On the influence of clustering processes in the liquid structure on Raman scattering

A mathematical relation has been obtained that makes it possible to calculate the polarizability of a polyatomic molecule in the structure of a cluster. It is shown that the scattered frequencies in the Raman effect are proportional to the square root of the number of particles in the most probable...

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Main Authors: Melnikov Gennady, Ignatenko Nikolay, Petrova Lyudmila, Manzhos Olga, Gromkov Andrey
Format: Article
Language:English
Published: EDP Sciences 2021-01-01
Series:MATEC Web of Conferences
Online Access:https://www.matec-conferences.org/articles/matecconf/pdf/2021/13/matecconf_mpm21_01010.pdf
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spelling doaj-1f9368dc0e314f5ba8ae9d06100507eb2021-10-05T13:16:47ZengEDP SciencesMATEC Web of Conferences2261-236X2021-01-013440101010.1051/matecconf/202134401010matecconf_mpm21_01010On the influence of clustering processes in the liquid structure on Raman scatteringMelnikov Gennady0Ignatenko Nikolay1Petrova Lyudmila2Manzhos Olga3Gromkov Andrey4Southwest State UniversitySouthwest State UniversitySouthwest State UniversitySouthwest State UniversitySouthwest State UniversityA mathematical relation has been obtained that makes it possible to calculate the polarizability of a polyatomic molecule in the structure of a cluster. It is shown that the scattered frequencies in the Raman effect are proportional to the square root of the number of particles in the most probable (or average) cluster in the liquid structure. The appearance of frequencies in the far part of the Raman spectrum region is caused by the processes of intermolecular interactions in clusters and the processes of disintegration or formation of cluster systems in the structure of disordered condensed media. According to the proposed model and experimental data in the frequency range 20–1300 cm-1, it has been carried out the comparison of the values of the calculated frequencies of the Raman spectrum and their mutual position, which has shown the adequacy of the proposed model. The cluster model of liquid structure and the methods of mathematical statistics and statistical thermodynamics make it possible to expand the capabilities of the classical theory of Raman scattering in liquids and to predict the position of spectral bands in Raman spectra in the far long-wavelength region of the spectrum. It is revealed that the formation and breakdown of the most probable clusters is associated with the correlations of the most stable clusters (in terms of the number of particles) in a condensed medium with the Fibonacci numbers.https://www.matec-conferences.org/articles/matecconf/pdf/2021/13/matecconf_mpm21_01010.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Melnikov Gennady
Ignatenko Nikolay
Petrova Lyudmila
Manzhos Olga
Gromkov Andrey
spellingShingle Melnikov Gennady
Ignatenko Nikolay
Petrova Lyudmila
Manzhos Olga
Gromkov Andrey
On the influence of clustering processes in the liquid structure on Raman scattering
MATEC Web of Conferences
author_facet Melnikov Gennady
Ignatenko Nikolay
Petrova Lyudmila
Manzhos Olga
Gromkov Andrey
author_sort Melnikov Gennady
title On the influence of clustering processes in the liquid structure on Raman scattering
title_short On the influence of clustering processes in the liquid structure on Raman scattering
title_full On the influence of clustering processes in the liquid structure on Raman scattering
title_fullStr On the influence of clustering processes in the liquid structure on Raman scattering
title_full_unstemmed On the influence of clustering processes in the liquid structure on Raman scattering
title_sort on the influence of clustering processes in the liquid structure on raman scattering
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2021-01-01
description A mathematical relation has been obtained that makes it possible to calculate the polarizability of a polyatomic molecule in the structure of a cluster. It is shown that the scattered frequencies in the Raman effect are proportional to the square root of the number of particles in the most probable (or average) cluster in the liquid structure. The appearance of frequencies in the far part of the Raman spectrum region is caused by the processes of intermolecular interactions in clusters and the processes of disintegration or formation of cluster systems in the structure of disordered condensed media. According to the proposed model and experimental data in the frequency range 20–1300 cm-1, it has been carried out the comparison of the values of the calculated frequencies of the Raman spectrum and their mutual position, which has shown the adequacy of the proposed model. The cluster model of liquid structure and the methods of mathematical statistics and statistical thermodynamics make it possible to expand the capabilities of the classical theory of Raman scattering in liquids and to predict the position of spectral bands in Raman spectra in the far long-wavelength region of the spectrum. It is revealed that the formation and breakdown of the most probable clusters is associated with the correlations of the most stable clusters (in terms of the number of particles) in a condensed medium with the Fibonacci numbers.
url https://www.matec-conferences.org/articles/matecconf/pdf/2021/13/matecconf_mpm21_01010.pdf
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