Please use this identifier to cite or link to this item: http://elar.urfu.ru/handle/10995/92630
Title: DFT-based calculations of silicon complex structures in KF–KCl–K2SiF6 and KF–KCl–K2SiF6–SiO2 melts
Authors: Vorob’Ev, A. S.
Isakov, A. V.
Galashev, A. Y.
Zaikov, Y. P.
Issue Date: 2019
Publisher: Serbian Chemical Society
Citation: Vorob’Ev A. S. DFT-based calculations of silicon complex structures in KF–KCl–K2SiF6 and KF–KCl–K2SiF6–SiO2 melts / A. S. Vorob’Ev, A. V. Isakov, A. Y. Galashev, Y. P. Zaikov. — DOI 10.2298/JSC190225044V // Journal of the Serbian Chemical Society. — 2019. — Vol. 10. — Iss. 84. — P. 1129-1142.
Abstract: The length and energy of bonds in the complex anions of silicon formed in KF−KCl−K2SiF6 and KF−KCl−K2SiF6–SiO2 melts were evaluated using the method of first-principles molecular dynamics, accomplished by means of the Siesta program. The effect of K+ (from the second coordination sphere) on the stability of these complexes was studied. The bond lengths in the silicon complexes was found to change with increasing amount of the potassium ions. It was established that the following complexes [SiO4]4-, [SiO3F]3- and [SiF6]2- are the most stable in KF−KCl−K2SiF6 and KF−KCl––K2SiF6–SiO2 melts. The [SiO4]4- and [SiF6]2- complexes are thermally stable in the molten salt in the temperature range of 923–1073 K, whereas the [SiF7]3-structure, which is typical for the lattice of crystalline K3SiF7, is unstable in this temperature range. In the KF−KCl−K2SiF6−SiO2 melts, conditions above 1043 K were created allowing the transformation of [SiО3F]3- into [SiO4]4-. Within the studied temperature mode, the Si–F bond length is in the range 1.5––1.9 Å and the Si–O bond lengths is 1.5–1.7 Å. The obtained results are in a good agreement with in situ data of Raman spectroscopy for the KF−KCl−K2SiF6 and KF–KCl–K2SiF6–SiO2 melts. © 2019 Serbian Chemical Society. All rights reserved.
Keywords: DFT CALCULATIONS
MOLTEN SALTS
SILICON COMPLEXES
STRUCTURE
URI: http://elar.urfu.ru/handle/10995/92630
Access: info:eu-repo/semantics/openAccess
SCOPUS ID: 85074884090
WOS ID: 000496149600007
PURE ID: 11338697
ISSN: 0352-5139
DOI: 10.2298/JSC190225044V
metadata.dc.description.sponsorship: Russian Science Foundation, RSF: 18-73-00227
The work was accomplished with the financial support of the Russian Science Foundation, Project No. 18-73-00227.
RSCF project card: 18-73-00227
Располагается в коллекциях:Научные публикации ученых УрФУ, проиндексированные в SCOPUS и WoS CC

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