructures
    Photocatalysis
    Photocatalyst
    Plasmonic
    Plasmonics
    Silver
    Surface-enhanced raman scattering (sers)
    Tio
    Astronomia / física
    Atomic and molecular physics, and optics
    Chemistry, physical
    Condensed matter physics
    Electrical and electronic engineering
    Engenharias ii
    General materials science
    Materiais
    Materials science (all)
    Materials science (miscellaneous)
    Materials science, multidisciplinary
    Nanoscience & nanotechnology
    Nanoscience and nanotechnology
    Physics, applied
    Química
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