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A facile method to fabricate the durable and self-protective coating for marine applications.

Authors :
Yang, Hao
Qin, Liguo
Wang, Fei
Mawignon, Fagla Jules
Dong, Mochen
Wu, Yuhao
Zhang, Yali
Ma, Zeyu
Source :
Surface & Coatings Technology. Jan2023, Vol. 452, pN.PAG-N.PAG. 1p.
Publication Year :
2023

Abstract

Endowing coatings with effective protective function for metal substrates is of great interest. An excellent example is slippery liquid infused surface (SLIS) which possesses potential applications owing to its unique liquid repellency and self-cleaning properties. However, their widespread applications are facing obstacles of complex preparation, poor protection and low durability. Herein, a facile and efficient liquid infusion method was proposed to construct SLIS by altering the heterogeneous microstructure on the SiO x layer of the coatings with direct UV irradiation. The coatings were fabricated by conducting an appropriate UV irradiation treatment on polydimethylsiloxane (PDMS) film infused with methyl oleate (MO). The as-prepared transparent anti-fouling coatings showed outstanding anti-fouling properties against various contaminants such as algal (Chlorella), sand, rust (Fe 2 O 3), paints (both water-based and oil-based) and daily life liquid pollutants (e.g., water, coffee, cola, soy sauce and milk). In addition, results revealed that the coatings exhibited a prominent anti-corrosion performance. Moreover, the coatings had excellent mechanical, chemical and thermal durability regarding the great repellency of the pollutants. We proposed this synergistic strategy between lubricant infusion and coating heterogeneous microstructure to widen new possibilities for fabricating coatings with promissing anti-corrosive and anti-fouling functionality. [Display omitted] • A facile liquid infusion method was applied to fabricate slippery liquid infused surface (SLIS). • MO infused PDMS with 90 min UV-ray showed the greatest antifouling and anti-corrosion performance. • Outstanding mechanical, chemical and thermal durability were observed. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
02578972
Volume :
452
Database :
Academic Search Index
Journal :
Surface & Coatings Technology
Publication Type :
Academic Journal
Accession number :
160845013
Full Text :
https://doi.org/10.1016/j.surfcoat.2022.129124