Synergistic effect of oxide nanoparticles and inorganic inhibitor on anti-corrosion performance of epoxy coating
Anti-Corrosion Methods and Materials
ISSN: 0003-5599
Article publication date: 22 February 2024
Issue publication date: 26 April 2024
Abstract
Purpose
This study aims to explore the synergistic effect of oxide nanoparticles (ZnO, Fe2O3, SiO2) and cerium nitrate inhibitor on anti-corrosion performance of epoxy coating. First, cerium nitrate inhibitors are absorbed on the surface of various oxide nanoparticles. Thereafter, epoxy nanocomposite coatings have been fabricated on carbon steel substrate using these oxide@Ce nanoparticles as both nano-fillers and nano-inhibitors.
Design/methodology/approach
To evaluate the impact of oxides@Ce nanoparticles on mechanical properties of epoxy coating, the abrasion resistance and impact resistance of epoxy coatings have been examined. To study the impact of oxides@Ce nanoparticles on anti-corrosion performance of epoxy coating for steel, the electrochemical impedance spectroscopy has been carried out in 3% NaCl solution.
Findings
ZnO@Ce3+ and SiO2@Ce3+ nanoparticles provide more enhancement in the epoxy pore network than modification of the epoxy/steel interface. Whereas, Fe2O3@Ce3+ nanoparticles have more to do with modification of the epoxy/steel interface than to change the epoxy pore network.
Originality/value
Incorporation of both oxide nanoparticles and inorganic inhibitor into the epoxy resin is a promising approach for enhancing the anti-corrosion performance of carbon steel.
Keywords
Acknowledgements
The authors would like to thank the financial support of the Vietnam National Foundation for Science and Technology Development (NAFOSTED, Grant # 104.02–2020.26).
Citation
Nguyen, T.V., Do Truc, V., Nguyen, T.A. and Tran, D.L. (2024), "Synergistic effect of oxide nanoparticles and inorganic inhibitor on anti-corrosion performance of epoxy coating", Anti-Corrosion Methods and Materials, Vol. 71 No. 3, pp. 225-240. https://doi.org/10.1108/ACMM-06-2023-2835
Publisher
:Emerald Publishing Limited
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