Mg-Ca0.3 Electrochemical Activity Exposed to Hank’s Physiological Solution and Properties of Ag-Nano-Particles Deposits

This work compares the degradation of Mg and Mg-Ca0.3 alloy when they are exposed for 14 days to Hank’s solution at 37 °C. A combination of immersion test, electrochemical techniques (PDP, EIS, EN), and surface characterization methods (SEM-EDS, XRD, and XPS) were carried out. The pH change over tim...

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Autores principales: González Murguía, José Luis, Veleva, Lucien, Rodríguez Gattorno, Geonel, Figueroa Torres, Mayra Zyzlila, Feliu, Sebastián
Formato: Artículo
Lenguaje:inglés
Publicado: Molecular Diversity Preservation International 2021
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Acceso en línea:http://eprints.uanl.mx/25596/1/25596.pdf
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author González Murguía, José Luis
Veleva, Lucien
Rodríguez Gattorno, Geonel
Figueroa Torres, Mayra Zyzlila
Feliu, Sebastián
author_facet González Murguía, José Luis
Veleva, Lucien
Rodríguez Gattorno, Geonel
Figueroa Torres, Mayra Zyzlila
Feliu, Sebastián
author_sort González Murguía, José Luis
collection Repositorio Institucional
description This work compares the degradation of Mg and Mg-Ca0.3 alloy when they are exposed for 14 days to Hank’s solution at 37 °C. A combination of immersion test, electrochemical techniques (PDP, EIS, EN), and surface characterization methods (SEM-EDS, XRD, and XPS) were carried out. The pH change over time, the lower mass loss (≈20%), and the lower concentration of the released Mg2+ ions (≈3.6 times), as well as the lower level of the surface degradation, allowed to consider the positive effect of Ca, presenting Mg-Ca0.3 alloy with lower electrochemical activity than that of Mg. The positive effect of Ca may be due to the formed layer characteristics on the alloy surface, which impedes the cathodic hydrogen evolution and Mg-ions release. The electroless deposited Ag-nano-particles (Ag-NPs) on Mg-Ca0.3 surface were characterized by SEM-EDS, XRD, UV-Vis, and contact angle. The agar-diffusion test was used to compare the growth of Staphylococcus aureus and Escherichia coli bacteria on Mg-Ca0.3 in the presence of Ag-NPs deposits in different size. Zeta-potential of the bacteria was negative, with respect to pH of the Mueller-Hinton culture broth. The greater antibacterial effect of S. aureus was attributed to its more negative zeta-potential, attracting more released Ag+ ions.
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spelling eprints-255962023-06-20T22:28:12Z http://eprints.uanl.mx/25596/ Mg-Ca0.3 Electrochemical Activity Exposed to Hank’s Physiological Solution and Properties of Ag-Nano-Particles Deposits González Murguía, José Luis Veleva, Lucien Rodríguez Gattorno, Geonel Figueroa Torres, Mayra Zyzlila Feliu, Sebastián TN Ingeniería Minera. Metalurgia This work compares the degradation of Mg and Mg-Ca0.3 alloy when they are exposed for 14 days to Hank’s solution at 37 °C. A combination of immersion test, electrochemical techniques (PDP, EIS, EN), and surface characterization methods (SEM-EDS, XRD, and XPS) were carried out. The pH change over time, the lower mass loss (≈20%), and the lower concentration of the released Mg2+ ions (≈3.6 times), as well as the lower level of the surface degradation, allowed to consider the positive effect of Ca, presenting Mg-Ca0.3 alloy with lower electrochemical activity than that of Mg. The positive effect of Ca may be due to the formed layer characteristics on the alloy surface, which impedes the cathodic hydrogen evolution and Mg-ions release. The electroless deposited Ag-nano-particles (Ag-NPs) on Mg-Ca0.3 surface were characterized by SEM-EDS, XRD, UV-Vis, and contact angle. The agar-diffusion test was used to compare the growth of Staphylococcus aureus and Escherichia coli bacteria on Mg-Ca0.3 in the presence of Ag-NPs deposits in different size. Zeta-potential of the bacteria was negative, with respect to pH of the Mueller-Hinton culture broth. The greater antibacterial effect of S. aureus was attributed to its more negative zeta-potential, attracting more released Ag+ ions. Molecular Diversity Preservation International 2021 Article PeerReviewed text en cc_by_nc_nd http://eprints.uanl.mx/25596/1/25596.pdf http://eprints.uanl.mx/25596/1.haspreviewThumbnailVersion/25596.pdf González Murguía, José Luis y Veleva, Lucien y Rodríguez Gattorno, Geonel y Figueroa Torres, Mayra Zyzlila y Feliu, Sebastián (2021) Mg-Ca0.3 Electrochemical Activity Exposed to Hank’s Physiological Solution and Properties of Ag-Nano-Particles Deposits. Metals, 11 (9). pp. 1-24. ISSN 2075-4701 http://doi.org/10.3390/met11091357 doi:10.3390/met11091357
spellingShingle TN Ingeniería Minera. Metalurgia
González Murguía, José Luis
Veleva, Lucien
Rodríguez Gattorno, Geonel
Figueroa Torres, Mayra Zyzlila
Feliu, Sebastián
Mg-Ca0.3 Electrochemical Activity Exposed to Hank’s Physiological Solution and Properties of Ag-Nano-Particles Deposits
thumbnail https://rediab.uanl.mx/themes/sandal5/images/online.png
title Mg-Ca0.3 Electrochemical Activity Exposed to Hank’s Physiological Solution and Properties of Ag-Nano-Particles Deposits
title_full Mg-Ca0.3 Electrochemical Activity Exposed to Hank’s Physiological Solution and Properties of Ag-Nano-Particles Deposits
title_fullStr Mg-Ca0.3 Electrochemical Activity Exposed to Hank’s Physiological Solution and Properties of Ag-Nano-Particles Deposits
title_full_unstemmed Mg-Ca0.3 Electrochemical Activity Exposed to Hank’s Physiological Solution and Properties of Ag-Nano-Particles Deposits
title_short Mg-Ca0.3 Electrochemical Activity Exposed to Hank’s Physiological Solution and Properties of Ag-Nano-Particles Deposits
title_sort mg ca0 3 electrochemical activity exposed to hank s physiological solution and properties of ag nano particles deposits
topic TN Ingeniería Minera. Metalurgia
url http://eprints.uanl.mx/25596/1/25596.pdf
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