We report here the successful fabrication of nano-whisker hydroxyapatite (nHA) coatings on Mg alloy by using a simple one-step hydrothermal process in aqueous solution. The nHA coating shows uniform structure and high crystallinity. Results indicate that nHA coating is promising for improving the in vitro corrosion and cytocompatibility properties of Mg-based implants and devices for bone tissue engineering. In addition, the simple hydrothermal deposition method used in the current study is also applicable to substrates with complex shapes or surface geometries
The effectiveness of hydroxyapatite (HA) coating prepared by electrodeposition technique in improvin...
Today, Magnesium (Mg) based alloys are receiving increasing attention as potential biodegradable imp...
The use of implants for bone repair has a considerable and successful history. Traditionally, metall...
Magnesium (Mg) and its alloys have shown attractive biocompatibility and mechanical strength for med...
Magnesium and Mg-alloys are suitable replacement to metallic implants (Titanium, stainless steel, Co...
Design of orthopedic implants is a challenging task to cope with desired properties, therefore, nume...
Magnesium alloys as biodegradable metal implants in orthopaedic research received a lot of interest ...
Magnesium and its alloys are biodegradable and biocompatible with elastic modulus close to the natur...
Magnesium and its alloys—a new class of degradable metallic biomaterials—are being increasingly inve...
† These authors contributed equally to this work. * Authors to whom correspondence should be address...
Magnesium (Mg) alloys, a novel class of degradable, metallic biomaterials, have attracted growing in...
The bioactive and biocompatible properties of hydroxyapatite (HA) promote the osseointegration proce...
A thin film of hydroxyapatite (HA) was deposited on AZ31 and Mg-Ca alloys by using radio frequency (...
Paper presents study on the hydrothermal treatment for hydroxyapatite layer formation on the differe...
Magnesium (Mg) alloys, a novel class of degradable, metallic biomaterials, have attracted growing in...
The effectiveness of hydroxyapatite (HA) coating prepared by electrodeposition technique in improvin...
Today, Magnesium (Mg) based alloys are receiving increasing attention as potential biodegradable imp...
The use of implants for bone repair has a considerable and successful history. Traditionally, metall...
Magnesium (Mg) and its alloys have shown attractive biocompatibility and mechanical strength for med...
Magnesium and Mg-alloys are suitable replacement to metallic implants (Titanium, stainless steel, Co...
Design of orthopedic implants is a challenging task to cope with desired properties, therefore, nume...
Magnesium alloys as biodegradable metal implants in orthopaedic research received a lot of interest ...
Magnesium and its alloys are biodegradable and biocompatible with elastic modulus close to the natur...
Magnesium and its alloys—a new class of degradable metallic biomaterials—are being increasingly inve...
† These authors contributed equally to this work. * Authors to whom correspondence should be address...
Magnesium (Mg) alloys, a novel class of degradable, metallic biomaterials, have attracted growing in...
The bioactive and biocompatible properties of hydroxyapatite (HA) promote the osseointegration proce...
A thin film of hydroxyapatite (HA) was deposited on AZ31 and Mg-Ca alloys by using radio frequency (...
Paper presents study on the hydrothermal treatment for hydroxyapatite layer formation on the differe...
Magnesium (Mg) alloys, a novel class of degradable, metallic biomaterials, have attracted growing in...
The effectiveness of hydroxyapatite (HA) coating prepared by electrodeposition technique in improvin...
Today, Magnesium (Mg) based alloys are receiving increasing attention as potential biodegradable imp...
The use of implants for bone repair has a considerable and successful history. Traditionally, metall...