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Ce nanoparticles and sol-gel hybrid organic-inorganic coatings maximize corrosion protection in the anodized AA2024-T3

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Autor(es):
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Ramirez, O. M. Prada ; Kremmer, T. M. ; Marin, J. H. ; da Silva, B. P. ; Starykevich, M. ; Tunes, M. A. ; Ferreira, M. G. S. ; Aoki, I. V. ; Ando, R. A. ; Pogatscher, S. ; de Melo, H. G.
Número total de Autores: 11
Tipo de documento: Artigo Científico
Fonte: Corrosion Science; v. 221, p. 21-pg., 2023-08-15.
Resumo

We demonstrate that the corrosion resistance of the AA2024-T3 alloy can be maximized with the application of top protective sol-gel hybrid organic-inorganic coatings. Samples combining Ce nanoparticles within the pores of the anodic layer with the top sol-gel coatings were observed to outperform samples featuring only the coating. This research unravels the self-healing capability against corrosion of the sol-gel coating when Ce nanoparticles are present, as well as a good coverage of defective regions within the oxide by the hybrid layer. This research opens a paradigm aiming at maximizing the corrosion resistance for non-ferrous anodized alloys. (AU)

Processo FAPESP: 18/01096-5 - Estudo da corrosão da liga AA2024-T3 anodizada em TSA e protegida com íons Ce e por revestimento híbrido sol-gel
Beneficiário:Hercílio Gomes de Melo
Modalidade de apoio: Auxílio à Pesquisa - Regular