One-Step Electrodeposition of Superhydrophobic Coating on 316L Stainless Steel
Superhydrophobic coatings were fabricated through a one-step electrochemical process onto the surface of 316L stainless steel samples. The presence of hierarchical structures at micro/nanoscale and manganese stearate into the coatings gave superhydrophobicity to the coating, with contact angle of ~1...
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MDPI AG
2021
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oai:doaj.org-article:dba279cd6b2140bb9b6acad718b29c9d2021-11-25T18:22:31ZOne-Step Electrodeposition of Superhydrophobic Coating on 316L Stainless Steel10.3390/met111118672075-4701https://doaj.org/article/dba279cd6b2140bb9b6acad718b29c9d2021-11-01T00:00:00Zhttps://www.mdpi.com/2075-4701/11/11/1867https://doaj.org/toc/2075-4701Superhydrophobic coatings were fabricated through a one-step electrochemical process onto the surface of 316L stainless steel samples. The presence of hierarchical structures at micro/nanoscale and manganese stearate into the coatings gave superhydrophobicity to the coating, with contact angle of ~160°, and self-cleaning ability. Corrosion resistance of 316L samples was also assessed also after the electrodeposition process through Electrochemical Impedance Spectra recorded in an aqueous solution mimicking seawater condition.Andrea ZafforaFrancesco Di FrancoBartolomeo MegnaMonica SantamariaMDPI AGarticlestainless steel316Lsuperhydrophobicityself-cleaningstearic acidelectrodepositionMining engineering. MetallurgyTN1-997ENMetals, Vol 11, Iss 1867, p 1867 (2021) |
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stainless steel 316L superhydrophobicity self-cleaning stearic acid electrodeposition Mining engineering. Metallurgy TN1-997 |
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stainless steel 316L superhydrophobicity self-cleaning stearic acid electrodeposition Mining engineering. Metallurgy TN1-997 Andrea Zaffora Francesco Di Franco Bartolomeo Megna Monica Santamaria One-Step Electrodeposition of Superhydrophobic Coating on 316L Stainless Steel |
description |
Superhydrophobic coatings were fabricated through a one-step electrochemical process onto the surface of 316L stainless steel samples. The presence of hierarchical structures at micro/nanoscale and manganese stearate into the coatings gave superhydrophobicity to the coating, with contact angle of ~160°, and self-cleaning ability. Corrosion resistance of 316L samples was also assessed also after the electrodeposition process through Electrochemical Impedance Spectra recorded in an aqueous solution mimicking seawater condition. |
format |
article |
author |
Andrea Zaffora Francesco Di Franco Bartolomeo Megna Monica Santamaria |
author_facet |
Andrea Zaffora Francesco Di Franco Bartolomeo Megna Monica Santamaria |
author_sort |
Andrea Zaffora |
title |
One-Step Electrodeposition of Superhydrophobic Coating on 316L Stainless Steel |
title_short |
One-Step Electrodeposition of Superhydrophobic Coating on 316L Stainless Steel |
title_full |
One-Step Electrodeposition of Superhydrophobic Coating on 316L Stainless Steel |
title_fullStr |
One-Step Electrodeposition of Superhydrophobic Coating on 316L Stainless Steel |
title_full_unstemmed |
One-Step Electrodeposition of Superhydrophobic Coating on 316L Stainless Steel |
title_sort |
one-step electrodeposition of superhydrophobic coating on 316l stainless steel |
publisher |
MDPI AG |
publishDate |
2021 |
url |
https://doaj.org/article/dba279cd6b2140bb9b6acad718b29c9d |
work_keys_str_mv |
AT andreazaffora onestepelectrodepositionofsuperhydrophobiccoatingon316lstainlesssteel AT francescodifranco onestepelectrodepositionofsuperhydrophobiccoatingon316lstainlesssteel AT bartolomeomegna onestepelectrodepositionofsuperhydrophobiccoatingon316lstainlesssteel AT monicasantamaria onestepelectrodepositionofsuperhydrophobiccoatingon316lstainlesssteel |
_version_ |
1718411289295847424 |