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  4. Plasmon-less surface enhanced Raman spectra induced by self-organized networks of silica nanoparticles produced by femtosecond lasers
 
research article

Plasmon-less surface enhanced Raman spectra induced by self-organized networks of silica nanoparticles produced by femtosecond lasers

Bellouard, Yves  
•
Block, Erica  
•
Squier, Jeff
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2017
Optics Express

Raman spectroscopy is the workhorse for label-free analysis of molecules. It relies on the inelastic scattering of incoming monochromatic light impinging molecules of interest. This effect leads to a very weak emission of light spectrum that provides a signature of the molecules being observed. Considerable efforts have been made over the last decades, in particular with the development of Surface Enhanced Raman Spectroscopy (SERS), to enhance the intensity of the emitted signal so that ultimately, traces of molecules can be detected. Here, we show that dense self-organized networks of quasi-monodisperse nanoparticles redepositing during femtosecond laser ablation of trenches in fused silica can lead to a significant field enhancement effect, enabling the Raman detection of a single-molecule layer deposited on the surface (so called monolayer). Unlike previously reported for SERS experiments, here, there is no metal layer promoting plasmonics effects causing localized field enhancement. The method for producing SERS substrates is therefore quite straightforward and low cost. (C) 2017 Optical Society of America

  • Details
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Type
research article
DOI
10.1364/Oe.25.009587
Web of Science ID

WOS:000400665800009

Author(s)
Bellouard, Yves  
Block, Erica  
Squier, Jeff
Gobet, Jean
Date Issued

2017

Publisher

Optical Soc Amer

Published in
Optics Express
Volume

25

Issue

9

Start page

9587

End page

9594

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
GALATEA  
Available on Infoscience
May 30, 2017
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/137902
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