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The Effect of Deposition Process Exchange Current Density on the Thin Metal Film Formation on Inert Substrate

Uticaj gustine struje izmene na proces taloženja tankih filmova metala na nesrodnim podlogama

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1997
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Authors
Popov, Konstantin I.
Grgur, Branimir N.
Stojilković, Evica R.
Pavlović, Miomir G.
Nikolić, Nebojša D.
Article (Published version)
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Abstract
The initial stage of thin surface metal film formation on inert substrate is considered. The simultaneous action of both active centers and nucleation exclusion zones was taken into consideration when discussing the saturation nucleation exclusion zones was taken into consideration when discussing the saturation nucleus density. The saturation nucleus density increases with increasing number of active centers and decreasing the radii of nucleation exclusion zones (enhancing the thin metal film formation). Atone at the same deposition current density deposition overpotential increases with decreasing deposition process exchange current density, leading to the increase in the number of active centers and to decrease of crystallization overpotential and radii of nucleation exclusion zones. Because of this compact surface metal film will be formed at a lower quantity of electrodeposited metal with a decrease in exchange current density.
Razmatrana je početna faza nastajanja površinskog filma metala. Diskutovan je uticaj aktivnih centara i zona isključenja nukleacije na zasićenu gustinu nukleusa. Zasićena gustina nukleusa raste sa porastom broja aktivnih centara i sa smanjenjem poluprečnika zona isključenja nukleacije, što simuliše nastajanje tankog filma metala. Pri jednoj gustini struje taloženja prenapetost raste sa smanjenjem gustine struje izmene za proces taloženja, što dovodi do povećanja broja aktivnih centara i smanjenja kristalizacione prenapetosti i poluprečnika zona isključenja. Na taj način se formiraju kompaktni površinski filmovi pri taloženju manje količine metala kada je proces taloženja okarakterisan manjom vrednošću gustine struje izmene.
Keywords:
metal electrodeposition, surface metal film formation, thin metal film formation / metal electrodeposition / surface metal film formation / thin metal film formation
Source:
Journal of the Serbian Chemical Society, 1997, 62, 433-442, 5, 433-442
Publisher:
  • Belgrade : Serbian Chemical Society
Funding / projects:
  • Ministry of Education, Science and Technological Development of the Republic of Serbia

ISSN: 0352-5139

Scopus: 2-s2.0-0031521623
[ Google Scholar ]
10
Handle
https://hdl.handle.net/21.15107/rcub_cer_4140
URI
https://cer.ihtm.bg.ac.rs/handle/123456789/4140
Collections
  • Radovi istraživača / Researchers' publications
Institution/Community
IHTM
TY  - JOUR
AU  - Popov, Konstantin I.
AU  - Grgur, Branimir N.
AU  - Stojilković, Evica R.
AU  - Pavlović, Miomir G.
AU  - Nikolić, Nebojša D.
PY  - 1997
UR  - https://cer.ihtm.bg.ac.rs/handle/123456789/4140
AB  - The initial stage of thin surface metal film formation on inert substrate is considered. The simultaneous action of both active centers and nucleation exclusion zones was taken into consideration when discussing the saturation nucleation exclusion zones was taken into consideration when discussing the saturation nucleus density. The saturation nucleus density increases with increasing number of active centers and decreasing the radii of nucleation exclusion zones (enhancing the thin metal film formation). Atone at the same deposition current density deposition overpotential increases with decreasing deposition process exchange current density, leading to the increase in the number of active centers and to decrease of crystallization overpotential and radii of nucleation exclusion zones. Because of this compact surface metal film will be formed at a lower quantity of electrodeposited metal with a decrease in exchange current density.
AB  - Razmatrana je početna faza nastajanja površinskog filma metala. Diskutovan je uticaj aktivnih centara i zona isključenja nukleacije na zasićenu gustinu  nukleusa. Zasićena gustina nukleusa raste sa porastom broja aktivnih centara i sa smanjenjem poluprečnika zona isključenja nukleacije, što simuliše nastajanje tankog filma metala. Pri jednoj gustini struje taloženja prenapetost raste sa smanjenjem gustine struje izmene za proces taloženja, što dovodi do povećanja broja aktivnih centara i smanjenja kristalizacione prenapetosti i poluprečnika zona isključenja. Na taj način se formiraju kompaktni površinski filmovi pri taloženju manje količine metala kada je proces taloženja okarakterisan manjom vrednošću gustine struje izmene.
PB  - Belgrade : Serbian Chemical Society
T2  - Journal of the Serbian Chemical Society
T1  - The Effect of Deposition Process Exchange Current Density on the Thin Metal Film Formation on Inert Substrate
T1  - Uticaj gustine struje izmene na proces taloženja tankih filmova metala na nesrodnim podlogama
VL  - 62, 433-442
VL  - 62
IS  - 5
SP  - 433
EP  - 442
UR  - https://hdl.handle.net/21.15107/rcub_cer_4140
ER  - 
@article{
author = "Popov, Konstantin I. and Grgur, Branimir N. and Stojilković, Evica R. and Pavlović, Miomir G. and Nikolić, Nebojša D.",
year = "1997",
abstract = "The initial stage of thin surface metal film formation on inert substrate is considered. The simultaneous action of both active centers and nucleation exclusion zones was taken into consideration when discussing the saturation nucleation exclusion zones was taken into consideration when discussing the saturation nucleus density. The saturation nucleus density increases with increasing number of active centers and decreasing the radii of nucleation exclusion zones (enhancing the thin metal film formation). Atone at the same deposition current density deposition overpotential increases with decreasing deposition process exchange current density, leading to the increase in the number of active centers and to decrease of crystallization overpotential and radii of nucleation exclusion zones. Because of this compact surface metal film will be formed at a lower quantity of electrodeposited metal with a decrease in exchange current density., Razmatrana je početna faza nastajanja površinskog filma metala. Diskutovan je uticaj aktivnih centara i zona isključenja nukleacije na zasićenu gustinu  nukleusa. Zasićena gustina nukleusa raste sa porastom broja aktivnih centara i sa smanjenjem poluprečnika zona isključenja nukleacije, što simuliše nastajanje tankog filma metala. Pri jednoj gustini struje taloženja prenapetost raste sa smanjenjem gustine struje izmene za proces taloženja, što dovodi do povećanja broja aktivnih centara i smanjenja kristalizacione prenapetosti i poluprečnika zona isključenja. Na taj način se formiraju kompaktni površinski filmovi pri taloženju manje količine metala kada je proces taloženja okarakterisan manjom vrednošću gustine struje izmene.",
publisher = "Belgrade : Serbian Chemical Society",
journal = "Journal of the Serbian Chemical Society",
title = "The Effect of Deposition Process Exchange Current Density on the Thin Metal Film Formation on Inert Substrate, Uticaj gustine struje izmene na proces taloženja tankih filmova metala na nesrodnim podlogama",
volume = "62, 433-442, 62",
number = "5",
pages = "433-442",
url = "https://hdl.handle.net/21.15107/rcub_cer_4140"
}
Popov, K. I., Grgur, B. N., Stojilković, E. R., Pavlović, M. G.,& Nikolić, N. D.. (1997). The Effect of Deposition Process Exchange Current Density on the Thin Metal Film Formation on Inert Substrate. in Journal of the Serbian Chemical Society
Belgrade : Serbian Chemical Society., 62, 433-442(5), 433-442.
https://hdl.handle.net/21.15107/rcub_cer_4140
Popov KI, Grgur BN, Stojilković ER, Pavlović MG, Nikolić ND. The Effect of Deposition Process Exchange Current Density on the Thin Metal Film Formation on Inert Substrate. in Journal of the Serbian Chemical Society. 1997;62, 433-442(5):433-442.
https://hdl.handle.net/21.15107/rcub_cer_4140 .
Popov, Konstantin I., Grgur, Branimir N., Stojilković, Evica R., Pavlović, Miomir G., Nikolić, Nebojša D., "The Effect of Deposition Process Exchange Current Density on the Thin Metal Film Formation on Inert Substrate" in Journal of the Serbian Chemical Society, 62, 433-442, no. 5 (1997):433-442,
https://hdl.handle.net/21.15107/rcub_cer_4140 .

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