A Comparative Study on the Corrosion Resistance and Long-Term Stability of Hierarchical Superhydrophobic Nickel Coatings Obtained by One-Step and Two-Step Electrodeposition Processes

(2025) A Comparative Study on the Corrosion Resistance and Long-Term Stability of Hierarchical Superhydrophobic Nickel Coatings Obtained by One-Step and Two-Step Electrodeposition Processes. Journal of Materials Engineering and Performance. pp. 14661-14669. ISSN 10599495 (ISSN)

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Abstract

Hierarchically structured nickel coating is a special type of coating with both micro- and nano-scale features, which give rise to its superhydrophobic properties. This study compares these coatings obtained via two electroplating methods, one-step and two-step processes. The one-step method, utilizing an organic bath, achieves hierarchical structure formation and surface energy reduction simultaneously, without requiring a 2-week air storage post-electrodeposition. Water contact angles of 155.7 ± 0.3 and 172.3 ± 0.2° were observed for the two-step and one-step coatings, respectively. Electrochemical analyses reveal a 50 reduction in corrosion current density and a threefold increase in charge transfer resistance for the one-step coating, indicating superior corrosion performance compared to the two-step coating. Long-term durability studies under saline conditions demonstrated the one-step coating is superior in maintaining hydrophobicity and corrosion resistance over extended immersion periods. Notably, the one-step coating exhibits sustained performance, maintaining a Wenzel (petal) state and higher charge transfer resistance (≈ 10 kΩ cm2) even after 9 days of immersion, while the two-step coating experiences substrate penetration by saline solution. © ASM International 2024.

Item Type: Article
Keywords: corrosion resistance electrodeposition hierarchical structure long-term durability petal effect superhydrophobic coating Aluminum coatings Aluminum corrosion Electrochemical corrosion Electroplating Nickel coatings Charge transfer resistance Comparatives studies Hierarchical structures Long term durability Long term stability Petal effects Superhydrophobic Superhydrophobic coatings Two-step coatings Two-step electrodepositions Corrosion resistant coatings
Page Range: pp. 14661-14669
Journal or Publication Title: Journal of Materials Engineering and Performance
Journal Index: Scopus
Volume: 34
Number: 14
Identification Number: https://doi.org/10.1007/s11665-024-10165-7
ISSN: 10599495 (ISSN)
Depositing User: خانم ناهید ضیائی
URI: http://eprints.mui.ac.ir/id/eprint/31982

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