Substrates for Surface-Enhanced Raman Scattering Formed on Nanostructured Non-Metallic Materials: Preparation and Characterization

Author:

Krajczewski Jan,Ambroziak Robert,Kudelski AndrzejORCID

Abstract

The efficiency of the generation of Raman spectra by molecules adsorbed on some substrates (or placed at a very close distance to some substrates) may be many orders of magnitude larger than the efficiency of the generation of Raman spectra by molecules that are not adsorbed. This effect is called surface-enhanced Raman scattering (SERS). In the first SERS experiments, nanostructured plasmonic metals have been used as SERS-active materials. Later, other types of SERS-active materials have also been developed. In this review article, various SERS substrates formed on nanostructured non-metallic materials, including non-metallic nanostructured thin films or non-metallic nanoparticles covered by plasmonic metals and SERS-active nanomaterials that do not contain plasmonic metals, are described. Significant advances for many important applications of SERS spectroscopy of substrates based on nanostructured non-metallic materials allow us to predict a large increase in the significance of such nanomaterials in the near future. Some future perspectives on the application of SERS substrates utilizing nanostructured non-metallic materials are also presented.

Funder

Wydział Chemii, Uniwersytet Warszawski

Publisher

MDPI AG

Subject

General Materials Science,General Chemical Engineering

Reference101 articles.

1. Single Molecule Detection Using Surface-Enhanced Raman Scattering (SERS)

2. Probing Single Molecules and Single Nanoparticles by Surface-Enhanced Raman Scattering

3. Principles of Surface-Enhanced Raman Spectroscopy: And Related Plasmonic Effects;Le Ru,2009

4. Surface-Enhanced Vibrational Spectroscopy;Aroca,2006

5. Plasmonic nanoparticles in chemical analysis

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