Molecular Relaxation of Binary Systems LiNO3–LiClO4, NaNO3–NaNO2, K2CO3–K2SO4
- Autores: Aliev A.R.1, Akhmedov I.R.1,2, Kakagasanov M.G.1,2, Aliev Z.A.1, Amirov A.M.2
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Afiliações:
- Amirkhanov Institute of Physics, Dagestan Scientific Center
- Analytical Center of Collective Use, Dagestan Scientific Center
- Edição: Volume 59, Nº 1 (2018)
- Páginas: 80-86
- Seção: Article
- URL: https://bakhtiniada.ru/0022-4766/article/view/161838
- DOI: https://doi.org/10.1134/S0022476618010122
- ID: 161838
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Resumo
Molecular relaxation in binary systems LiNO3–LIClO4, NaNO3–NaNO2, and K2CO3–K2SO4 is studied using Raman spectroscopy. The relaxation time of ν1(A) vibrations for NO3− and CO32− anions is found to be shorter in LiNO3–LIClO4, NaNO3–NaNO2, K2CO3–K2SO4 than in LiNO3, NaNO3, K2CO3, respectively. Higher relaxation rate is explained by additional relaxation of excited vibrational states. This mechanism is associated with vibrational excitation of the second anion ( ClO4−, NO2−, SO42− ) and “production” of a lattice phonon. This relaxation mechanism is possible when the difference between the frequencies of these vibrations falls into the region of fairly high density of states of the phonon spectrum.
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Sobre autores
A. Aliev
Amirkhanov Institute of Physics, Dagestan Scientific Center
Autor responsável pela correspondência
Email: amilaliev@rambler.ru
Rússia, Makhachkala
I. Akhmedov
Amirkhanov Institute of Physics, Dagestan Scientific Center; Analytical Center of Collective Use, Dagestan Scientific Center
Email: amilaliev@rambler.ru
Rússia, Makhachkala; Makhachkala
M. Kakagasanov
Amirkhanov Institute of Physics, Dagestan Scientific Center; Analytical Center of Collective Use, Dagestan Scientific Center
Email: amilaliev@rambler.ru
Rússia, Makhachkala; Makhachkala
Z. Aliev
Amirkhanov Institute of Physics, Dagestan Scientific Center
Email: amilaliev@rambler.ru
Rússia, Makhachkala
A. Amirov
Analytical Center of Collective Use, Dagestan Scientific Center
Email: amilaliev@rambler.ru
Rússia, Makhachkala
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