Please use this identifier to cite or link to this item: http://localhost:8080/xmlui/handle/123456789/4810
Title: Fluorine free nanoparticles for superhydrophobic, self-cleaning, and anticorrosive epoxy coatings for steel protection in marine medium
Authors: Veedu, K K
Kalarikkal, T P
Jayakumar, N
Gopalan, N K
Keywords: superhydrophobicity
inorganic-organic ester
epoxy coating
anticorrosivity
self-cleaning
marine medium
Issue Date: 1-Feb-2024
Publisher: Elsevier
Citation: Results in Surfaces and Interfaces; 14:100195
Abstract: Cerium myristate nanoparticles were introduced as a superhydrophobic, anticorrosive additive for protecting steel corrosion in the marine medium. Cerium myristate nanoparticles with hydrophobic characteristics were synthesized via a facile strategy. The microscopic analysis revealed square-shaped cerium myristate nanoparticles. Cerium myristate-epoxy coatings exhibited a maximum contact angle (151.7°) at 15 wt% myristic acid. The surface analysis of the coatings through atomic force microscopy (AFM), determined the roughness factor Ra = 216 nm. The superhydrophobic epoxy coatings significantly minimized the contact area of steel and corrosive medium and beneficiated a three-fold increment in the corrosion resistance than bare epoxy coating. The electrochemical analysis of the coating provided conclusive evidence for the above. In addition, the prepared coating exhibited excellent self-cleaning ability, providing further advantage to protect the coating from external contaminants in seawater. The present work established a fluorine free, self-cleaning, anticorrosive and superhydrophobic cerium myristate deposited epoxy coating through a simple route for protecting steel from marine environment.
URI: https://www.sciencedirect.com/science/article/pii/S2666845924000151?via%3Dihub
http://localhost:8080/xmlui/handle/123456789/4810
Appears in Collections:2024

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