Electrochemistry of cobalt ethylenediamine complexes at high pH

In this work the electrochemical behavior of cobalt ethylendiamine complexes (Co(en)), at pH 12 has been investigated by cyclic voltammetry (CV), potentiostatic pulse technique and polarization curve measurements at stationary and rotating glassy carbon (GC) electrode. It was shown that...

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Main Authors: Miulović Snežana M., Nikolić Vladimir M., Laušević Petar Z., Aćimović Danka D., Tasić Gvozden S., Marčeta-Kaninski Milica P.
Format: Article
Language:English
Published: Serbian Chemical Society 2015-01-01
Series:Journal of the Serbian Chemical Society
Subjects:
Online Access:http://www.doiserbia.nb.rs/img/doi/0352-5139/2015/0352-51391500079M.pdf
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spelling doaj-7c159d1570ef41118d55cd7746b8ceb12020-11-25T00:42:36ZengSerbian Chemical Society Journal of the Serbian Chemical Society0352-51391820-74212015-01-0180121515152710.2298/JSC150327079M0352-51391500079MElectrochemistry of cobalt ethylenediamine complexes at high pHMiulović Snežana M.0Nikolić Vladimir M.1Laušević Petar Z.2Aćimović Danka D.3Tasić Gvozden S.4Marčeta-Kaninski Milica P.5Institute of Nuclear Sciences - Vinča, Laboratory of Physical Chemistry, BelgradeInstitute of Nuclear Sciences - Vinča, Laboratory of Physical Chemistry, BelgradeInstitute of Nuclear Sciences - Vinča, Laboratory of Physical Chemistry, BelgradeInstitute of Nuclear Sciences - Vinča, Laboratory of Physical Chemistry, BelgradeInstitute of Nuclear Sciences - Vinča, Laboratory of Physical Chemistry, BelgradeInstitute of Nuclear Sciences - Vinča, Laboratory of Physical Chemistry, BelgradeIn this work the electrochemical behavior of cobalt ethylendiamine complexes (Co(en)), at pH 12 has been investigated by cyclic voltammetry (CV), potentiostatic pulse technique and polarization curve measurements at stationary and rotating glassy carbon (GC) electrode. It was shown that sixteen different species can be formed in the solution containing Co(en)3 ligand, with the most stable one at all pH values being [Co(en)3]3+. The reduction of [Co(en)3]3+ into [Co(en)3]2+ was shown to be totally irreversible, one-electron exchange reaction. Further reduction of [Co(en)3]2+ was found to be complex process leading to a cobalt deposition at the potentials more negative than -1.45 V vs. SCE. The process of [Co(en)3]2+ oxidation was also complex and most probably coupled with the chemical reaction. [Projekat Ministarstva nauke Republike Srbije, br. 172045]http://www.doiserbia.nb.rs/img/doi/0352-5139/2015/0352-51391500079M.pdfDistribution of Co(en)3 complexesirreversible reduction of [Co(en)3]3+/[Co(en)3]2+reduction of [Co(en)3]2+ to Co
collection DOAJ
language English
format Article
sources DOAJ
author Miulović Snežana M.
Nikolić Vladimir M.
Laušević Petar Z.
Aćimović Danka D.
Tasić Gvozden S.
Marčeta-Kaninski Milica P.
spellingShingle Miulović Snežana M.
Nikolić Vladimir M.
Laušević Petar Z.
Aćimović Danka D.
Tasić Gvozden S.
Marčeta-Kaninski Milica P.
Electrochemistry of cobalt ethylenediamine complexes at high pH
Journal of the Serbian Chemical Society
Distribution of Co(en)3 complexes
irreversible reduction of [Co(en)3]3+/[Co(en)3]2+
reduction of [Co(en)3]2+ to Co
author_facet Miulović Snežana M.
Nikolić Vladimir M.
Laušević Petar Z.
Aćimović Danka D.
Tasić Gvozden S.
Marčeta-Kaninski Milica P.
author_sort Miulović Snežana M.
title Electrochemistry of cobalt ethylenediamine complexes at high pH
title_short Electrochemistry of cobalt ethylenediamine complexes at high pH
title_full Electrochemistry of cobalt ethylenediamine complexes at high pH
title_fullStr Electrochemistry of cobalt ethylenediamine complexes at high pH
title_full_unstemmed Electrochemistry of cobalt ethylenediamine complexes at high pH
title_sort electrochemistry of cobalt ethylenediamine complexes at high ph
publisher Serbian Chemical Society
series Journal of the Serbian Chemical Society
issn 0352-5139
1820-7421
publishDate 2015-01-01
description In this work the electrochemical behavior of cobalt ethylendiamine complexes (Co(en)), at pH 12 has been investigated by cyclic voltammetry (CV), potentiostatic pulse technique and polarization curve measurements at stationary and rotating glassy carbon (GC) electrode. It was shown that sixteen different species can be formed in the solution containing Co(en)3 ligand, with the most stable one at all pH values being [Co(en)3]3+. The reduction of [Co(en)3]3+ into [Co(en)3]2+ was shown to be totally irreversible, one-electron exchange reaction. Further reduction of [Co(en)3]2+ was found to be complex process leading to a cobalt deposition at the potentials more negative than -1.45 V vs. SCE. The process of [Co(en)3]2+ oxidation was also complex and most probably coupled with the chemical reaction. [Projekat Ministarstva nauke Republike Srbije, br. 172045]
topic Distribution of Co(en)3 complexes
irreversible reduction of [Co(en)3]3+/[Co(en)3]2+
reduction of [Co(en)3]2+ to Co
url http://www.doiserbia.nb.rs/img/doi/0352-5139/2015/0352-51391500079M.pdf
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