LAPSE:2023.1364
Published Article
LAPSE:2023.1364
Ionic Equilibria in Polytungstate Melts
Alexander V. Kosov, Olga L. Semerikova, Sergey V. Vakarin, Olga V. Grishenkova, Alexey S. Vorob’ev, Anastasia O. Khudorozhkova, Yury P. Zaikov
February 21, 2023
Abstract
Polytungstate melts are used for the electrodeposition of oxide tungsten bronzes (OTBs). The scarce information on the ionic composition and properties of these electrolytes hinders effective control of the electrochemical synthesis of OTBs with desired electrical and optical properties. In this work, a comprehensive study of Na2WO4−WO3 melts that contained up to 55 mol% of tungsten trioxide was performed in the temperature range from 983 to 1073 K. Melt densities were measured using the Archimedes method. DFT calculations were carried out for various tungsten-containing compounds, including WxO3x−12+, WxO3x+12−, NaWxO3x+1−, and Na2WxO3x+1. The calculated values of the W−O bond energy indicate that the tested compounds are stable in the specified temperature range, and the  WO22+ cation is the most stable. The experimental dependences of the redox potential on the mole fraction of tungsten trioxide in the Na2WO4−WO3 melt were obtained using the EMF method. A model that considers the processes of interaction between tungsten-containing ions and O2− ions was proposed for the quantitative interpretation of these dependences. The equilibrium constants were found through fitting according to the Levenberg−Marquardt algorithm. The effect of the WO3 mole fraction and temperature on the concentrations of WO42−, W2O72−, W3O102−, W4O132−, WO22+, and O2− ions was analyzed.
Keywords
DFT calculation, EMF method, ionic composition model, melting process, platinum reference electrode, polytungstate melt density
Suggested Citation
Kosov AV, Semerikova OL, Vakarin SV, Grishenkova OV, Vorob’ev AS, Khudorozhkova AO, Zaikov YP. Ionic Equilibria in Polytungstate Melts. (2023). LAPSE:2023.1364
Author Affiliations
Kosov AV: Department of Electrolysis, Institute of High Temperature Electrochemistry, Ural Branch of the Russian Academy of Sciences, Yekaterinburg 620990, Russia [ORCID]
Semerikova OL: Department of Electrolysis, Institute of High Temperature Electrochemistry, Ural Branch of the Russian Academy of Sciences, Yekaterinburg 620990, Russia
Vakarin SV: Department of Electrolysis, Institute of High Temperature Electrochemistry, Ural Branch of the Russian Academy of Sciences, Yekaterinburg 620990, Russia
Grishenkova OV: Department of Electrolysis, Institute of High Temperature Electrochemistry, Ural Branch of the Russian Academy of Sciences, Yekaterinburg 620990, Russia [ORCID]
Vorob’ev AS: Department of Electrolysis, Institute of High Temperature Electrochemistry, Ural Branch of the Russian Academy of Sciences, Yekaterinburg 620990, Russia
Khudorozhkova AO: Department of Electrolysis, Institute of High Temperature Electrochemistry, Ural Branch of the Russian Academy of Sciences, Yekaterinburg 620990, Russia
Zaikov YP: Department of Electrolysis, Institute of High Temperature Electrochemistry, Ural Branch of the Russian Academy of Sciences, Yekaterinburg 620990, Russia
Journal Name
Processes
Volume
10
Issue
12
First Page
2658
Year
2022
Publication Date
2022-12-09
ISSN
2227-9717
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Original Submission
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PII: pr10122658, Publication Type: Journal Article
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LAPSE:2023.1364
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https://doi.org/10.3390/pr10122658
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