The method of hybrid coating formation on the surface of a bioresorbable wrought magnesium alloy and magnesium obtained by additive technology was proposed. Plasma electrolytic oxidation (PEO) with subsequent treatment of the material using an organic biocompatible corrosion inhibitor and a bioresorbable polymer material was used to obtain the protective layers. The optimal method of surface treatment was suggested. Using SEM/EDX analysis, XRD, XPS, and confocal Raman microspectroscopy, the composition of the formed surface layers was determined. The corrosion protection performance of the formed coatings was studied by potentiodynamic polarization and electrochemical impedance spectroscopy techniques in 0.9 wt.% NaCl and HBSS. Hydrogen evo...
The optimal mechanical properties render magnesium widely used in industrial and biomedical applicat...
Magnesium and its alloys have been in the focus of investigation as a material for biomedical applic...
The results of surface modification of magnesium alloys by plasma electrolytic oxidation (PEO) and p...
The high susceptibility to corrosion limits the broad application of magnesium alloys, and therefore...
As the lightest structural metal and having a natural ionic presence with compatible biological syst...
In this research, thin layers of magnesium oxide (MgO) were formed on the surface of biodegradable A...
Mg alloys are very susceptible to corrosion in physiological media. This behaviour limits its widesp...
In this work a biofunctional composite coating architecture for controlled corrosion activity and en...
As the lightest structural metal and having a natural ionic presence with compatible biological syst...
The application of a biodegradable conducting polymer coating based on a polythiophene composite (PT...
An attempt was made to seal the porous silicate-based plasma electrolytic oxidation (PEO) layer on p...
An attempt was made to seal the porous silicate-based plasma electrolytic oxidation (PEO) layer on p...
An attempt was made to seal the porous silicate-based plasma electrolytic oxidation (PEO) layer on p...
In the field of biodegradable material, a new research area has emerged for magnesium (Mg) and its a...
The optimal mechanical properties render magnesium widely used in industrial and biomedical applicat...
The optimal mechanical properties render magnesium widely used in industrial and biomedical applicat...
Magnesium and its alloys have been in the focus of investigation as a material for biomedical applic...
The results of surface modification of magnesium alloys by plasma electrolytic oxidation (PEO) and p...
The high susceptibility to corrosion limits the broad application of magnesium alloys, and therefore...
As the lightest structural metal and having a natural ionic presence with compatible biological syst...
In this research, thin layers of magnesium oxide (MgO) were formed on the surface of biodegradable A...
Mg alloys are very susceptible to corrosion in physiological media. This behaviour limits its widesp...
In this work a biofunctional composite coating architecture for controlled corrosion activity and en...
As the lightest structural metal and having a natural ionic presence with compatible biological syst...
The application of a biodegradable conducting polymer coating based on a polythiophene composite (PT...
An attempt was made to seal the porous silicate-based plasma electrolytic oxidation (PEO) layer on p...
An attempt was made to seal the porous silicate-based plasma electrolytic oxidation (PEO) layer on p...
An attempt was made to seal the porous silicate-based plasma electrolytic oxidation (PEO) layer on p...
In the field of biodegradable material, a new research area has emerged for magnesium (Mg) and its a...
The optimal mechanical properties render magnesium widely used in industrial and biomedical applicat...
The optimal mechanical properties render magnesium widely used in industrial and biomedical applicat...
Magnesium and its alloys have been in the focus of investigation as a material for biomedical applic...
The results of surface modification of magnesium alloys by plasma electrolytic oxidation (PEO) and p...