Giant Raman Scattering on Plasmon Metal Surfaces as a Method to Control Their Functional and Supramolecular Structural Characteristics

Fundamentals of surface-enhanced Raman spectroscopy/scattering have been developed and possibility of its application to analyze some structural characteristics of surfaces and agglomerates of plasmonic metal nanostructures has been considered. A remote nondestructive express method based on surface...

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Veröffentlicht in:JETP letters 2023-08, Vol.118 (4), p.249-254
Hauptverfasser: Kovalets, N. P., Razumovskaya, I. V., Bedin, S. A., Naumov, A. V.
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creator Kovalets, N. P.
Razumovskaya, I. V.
Bedin, S. A.
Naumov, A. V.
description Fundamentals of surface-enhanced Raman spectroscopy/scattering have been developed and possibility of its application to analyze some structural characteristics of surfaces and agglomerates of plasmonic metal nanostructures has been considered. A remote nondestructive express method based on surface-enhanced Raman spectroscopy has been presented to control the degree of local cracking of a metal coating and the effect of defects/cracks on the conductivity of a thin metallized film (uniaxially stretched polyethylene terephthalate track-etched membrane with a 50-nm silver coating).
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subjects Atomic
Biological and Medical Physics
Biophysics
Coating effects
Control methods
Metal coatings
Metal surfaces
Metallizing
Molecular
Nondestructive testing
Optical and Plasma Physics
Optics and Laser Physics
Particle and Nuclear Physics
Physics
Physics and Astronomy
Polyethylene terephthalate
Quantum Information Technology
Raman spectra
Raman spectroscopy
Silver
Solid State Physics
Spintronics
title Giant Raman Scattering on Plasmon Metal Surfaces as a Method to Control Their Functional and Supramolecular Structural Characteristics
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