[EN] TaN(Ag) composited coatings are being investigated to improve biocompatibility of different biomedical devices due to the mechanical and chemical stability of TaN and bactericidal effect of silver nanoparticles. However, controlling the size, density, shape and especially the release of silver ions (Ag) into the surrounding medium becomes a challenge, since elevated levels of Ag could be cytotoxic. The aim of this work is to design and develop a new Ta/TaN/TaNx(Ag)y/TaN coating system, deposited by unbalanced DC magnetron sputtering technique, presenting an adequate balance between biocompatibility and bactericidal effect for potential applications in biomedical field. For this purpose, four different coating systems were deposited on ...
Microbiologically induced corrosion (MIC) of metallic devices/implants in the oral region is one maj...
Bioactivity investigations of titania nanotube (TNT) coatings enriched with silver nanograins (TNT/A...
Orthopedic infections pose severe societal and economic burden and interfere with the capability of ...
In this work, a TaN(Ag) composite coating with different silver contents between 2.26 and 28.51 %at,...
Previous studies have shown both Ta and TaeO to be bioactive, rapidly forming a strongly-bonded surf...
The use of dental implants is sometimes accompanied by failure due to periimplantitis disease and su...
Surface modification of bulk materials used in biomedical applications has become an important prere...
The increasing demand for sustainable products requires the development of new knowledge-based mater...
Nosocomial infections are a major clinical concern, posing great risks for patients and rising costs...
The study aims to advance the applicability of titanium alloys as bone implant materials by tackling...
Plasma enhanced atomic layer deposition (PEALD) of silver nanoparticles on the surface of 1-D titani...
One of the main reasons for biomedical implants failure is the generation of wear debris together w...
<div><p>Microbiologically induced corrosion (MIC) of metallic devices/implants in the oral region is...
Biomedical implant failure arises mainly from the degradation caused by tribological processes occur...
Plasma enhanced atomic layer deposition (PEALD) of silver nanoparticles on the surface of 1-D titani...
Microbiologically induced corrosion (MIC) of metallic devices/implants in the oral region is one maj...
Bioactivity investigations of titania nanotube (TNT) coatings enriched with silver nanograins (TNT/A...
Orthopedic infections pose severe societal and economic burden and interfere with the capability of ...
In this work, a TaN(Ag) composite coating with different silver contents between 2.26 and 28.51 %at,...
Previous studies have shown both Ta and TaeO to be bioactive, rapidly forming a strongly-bonded surf...
The use of dental implants is sometimes accompanied by failure due to periimplantitis disease and su...
Surface modification of bulk materials used in biomedical applications has become an important prere...
The increasing demand for sustainable products requires the development of new knowledge-based mater...
Nosocomial infections are a major clinical concern, posing great risks for patients and rising costs...
The study aims to advance the applicability of titanium alloys as bone implant materials by tackling...
Plasma enhanced atomic layer deposition (PEALD) of silver nanoparticles on the surface of 1-D titani...
One of the main reasons for biomedical implants failure is the generation of wear debris together w...
<div><p>Microbiologically induced corrosion (MIC) of metallic devices/implants in the oral region is...
Biomedical implant failure arises mainly from the degradation caused by tribological processes occur...
Plasma enhanced atomic layer deposition (PEALD) of silver nanoparticles on the surface of 1-D titani...
Microbiologically induced corrosion (MIC) of metallic devices/implants in the oral region is one maj...
Bioactivity investigations of titania nanotube (TNT) coatings enriched with silver nanograins (TNT/A...
Orthopedic infections pose severe societal and economic burden and interfere with the capability of ...