Surface modification of metallic implants is a promising strategy to improve tissue tolerance, osseointegration and corrosion resistance of them. In the present work, bioactive and biocompatible organic-inorganic hybrid coatings were prepared using a sol-gel dip coating route. They consist of an inorganic TiO2 matrix in which different percentages of poly(\u3b5-caprolactone) (PCL), a biodegradable and biocompatible polymer, were incorporated. The coatings were used to modify the surface of Ti6Al4V substrates in order to improve their wear and corrosion resistance. The chemical structure of the coatings was analyzed by attenuated total reflectance (ATR) Fourier transform infrared (FTIR) spectroscopy. Coating microstructure, mechanical proper...
Organic-inorganic hybrid materials based on zirconia and polyethylene glycol (PEG) have been synthes...
In order to improve the bioactivity and biocompatibility of titanium (Ti) implants, we designed a no...
522-528Titanium and titanium alloys are extensively used in biomedical, cardiac and cardiovascular a...
Surface modification of metallic implants is a promising strategy to improve tissue tolerance, osseo...
Organic-inorganic hybrid coatings based on zirconia and poly (ε-caprolactone) (PCL) were prepared by...
Class I organic/inorganic hybrid materials have been synthesized by sol-gel method from a multicompo...
Class I organic/inorganic hybrid materials have been synthesized by sol–gel method from a multicompo...
When bioactive coatings are applied to medical implants by means of sol-gel dip coating technique, t...
The surface modification of implantable materials in order to improve their biological proprieties, ...
<div><p>Heart diseases affect part of world population and generally involves the functioning of val...
When surface-reactive (bioactive) coatings are applied to medical implants by means of the sol-gel d...
The biological properties of medical implants can be enhanced through surface modifications such as ...
Although metallic implants are the most used in dental and orthopaedic fields, they can early fail d...
In the present work, the application of functional coatings on metallic implants was proposed to del...
Surface modification of biomedical implants is an established strategy to improve tissue regeneratio...
Organic-inorganic hybrid materials based on zirconia and polyethylene glycol (PEG) have been synthes...
In order to improve the bioactivity and biocompatibility of titanium (Ti) implants, we designed a no...
522-528Titanium and titanium alloys are extensively used in biomedical, cardiac and cardiovascular a...
Surface modification of metallic implants is a promising strategy to improve tissue tolerance, osseo...
Organic-inorganic hybrid coatings based on zirconia and poly (ε-caprolactone) (PCL) were prepared by...
Class I organic/inorganic hybrid materials have been synthesized by sol-gel method from a multicompo...
Class I organic/inorganic hybrid materials have been synthesized by sol–gel method from a multicompo...
When bioactive coatings are applied to medical implants by means of sol-gel dip coating technique, t...
The surface modification of implantable materials in order to improve their biological proprieties, ...
<div><p>Heart diseases affect part of world population and generally involves the functioning of val...
When surface-reactive (bioactive) coatings are applied to medical implants by means of the sol-gel d...
The biological properties of medical implants can be enhanced through surface modifications such as ...
Although metallic implants are the most used in dental and orthopaedic fields, they can early fail d...
In the present work, the application of functional coatings on metallic implants was proposed to del...
Surface modification of biomedical implants is an established strategy to improve tissue regeneratio...
Organic-inorganic hybrid materials based on zirconia and polyethylene glycol (PEG) have been synthes...
In order to improve the bioactivity and biocompatibility of titanium (Ti) implants, we designed a no...
522-528Titanium and titanium alloys are extensively used in biomedical, cardiac and cardiovascular a...