Calculation of Vibrational Spectra and Thermodynamic Functions of a Natural Zinc Silicate – Willemite

A zinc silicate is in a great demand in modern technology due to its fluorescent, optical and catalytic properties. However, its thermodynamic properties have been studied not sufficiently, and they are focused primarily in the geological and geochemical sciences. An attempt to calculate for a natur...

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Main Authors: N. S. Bekturganov, M. R. Bissengaliyeva, D. B. Gogol
Format: Article
Language:English
Published: al-Farabi Kazakh National University 2013-07-01
Series:Eurasian Chemico-Technological Journal 
Online Access:http://ect-journal.kz/index.php/ectj/article/view/336
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spelling doaj-51d720f56c4a47b2b430c6339a79dc162020-11-24T21:20:51Zengal-Farabi Kazakh National UniversityEurasian Chemico-Technological Journal 1562-39202522-48672013-07-0115322723210.18321/ectj226336Calculation of Vibrational Spectra and Thermodynamic Functions of a Natural Zinc Silicate – WillemiteN. S. Bekturganov0M. R. Bissengaliyeva1D. B. Gogol2National scientific-technological holding “Parasat”, 18 Republic Ave., 010000, Astana, KazakhstanInstitute of problems of complex development of mineral resources, 5 Ippodromnaya Str., 100019, Karaganda, KazakhstanInstitute of problems of complex development of mineral resources, 5 Ippodromnaya Str., 100019, Karaganda, KazakhstanA zinc silicate is in a great demand in modern technology due to its fluorescent, optical and catalytic properties. However, its thermodynamic properties have been studied not sufficiently, and they are focused primarily in the geological and geochemical sciences. An attempt to calculate for a natural zinc silicate willemite (Zn2SiO4) its crystal structure, vibrational properties, phonon states and thermodynamic functions was made in this work. The force constants and vibrational states of the mineral have been calculated in this paper by a combination of the methods of quantum-chemical calculations (MOPAC) with semi-empirical method PM5 and the theory of crystal lattice dynamics (LADY program) with valence force field potential model. Theoretical infrared and Raman spectra of the mineral were simulated on the base of calculated vibrational states. A good agreement between the experimental and theoretical vibrational spectra of the mineral has been achieved. After that the Brillouin zone scanning of the mineral crystal structure was made which is necessary to obtain the information about the whole phonon spectrum in the lattice. Density-of-state function was determined by summation over all the phonon states and used for determination of energetics of the crystal. The values of the basic thermodynamic functions for willemite (heat capacity, entropy and change of enthalpy) over the range of (10-298.15) K have been obtained. The standard values of these functions are: Cp(298.15) = 126 J/(mol•K) (PM5 calculation) and 122.5 J/(mol•K)  (LADY calculation),  Sº(298.15) = 133.4 J/(mol•K) (LADY calculation), and Hº(298.15)–Hº(0) = 21494 J/mol (PM5 calculation). The calculated heat capacity values are in satisfactory agreement with known experimental data.http://ect-journal.kz/index.php/ectj/article/view/336
collection DOAJ
language English
format Article
sources DOAJ
author N. S. Bekturganov
M. R. Bissengaliyeva
D. B. Gogol
spellingShingle N. S. Bekturganov
M. R. Bissengaliyeva
D. B. Gogol
Calculation of Vibrational Spectra and Thermodynamic Functions of a Natural Zinc Silicate – Willemite
Eurasian Chemico-Technological Journal 
author_facet N. S. Bekturganov
M. R. Bissengaliyeva
D. B. Gogol
author_sort N. S. Bekturganov
title Calculation of Vibrational Spectra and Thermodynamic Functions of a Natural Zinc Silicate – Willemite
title_short Calculation of Vibrational Spectra and Thermodynamic Functions of a Natural Zinc Silicate – Willemite
title_full Calculation of Vibrational Spectra and Thermodynamic Functions of a Natural Zinc Silicate – Willemite
title_fullStr Calculation of Vibrational Spectra and Thermodynamic Functions of a Natural Zinc Silicate – Willemite
title_full_unstemmed Calculation of Vibrational Spectra and Thermodynamic Functions of a Natural Zinc Silicate – Willemite
title_sort calculation of vibrational spectra and thermodynamic functions of a natural zinc silicate – willemite
publisher al-Farabi Kazakh National University
series Eurasian Chemico-Technological Journal 
issn 1562-3920
2522-4867
publishDate 2013-07-01
description A zinc silicate is in a great demand in modern technology due to its fluorescent, optical and catalytic properties. However, its thermodynamic properties have been studied not sufficiently, and they are focused primarily in the geological and geochemical sciences. An attempt to calculate for a natural zinc silicate willemite (Zn2SiO4) its crystal structure, vibrational properties, phonon states and thermodynamic functions was made in this work. The force constants and vibrational states of the mineral have been calculated in this paper by a combination of the methods of quantum-chemical calculations (MOPAC) with semi-empirical method PM5 and the theory of crystal lattice dynamics (LADY program) with valence force field potential model. Theoretical infrared and Raman spectra of the mineral were simulated on the base of calculated vibrational states. A good agreement between the experimental and theoretical vibrational spectra of the mineral has been achieved. After that the Brillouin zone scanning of the mineral crystal structure was made which is necessary to obtain the information about the whole phonon spectrum in the lattice. Density-of-state function was determined by summation over all the phonon states and used for determination of energetics of the crystal. The values of the basic thermodynamic functions for willemite (heat capacity, entropy and change of enthalpy) over the range of (10-298.15) K have been obtained. The standard values of these functions are: Cp(298.15) = 126 J/(mol•K) (PM5 calculation) and 122.5 J/(mol•K)  (LADY calculation),  Sº(298.15) = 133.4 J/(mol•K) (LADY calculation), and Hº(298.15)–Hº(0) = 21494 J/mol (PM5 calculation). The calculated heat capacity values are in satisfactory agreement with known experimental data.
url http://ect-journal.kz/index.php/ectj/article/view/336
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