In this study, an attempt was made to improve the packing density of calcium phosphate (CaP) coating on a magnesium alloy by tailoring the coating solution for enhanced degradation resistance of the alloy for implant applications. An organic solvent, ethanol, was added to the coating solution to decrease the conductivity of the coating solution so that hydrogen bubble formation/bursting reduces during the CaP coating process. Experimental results confirmed that ethanol addition to the coating solution reduces the conductivity of the solution and also decreases the hydrogen evolution/bubble bursting. In vitro electrochemical experiments, that is, electrochemical impedance spectroscopy (EIS) and potentiodynamic polarization showed that CaP co...
In this study, a magnesium alloy (AZ91) was coated with calcium phosphate using potentiostatic pulse...
In recent years, there has been a growing interest in the development of biodegradable implants for ...
Magnesium is an attractive metallic material for temporary implant applications. Magnesium readily d...
In this study, an attempt was made to improve the packing density of calcium phosphate (CaP) coating...
A magnesium alloy, AZ91, was coated with calcium phosphate using pulse-potential method in ethanol c...
The aim of this study was to investigate whether the cathodic activity of magnesium alloys plays a s...
The effect of a hybrid coating, calcium phosphate (CaP) + polylactic acid (PLA), on a magnesium allo...
Calcium phosphate (CaP) was electrochemically coated on a magnesium–calcium (Mg–Ca) alloy using an u...
The use of implants for bone repair has a considerable and successful history. Traditionally, metall...
Magnesium has attracted considerable medical interest due to its mechanical properties being similar...
Calcium phosphate (CaPh) coatings are considered promising surface treatments for Mg-based implants....
Magnesium alloys are attractive for use as biodegradable materials for temporary implant application...
For many years, calcium phosphate coatings to tailor the degradation behavior of magnesium and magne...
Magnesium alloys have promising mechanical and biological properties for the development of degradab...
The main objective of the current work was to fabricate calcium phosphate (CaP) coating on 99.9% pur...
In this study, a magnesium alloy (AZ91) was coated with calcium phosphate using potentiostatic pulse...
In recent years, there has been a growing interest in the development of biodegradable implants for ...
Magnesium is an attractive metallic material for temporary implant applications. Magnesium readily d...
In this study, an attempt was made to improve the packing density of calcium phosphate (CaP) coating...
A magnesium alloy, AZ91, was coated with calcium phosphate using pulse-potential method in ethanol c...
The aim of this study was to investigate whether the cathodic activity of magnesium alloys plays a s...
The effect of a hybrid coating, calcium phosphate (CaP) + polylactic acid (PLA), on a magnesium allo...
Calcium phosphate (CaP) was electrochemically coated on a magnesium–calcium (Mg–Ca) alloy using an u...
The use of implants for bone repair has a considerable and successful history. Traditionally, metall...
Magnesium has attracted considerable medical interest due to its mechanical properties being similar...
Calcium phosphate (CaPh) coatings are considered promising surface treatments for Mg-based implants....
Magnesium alloys are attractive for use as biodegradable materials for temporary implant application...
For many years, calcium phosphate coatings to tailor the degradation behavior of magnesium and magne...
Magnesium alloys have promising mechanical and biological properties for the development of degradab...
The main objective of the current work was to fabricate calcium phosphate (CaP) coating on 99.9% pur...
In this study, a magnesium alloy (AZ91) was coated with calcium phosphate using potentiostatic pulse...
In recent years, there has been a growing interest in the development of biodegradable implants for ...
Magnesium is an attractive metallic material for temporary implant applications. Magnesium readily d...