Eco-Friendly Sol–Gel Coatings with Organic Corrosion Inhibitors for Lightweight AZ61 Alloy

Author:

Domínguez-Martínez Jorge1,López-Sánchez Jesús2ORCID,García-Galván Federico3ORCID,Serrano Aída2ORCID,Barranco Violeta4ORCID,Galván Juan Carlos4ORCID,Rodríguez de la Fuente Óscar15,Carmona Noemí15ORCID

Affiliation:

1. Department of Materials Physics, Universidad Complutense de Madrid (UCM), 28040 Madrid, Spain

2. Department of Electroceramics, Instituto de Cerámica y Vidrio (ICV-CSIC), 28049 Madrid, Spain

3. Department of Engineering, School of Architecture, Engineering and Design, Universidad Europea de Madrid, 28670 Villaviciosa de Odón, Spain

4. National Center for Metallurgical Research (CENIM-CSIC), Avda. Gregorio del Amo 8, 28040 Madrid, Spain

5. Applied Magnetism Institute (IMA) “Salvador Velayos”, A6 Km 22,5, Las Rozas, 28230 Madrid, Spain

Abstract

The latest advances in technology and materials science have catalyzed a transformative shift towards the adoption of environmentally conscious and lightweight materials across key sectors such as aeronautics, biomedical, and automotive industries. Noteworthy among these innovations are the magnesium-aluminum (Mg-Al) alloys employed in aeronautical applications, contributing to the overall reduction in aircraft weight and subsequently diminishing fuel consumption and mitigating atmospheric emissions. The present work delves into a study of the anti-corrosive properties inherent in various sol-gel coatings, leveraging a range of environmentally friendly corrosion inhibitors, specifically tailored for samples of the AZ61 alloy. Methodologically, the work involves the synthesis and application of sol-gel coatings on AZ61 alloy containing eco-friendly inhibitors: L-cysteine, N-acetyl-cysteine, curcumin and methylene blue. Subsequently, an accelerated corrosion test in a simulated saline environment is performed. Through microstructural and compositional analyses, the best inhibitors responses are achieved with inhibitors containing S, N heteroatoms and conjugated double bonds in their structure, probably due to the creation of a continuous MgCl2 layer. This research contributes to the ongoing discourse on protective eco-coatings, aligning with the broader paradigm shift towards sustainable and lightweight materials in key industries.

Funder

Ministry of Science and Innovation

Publisher

MDPI AG

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