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The importance of using hydrogen evolution inhibitor during the Zn and Zn-Mn electrodeposition from ethaline

Thumbnail
2019
0352-51391900084B.pdf (2.659Mb)
Authors
Bucko, Mihael
Tomić, Milorad V.
Maksimović, Miodrag D.
Bajat, Jelena
Article (Published version)
Metadata
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Abstract
Cyclic voltammetry was used for the characterization of zinc electro-deposition on steel from ethaline deep eutectic solution (1:2 choline chloride:ethylene glycol). The influence of 4-hydroxy-benzaldehyde (HBA) as an additive was analyzed. It was shown that hydrogen evolution is inhibited in the presence of HBA and further significantly retarded upon addition of Zn2+ to the solution containing HBA. The cathodic peak for Zn2+ reduction in this type of ionic liquid (ethaline+HBA+Zn2+) resembles the zinc reduction in aqueous solution. The corrosion resistance of Zn coatings deposited at different current densities was evaluated by electrochemical methods, i.e., polarization measurements and electrochemical impedance spectroscopy in 3 % NaCl solution. The possibility of Zn-Mn alloy deposition from ethaline deep eutectic solvent was investigated for the first time. In addition, the corrosion stability of these alloy coatings was analyzed and compared to the stability of bare Zn coatings. I...t was shown that the optimum deposition current density for both Zn and Zn-Mn coatings with increased corrosion stability from ethaline + HBA electrolyte is 5 mA cm(-2).

Keywords:
deep eutectic solvents / electrodeposition / hydrogen evolution / coatings / corrosion
Source:
Journal of the Serbian Chemical Society, 2019, 84, 11, 1221-1234
Publisher:
  • Srpsko hemijsko društvo, Beograd
Funding / projects:
  • Synthesis, processing and applications of nanostructured multifunctional materials with defined properties (RS-45019)
  • Ministry for Scientific and Technological Development, Higher Education and Information Society of the Republic of Srpska [19/6-020/961-20/18]

DOI: 10.2298/JSC190718084B

ISSN: 0352-5139

WoS: 000500748300004

Scopus: 2-s2.0-85076355378
[ Google Scholar ]
2
2
URI
http://TechnoRep.tmf.bg.ac.rs/handle/123456789/4098
Collections
  • Radovi istraživača / Researchers’ publications (TMF)
Institution/Community
Tehnološko-metalurški fakultet
TY  - JOUR
AU  - Bucko, Mihael
AU  - Tomić, Milorad V.
AU  - Maksimović, Miodrag D.
AU  - Bajat, Jelena
PY  - 2019
UR  - http://TechnoRep.tmf.bg.ac.rs/handle/123456789/4098
AB  - Cyclic voltammetry was used for the characterization of zinc electro-deposition on steel from ethaline deep eutectic solution (1:2 choline chloride:ethylene glycol). The influence of 4-hydroxy-benzaldehyde (HBA) as an additive was analyzed. It was shown that hydrogen evolution is inhibited in the presence of HBA and further significantly retarded upon addition of Zn2+ to the solution containing HBA. The cathodic peak for Zn2+ reduction in this type of ionic liquid (ethaline+HBA+Zn2+) resembles the zinc reduction in aqueous solution. The corrosion resistance of Zn coatings deposited at different current densities was evaluated by electrochemical methods, i.e., polarization measurements and electrochemical impedance spectroscopy in 3 % NaCl solution. The possibility of Zn-Mn alloy deposition from ethaline deep eutectic solvent was investigated for the first time. In addition, the corrosion stability of these alloy coatings was analyzed and compared to the stability of bare Zn coatings. It was shown that the optimum deposition current density for both Zn and Zn-Mn coatings with increased corrosion stability from ethaline + HBA electrolyte is 5 mA cm(-2).
PB  - Srpsko hemijsko društvo, Beograd
T2  - Journal of the Serbian Chemical Society
T1  - The importance of using hydrogen evolution inhibitor during the Zn and Zn-Mn electrodeposition from ethaline
EP  - 1234
IS  - 11
SP  - 1221
VL  - 84
DO  - 10.2298/JSC190718084B
ER  - 
@article{
author = "Bucko, Mihael and Tomić, Milorad V. and Maksimović, Miodrag D. and Bajat, Jelena",
year = "2019",
abstract = "Cyclic voltammetry was used for the characterization of zinc electro-deposition on steel from ethaline deep eutectic solution (1:2 choline chloride:ethylene glycol). The influence of 4-hydroxy-benzaldehyde (HBA) as an additive was analyzed. It was shown that hydrogen evolution is inhibited in the presence of HBA and further significantly retarded upon addition of Zn2+ to the solution containing HBA. The cathodic peak for Zn2+ reduction in this type of ionic liquid (ethaline+HBA+Zn2+) resembles the zinc reduction in aqueous solution. The corrosion resistance of Zn coatings deposited at different current densities was evaluated by electrochemical methods, i.e., polarization measurements and electrochemical impedance spectroscopy in 3 % NaCl solution. The possibility of Zn-Mn alloy deposition from ethaline deep eutectic solvent was investigated for the first time. In addition, the corrosion stability of these alloy coatings was analyzed and compared to the stability of bare Zn coatings. It was shown that the optimum deposition current density for both Zn and Zn-Mn coatings with increased corrosion stability from ethaline + HBA electrolyte is 5 mA cm(-2).",
publisher = "Srpsko hemijsko društvo, Beograd",
journal = "Journal of the Serbian Chemical Society",
title = "The importance of using hydrogen evolution inhibitor during the Zn and Zn-Mn electrodeposition from ethaline",
pages = "1234-1221",
number = "11",
volume = "84",
doi = "10.2298/JSC190718084B"
}
Bucko, M., Tomić, M. V., Maksimović, M. D.,& Bajat, J.. (2019). The importance of using hydrogen evolution inhibitor during the Zn and Zn-Mn electrodeposition from ethaline. in Journal of the Serbian Chemical Society
Srpsko hemijsko društvo, Beograd., 84(11), 1221-1234.
https://doi.org/10.2298/JSC190718084B
Bucko M, Tomić MV, Maksimović MD, Bajat J. The importance of using hydrogen evolution inhibitor during the Zn and Zn-Mn electrodeposition from ethaline. in Journal of the Serbian Chemical Society. 2019;84(11):1221-1234.
doi:10.2298/JSC190718084B .
Bucko, Mihael, Tomić, Milorad V., Maksimović, Miodrag D., Bajat, Jelena, "The importance of using hydrogen evolution inhibitor during the Zn and Zn-Mn electrodeposition from ethaline" in Journal of the Serbian Chemical Society, 84, no. 11 (2019):1221-1234,
https://doi.org/10.2298/JSC190718084B . .

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