Passivation and red-ox processes of refractory metals in carbamide-chloride melt

The electrochemical behavior of refractory metals (Pt, Pd, W, Ti, Nb, Ta) in the low temperature carbamide-NH4Cl melt (texp=120 oC) and the structure of complex ions formed after anodic dissolution have been studied by cyclic voltammetry and spectroscopic methods. The features of the mechanism of me...

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Main Authors: Tumanova N., Volkov S., Kochetova S., Triphonova T., Buryak N.
Format: Article
Language:English
Published: Technical Faculty, Bor 2003-01-01
Series:Journal of Mining and Metallurgy. Section B: Metallurgy
Subjects:
Online Access:http://www.doiserbia.nb.rs/img/doi/1450-5339/2003/1450-53390302069T.pdf
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spelling doaj-b07f1ae7adaf4cb1a557612039fe700e2020-11-24T21:19:19ZengTechnical Faculty, BorJournal of Mining and Metallurgy. Section B: Metallurgy1450-53392003-01-01391-2697910.2298/JMMB0302069TPassivation and red-ox processes of refractory metals in carbamide-chloride meltTumanova N.Volkov S.Kochetova S.Triphonova T.Buryak N.The electrochemical behavior of refractory metals (Pt, Pd, W, Ti, Nb, Ta) in the low temperature carbamide-NH4Cl melt (texp=120 oC) and the structure of complex ions formed after anodic dissolution have been studied by cyclic voltammetry and spectroscopic methods. The features of the mechanism of metal electrodissolution and possibilities of the cathodic reduction of complexes formed in the melt are presented. A possible correlation between passivation processes on the metal surface, the mechanism of electrodissolution, composition of complexes and the electrochemical activity of metals and their ions are discussed. The data obtained reflect the possibilities to use the carbamide-NH4Cl melt for practical purposes in electroplating and electropolishing. http://www.doiserbia.nb.rs/img/doi/1450-5339/2003/1450-53390302069T.pdflow-temperature meltrefractory metalselectrochemistrypassivation
collection DOAJ
language English
format Article
sources DOAJ
author Tumanova N.
Volkov S.
Kochetova S.
Triphonova T.
Buryak N.
spellingShingle Tumanova N.
Volkov S.
Kochetova S.
Triphonova T.
Buryak N.
Passivation and red-ox processes of refractory metals in carbamide-chloride melt
Journal of Mining and Metallurgy. Section B: Metallurgy
low-temperature melt
refractory metals
electrochemistry
passivation
author_facet Tumanova N.
Volkov S.
Kochetova S.
Triphonova T.
Buryak N.
author_sort Tumanova N.
title Passivation and red-ox processes of refractory metals in carbamide-chloride melt
title_short Passivation and red-ox processes of refractory metals in carbamide-chloride melt
title_full Passivation and red-ox processes of refractory metals in carbamide-chloride melt
title_fullStr Passivation and red-ox processes of refractory metals in carbamide-chloride melt
title_full_unstemmed Passivation and red-ox processes of refractory metals in carbamide-chloride melt
title_sort passivation and red-ox processes of refractory metals in carbamide-chloride melt
publisher Technical Faculty, Bor
series Journal of Mining and Metallurgy. Section B: Metallurgy
issn 1450-5339
publishDate 2003-01-01
description The electrochemical behavior of refractory metals (Pt, Pd, W, Ti, Nb, Ta) in the low temperature carbamide-NH4Cl melt (texp=120 oC) and the structure of complex ions formed after anodic dissolution have been studied by cyclic voltammetry and spectroscopic methods. The features of the mechanism of metal electrodissolution and possibilities of the cathodic reduction of complexes formed in the melt are presented. A possible correlation between passivation processes on the metal surface, the mechanism of electrodissolution, composition of complexes and the electrochemical activity of metals and their ions are discussed. The data obtained reflect the possibilities to use the carbamide-NH4Cl melt for practical purposes in electroplating and electropolishing.
topic low-temperature melt
refractory metals
electrochemistry
passivation
url http://www.doiserbia.nb.rs/img/doi/1450-5339/2003/1450-53390302069T.pdf
work_keys_str_mv AT tumanovan passivationandredoxprocessesofrefractorymetalsincarbamidechloridemelt
AT volkovs passivationandredoxprocessesofrefractorymetalsincarbamidechloridemelt
AT kochetovas passivationandredoxprocessesofrefractorymetalsincarbamidechloridemelt
AT triphonovat passivationandredoxprocessesofrefractorymetalsincarbamidechloridemelt
AT buryakn passivationandredoxprocessesofrefractorymetalsincarbamidechloridemelt
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