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Ni-moo2 cathodes for hydrogen evolution in alkaline solutions. Effect of the conditions of their electrodeposition

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2013
638.pdf (903.4Kb)
Authors
Tasić, G.
Jović, Borka M
Lačnjevac, Uroš
Krstajić, Nedeljko V
Jović, Vladimir D
Article (Published version)
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Abstract
The electrodeposition of Ni-MoO2 composite coatings is a specific process taking place under defined hydrodynamic conditions. In this work the influence of hydrodynamics, current density, and MoO2 concentration on the electrodeposition of Ni-MoO2 coatings from a suspension of MoO2 particles in a Watt’s type bath were investigated by comparison of their polarization characteristics for the hydrogen evolution reaction (HER) in 1 M NaOH at room temperature. It was shown that electrolyte and air flow rates influence the process of coating electrodeposition at low concentrations of MoO2. With increases in MoO2 concentration the current density became the main parameter influencing the coatings’ properties. The best coating, with the lowest over-voltage for the HER, was obtained from the suspension containing 3 g dm-3 of MoO2 particles. The over-voltage of this coating was 57 mV lower for the HER at j = –0.3 A cm-2 (the current density used in industrial applications) than that for the comme...rcial De Nora’s Ni + RuO2 electrode.

Keywords:
Ni-MoO2 / Morphology / HER / Electrodeposition / Composite coatings
Source:
Journal of Electrochemical Science and Engineering, 2013, 3, 1, 29-36
Publisher:
  • International Association of Physical Chemists

DOI: 10.5599/jese.2012.0027

ISSN: 1847-9286

Scopus: 2-s2.0-84877662435
[ Google Scholar ]
3
URI
http://rimsi.imsi.bg.ac.rs/handle/123456789/641
Collections
  • Radovi istraživača / Researchers’ publications
Institution/Community
Institut za multidisciplinarna istraživanja
TY  - JOUR
AU  - Tasić, G.
AU  - Jović, Borka M
AU  - Lačnjevac, Uroš
AU  - Krstajić, Nedeljko V
AU  - Jović, Vladimir D
PY  - 2013
UR  - http://rimsi.imsi.bg.ac.rs/handle/123456789/641
AB  - The electrodeposition of Ni-MoO2 composite coatings is a specific process taking place under defined hydrodynamic conditions. In this work the influence of hydrodynamics, current density, and MoO2 concentration on the electrodeposition of Ni-MoO2 coatings from a suspension of MoO2 particles in a Watt’s type bath were investigated by comparison of their polarization characteristics for the hydrogen evolution reaction (HER) in 1 M NaOH at room temperature. It was shown that electrolyte and air flow rates influence the process of coating electrodeposition at low concentrations of MoO2. With increases in MoO2 concentration the current density became the main parameter influencing the coatings’ properties. The best coating, with the lowest over-voltage for the HER, was obtained from the suspension containing 3 g dm-3 of MoO2 particles. The over-voltage of this coating was 57 mV lower for the HER at j = –0.3 A cm-2 (the current density used in industrial applications) than that for the commercial De Nora’s Ni + RuO2 electrode.
PB  - International Association of Physical Chemists
T2  - Journal of Electrochemical Science and Engineering
T1  - Ni-moo2 cathodes for hydrogen evolution in alkaline solutions. Effect of the conditions of their electrodeposition
EP  - 36
IS  - 1
SP  - 29
VL  - 3
DO  - 10.5599/jese.2012.0027
ER  - 
@article{
author = "Tasić, G. and Jović, Borka M and Lačnjevac, Uroš and Krstajić, Nedeljko V and Jović, Vladimir D",
year = "2013",
abstract = "The electrodeposition of Ni-MoO2 composite coatings is a specific process taking place under defined hydrodynamic conditions. In this work the influence of hydrodynamics, current density, and MoO2 concentration on the electrodeposition of Ni-MoO2 coatings from a suspension of MoO2 particles in a Watt’s type bath were investigated by comparison of their polarization characteristics for the hydrogen evolution reaction (HER) in 1 M NaOH at room temperature. It was shown that electrolyte and air flow rates influence the process of coating electrodeposition at low concentrations of MoO2. With increases in MoO2 concentration the current density became the main parameter influencing the coatings’ properties. The best coating, with the lowest over-voltage for the HER, was obtained from the suspension containing 3 g dm-3 of MoO2 particles. The over-voltage of this coating was 57 mV lower for the HER at j = –0.3 A cm-2 (the current density used in industrial applications) than that for the commercial De Nora’s Ni + RuO2 electrode.",
publisher = "International Association of Physical Chemists",
journal = "Journal of Electrochemical Science and Engineering",
title = "Ni-moo2 cathodes for hydrogen evolution in alkaline solutions. Effect of the conditions of their electrodeposition",
pages = "36-29",
number = "1",
volume = "3",
doi = "10.5599/jese.2012.0027"
}
Tasić, G., Jović, B. M., Lačnjevac, U., Krstajić, N. V.,& Jović, V. D.. (2013). Ni-moo2 cathodes for hydrogen evolution in alkaline solutions. Effect of the conditions of their electrodeposition. in Journal of Electrochemical Science and Engineering
International Association of Physical Chemists., 3(1), 29-36.
https://doi.org/10.5599/jese.2012.0027
Tasić G, Jović BM, Lačnjevac U, Krstajić NV, Jović VD. Ni-moo2 cathodes for hydrogen evolution in alkaline solutions. Effect of the conditions of their electrodeposition. in Journal of Electrochemical Science and Engineering. 2013;3(1):29-36.
doi:10.5599/jese.2012.0027 .
Tasić, G., Jović, Borka M, Lačnjevac, Uroš, Krstajić, Nedeljko V, Jović, Vladimir D, "Ni-moo2 cathodes for hydrogen evolution in alkaline solutions. Effect of the conditions of their electrodeposition" in Journal of Electrochemical Science and Engineering, 3, no. 1 (2013):29-36,
https://doi.org/10.5599/jese.2012.0027 . .

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