In this work, a hybrid dual layer surface coating consisting of a silicon (Si) underlayer and poly(ε-caprolactone) (PCL) overlayer was investigated that was designed to reduce the corrosion rates of magnesium-based biomaterials. The Si underlayer was 1.2 μm thick and composed of spherical nanoparticles. The overlayer of PCL was 75.2 μm thick and comprised network of pores. Corrosion-induced reduction of the compressive strength of a Si/PCL-coated Mg–Ca–Bi alloy was lower than that of the uncoated or Si layer-coated alloys. However, the bonding strength of the Si coating (24.6 MPa) was significantly higher than that of the Si/PCL-coated samples (6.8 MPa). The Si/PCL coating dramatically enhances the charge transfer resistance of the Mg alloy...
The major obstacle to the clinical use of magnesium alloys is their fast degradation behaviors. In t...
The use of implants for bone repair has a considerable and successful history. Traditionally, metall...
Bioinspired coatings with decreased corrosion rate and enhanced bond strength are at the core of fut...
In this study, to control the rapid degradation rate of Mg/27.5HA nanocomposite, the single-layered ...
Magnesium (Mg) alloys have great potential as biodegradable materials for medical device. However, t...
To improve corrosion resistance and reduce mechanical properties loss of Mg-Ca-Bi alloy, nano-alumin...
Abstract A composite coating composed of octacalcium phosphate (OCP) and hydroxyapatite (HA) as an u...
This study aimed at investigating the potential modification methods of biodegradable Mg alloy for m...
Nano-hydroxyapatite (HA)/poly(e-caprolactone) (PCL) coatings with thickness of about 45-55 µm were p...
In this study, nano-silicon (Si) thin films were deposited on biodegradable Mg-6Zn-0.8Mn-3Ca substra...
Magnesium alloys are next generation biodegradable implants for clinical applications. However, thei...
A triple-layer NiCrAlY/nano-yttria stabilized zirconia (nano-YSZ)/polycaprolactone (PCL) coating was...
In this work a biofunctional composite coating architecture for controlled corrosion activity and en...
Magnesium and its alloys as biodegradable implant materials provide both biocompatibility and suitab...
The method of hybrid coating formation on the surface of a bioresorbable wrought magnesium alloy and...
The major obstacle to the clinical use of magnesium alloys is their fast degradation behaviors. In t...
The use of implants for bone repair has a considerable and successful history. Traditionally, metall...
Bioinspired coatings with decreased corrosion rate and enhanced bond strength are at the core of fut...
In this study, to control the rapid degradation rate of Mg/27.5HA nanocomposite, the single-layered ...
Magnesium (Mg) alloys have great potential as biodegradable materials for medical device. However, t...
To improve corrosion resistance and reduce mechanical properties loss of Mg-Ca-Bi alloy, nano-alumin...
Abstract A composite coating composed of octacalcium phosphate (OCP) and hydroxyapatite (HA) as an u...
This study aimed at investigating the potential modification methods of biodegradable Mg alloy for m...
Nano-hydroxyapatite (HA)/poly(e-caprolactone) (PCL) coatings with thickness of about 45-55 µm were p...
In this study, nano-silicon (Si) thin films were deposited on biodegradable Mg-6Zn-0.8Mn-3Ca substra...
Magnesium alloys are next generation biodegradable implants for clinical applications. However, thei...
A triple-layer NiCrAlY/nano-yttria stabilized zirconia (nano-YSZ)/polycaprolactone (PCL) coating was...
In this work a biofunctional composite coating architecture for controlled corrosion activity and en...
Magnesium and its alloys as biodegradable implant materials provide both biocompatibility and suitab...
The method of hybrid coating formation on the surface of a bioresorbable wrought magnesium alloy and...
The major obstacle to the clinical use of magnesium alloys is their fast degradation behaviors. In t...
The use of implants for bone repair has a considerable and successful history. Traditionally, metall...
Bioinspired coatings with decreased corrosion rate and enhanced bond strength are at the core of fut...