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Department of Energy Science and Engineering
CMMM Lab(Curious Minds Molecular Modeling Laboratory)
1. Journal Articles
Corrosion-driven droplet wetting on iron nanolayers
Ricard, Aurelien
;
Restagno, Frederic
;
Jang, Yun Hee
;
Lansac, Yves
;
Raspaud, Eric
Department of Energy Science and Engineering
CMMM Lab(Curious Minds Molecular Modeling Laboratory)
1. Journal Articles
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Title
Corrosion-driven droplet wetting on iron nanolayers
Issued Date
2023-10
Citation
Ricard, Aurelien. (2023-10). Corrosion-driven droplet wetting on iron nanolayers. Scientific Reports, 13(1). doi: 10.1038/s41598-023-45547-9
Type
Article
ISSN
2045-2322
Abstract
The classical Evans’ drop describes a drop of aqueous salt solution, placed on a bulk metal surface where it displays a corrosion pit that grows over time producing further oxide deposits from the metal dissolution. We focus here on the corrosion-induced droplet spreading using iron nanolayers whose semi-transparency allowed us to monitor both iron corrosion propagation and electrolyte droplet behavior by simple optical means. We thus observed that pits grow under the droplet and merge into a corrosion front. This front reached the triple contact line and drove a non radial spreading, until it propagated outside the immobile droplet. Such chemically-active wetting is only observed in the presence of a conductive substrate that provides strong adhesion of the iron nanofilm to the substrate. By revisiting the classic Evan’s drop experiment on thick iron film, a weaker corrosion-driven droplet spreading is also identified. These results require further investigations, but they clearly open up new perspectives on substrate wetting by corrosion-like electrochemical reactions at the nanometer scale. © 2023, Springer Nature Limited.
URI
http://hdl.handle.net/20.500.11750/46717
DOI
10.1038/s41598-023-45547-9
Publisher
Nature Publishing Group
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Jang, Yun Hee
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