Halide-metal complexes at plasmonic interfaces create new decay pathways for plasmons and excited molecules
File(s)Stefancu_manuscript_revised2.docx (2.39 MB)
Accepted version
Author(s)
Type
Journal Article
Abstract
We show that by modifying the chemical interface of silver nanoparticles (AgNPs) with halide ions, it is possible to tune the total decay rate of adsorbed excited molecules and the plasmon damping rate. Through single-molecule surface-enhanced Raman scattering and surface-enhanced fluorescence enhancement factors of crystal violet (CV) and rhodamine 6G (R6G), we show that I–-modified AgNPs (AgNPs@I) and Br–-modified AgNPs (AgNPs@Br) lead to an increase in the total decay rate of excited CV and R6G by a factor between ∼1.6–2.6, compared to Cl–-modified AgNPs (AgNPs@Cl). In addition, we found that the chemical interface damping, which characterizes the plasmon resonance decay into surface states, is stronger on AgNPs@I and AgNPs@Br when compared to AgNPs@Cl. These results point toward the formation of metal–halide surface complexes. These new interfacial states can accept electrons from both excited molecular orbitals and surface plasmon excitations, completely altering the electronic dynamics and reactivity of plasmonic interfaces.
Date Issued
2022-02-10
Date Acceptance
2022-02-01
Citation
ACS Photonics, 2022, 9 (3), pp.895-904
ISSN
2330-4022
Publisher
American Chemical Society (ACS)
Start Page
895
End Page
904
Journal / Book Title
ACS Photonics
Volume
9
Issue
3
Copyright Statement
© 2022 American Chemical Society. This document is the Accepted Manuscript version of a Published Work that appeared in final form in ACS Photonics, after peer review and technical editing by the publisher. To access the final edited and published work see https://doi.org/10.1021/acsphotonics.1c01714
Identifier
https://pubs.acs.org/doi/10.1021/acsphotonics.1c01714
Subjects
Science & Technology
Technology
Physical Sciences
Nanoscience & Nanotechnology
Materials Science, Multidisciplinary
Optics
Physics, Applied
Physics, Condensed Matter
Science & Technology - Other Topics
Materials Science
Physics
SERS
SEF
halide ions
decay rate
chemical interface damping
plasmonic interfaces
SURFACE-ENHANCED RAMAN
PARTIAL CHARGE-TRANSFER
SINGLE-MOLECULE
SILVER NANOPARTICLES
METHODOLOGICAL ASPECTS
COLLOIDAL SILVER
ACTIVE-SITES
ADSORPTION
SCATTERING
0205 Optical Physics
0206 Quantum Physics
0906 Electrical and Electronic Engineering
Publication Status
Published
Article Number
acsphotonics.1c01714
Date Publish Online
2022-02-10