Literature DB >> 30056358

SERS and DFT study of indigo adsorbed on silver nanostructured surface.

Viviana Mollica Nardo1, Alessandro Sinopoli2, Lara Kabalan2, Rosina C Ponterio3, Franz Saija1, Sebastiano Trusso1.   

Abstract

Surface-enhanced Raman spectroscopy has emerged as a widely used tool in the identification of organic dyes in works of art. Indigo is among the most used organic pigment, its identification can therefore give important information about the provenience and the making of the investigated work of art. In this work, we combine Surface Enhanced Raman Spectroscopy (SERS) experiments with density functional theory (DFT) computations of the Raman frequencies of indigo and an indigo molecule adsorbed onto a silver surface made of 16 silver atoms. The SERS spectrum of a molecule adsorbed on a metallic surface, in fact, can differ from the corresponding Raman one. The knowledge and the comprehension of the SERS spectrum then are mandatory in dyes identification. Experimental SERS spectra were acquired using ad hoc SERS active substrates consisting of pulsed laser ablated silver nanoparticles deposited onto a polishing sheet. The polishing sheet surface roughness is able to remove some pigments grains from the surface of a work of art without damage. DFT calculations provide a good description of the observed SERS spectra, in particular, the indigo-Ag16 structure gives a better description with respect to structures where only one or two silver atoms attached to the indigo molecule are considered.
Copyright © 2018 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Computational Raman study; Indigo pigment; SERS-experiment

Year:  2018        PMID: 30056358     DOI: 10.1016/j.saa.2018.07.059

Source DB:  PubMed          Journal:  Spectrochim Acta A Mol Biomol Spectrosc        ISSN: 1386-1425            Impact factor:   4.098


  1 in total

1.  Role of pH on Nanostructured SERS Active Substrates for Detection of Organic Dyes.

Authors:  Viviana Mollica Nardo; Vincenzo Renda; Sebastiano Trusso; Rosina Celeste Ponterio
Journal:  Molecules       Date:  2021-04-19       Impact factor: 4.411

  1 in total

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