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Anticorrosive and Antibacterial Evaluation of ZnO Nanoscale Sheets Electrosynthesized onto Ti6Al4V and Nitinol Alloys Previously Modified by Chemical Oxidation in H2O2

Martínez, Alejandra Leonor et al · Springer · 2024

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Titanium and its alloys have a crucial function in the biomaterial field. Nonetheless, susceptibility to infections is an important drawback that needs to be considered. In this context, current research on antibacterial materials for implants is a promising solution, and antibacterial coatings have considerable potential for medical applications. Within this work, the effect of ZnO nanoscale sheets (NS) electrosynthesized onto Ti6Al4V and Nitinol (NiTi) alloys was studied. These samples were previously chemically oxidized in hydrogen peroxide (H2O2) solution to improve their corrosion resistance. The anticorrosive effectiveness of ZnO NS was tested through different electrochemical techniques (open circuit potential (OCP), Tafel polarization, linear sweep voltammetry (LSV), chronoamperometry (CA) and electrochemical impedance spectroscopy (EIS)), performed in Ringer solution at body temperature. The surface morphology and elemental composition was determined employing scanning electron microscopy (SEM) and energy dispersive X-ray (EDS), while X-ray photoelectron spectroscopy (XPS) was used to study the surface chemistry and composition. The presence of ZnO decreases the corrosion current density in Ringer solution contrasting with the untreated Ti alloys. The antibacterial activity of the treated surfaces was evaluated using three bacterial colonies: S. Aureus, S. Mutans and E. Coli. The ZnO NS grown on Ti6Al4V and NiTi alloys produce the inhibition of S. Aureus and S. Mutans. The findings indicate that the combination of chemical oxidation and electrochemically grown nanostructures produce a hydrophobic surface that reduces the bacteria adhesion. Fil: Martínez, Alejandra Leonor. Consejo Nacional de Investigaciones Científicas y Técnicas. Centro Científico Tecnológico Conicet - Bahía Blanca; Argentina. Universidad Nacional del Sur. Departamento de Ingeniería Química. Instituto de Ingeniería Electroquímica y Corrosión; Argentina Fil: Saugo, Melisa. Consejo Nacional de Investigaciones Científicas y Técnicas. Centro Científico Tecnológico Conicet - Patagonia Confluencia. Instituto de Investigación En Tecnologías y Ciencias de la Ingeniería. Universidad Nacional del Comahue. Instituto de Investigación En Tecnologías y Ciencias de la Ingeniería; Argentina

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APA 7

Martínez, A. L. E. A. (2024). Anticorrosive and Antibacterial Evaluation of ZnO Nanoscale Sheets Electrosynthesized onto Ti6Al4V and Nitinol Alloys Previously Modified by Chemical Oxidation in H2O2. http://hdl.handle.net/11336/252724

MLA

Martínez, Alejandra Leonor et al. "Anticorrosive and Antibacterial Evaluation of ZnO Nanoscale Sheets Electrosynthesized onto Ti6Al4V and Nitinol Alloys Previously Modified by Chemical Oxidation in H2O2." 2024. http://hdl.handle.net/11336/252724.

Chicago

Martínez, Alejandra Leonor et al. 2024. "Anticorrosive and Antibacterial Evaluation of ZnO Nanoscale Sheets Electrosynthesized onto Ti6Al4V and Nitinol Alloys Previously Modified by Chemical Oxidation in H2O2.". http://hdl.handle.net/11336/252724.

Harvard

Martínez, A. L. E. A. 2024, Anticorrosive and Antibacterial Evaluation of ZnO Nanoscale Sheets Electrosynthesized onto Ti6Al4V and Nitinol Alloys Previously Modified by Chemical Oxidation in H2O2, Springer, available at: http://hdl.handle.net/11336/252724 [Accessed 6 Aug. 2026].

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Título
Anticorrosive and Antibacterial Evaluation of ZnO Nanoscale Sheets Electrosynthesized onto Ti6Al4V and Nitinol Alloys Previously Modified by Chemical Oxidation in H2O2
Autor / colaboradores
Martínez, Alejandra Leonor et al
Editora
Springer
Ano de publicação
2024
ISSN
1059-9495
ISSN
1059-9495
Idioma
Inglés

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