International audienceThe influence of gas nitriding surface treatment on the superelastic Ti-23Nb-0.7Ta-2Zr-0.5N alloy was evaluated. A thorough characterization of bare and nitrided Ti-based alloy and pure Ti was performed in terms of surface film composition and morphology, electrochemical behaviour, and short term osteoblast response. XPS analysis showed that the nitriding treatment strongly influenced the composition (nitrides and oxynitrides) and surface properties both of the substrate and of the bulk alloy. SEM images revealed that the nitrided surface appears as a similar dotted pattern caused by the formation of N-rich domains coexisting with less nitrided domains, while before treatment only topographical features could be observ...
The nearly equiatomic Ni-Ti alloy (Nitinol) has been widely employed in the medical and dental field...
A potential new Ni-free Ti alloy for biomedical applications was assessed in order to investigate th...
The influence of surface treatments on the microstructure, in vitro bioactivity and corrosion protec...
International audienceIn the present work, nitrogen ion implantation (original method) to enhance th...
International audienceTo enhance their longevity, dental implants must be highly biocompatible and m...
International audienceA new superelastic Ti-23Hf-3Mo-4Sn biomedical alloy displaying a particularly ...
Nickel-titanium shape memory alloys (NiTi) have attracted much attention as orthopedic materials due...
International audienceIn this study, the new Hardion+ micro-implanter technology was used to modify ...
Ti–25Nb–3Zr–2Sn–3Mo (TLM) alloys have been used in orthopaedics due to their excellent biocompatibil...
Supplementary information files for Physico-chemical characterisation of Ti-Nb-Sn alloys surfaces an...
A new superelastic Ti‐23Hf‐3Mo‐4Sn biomedical alloy displaying a particularly large recovery strain ...
International audienceWithin the framework of this work, we developed a nitriding process on biocomp...
The surface of NiTi alloy was chemically modified using acidified ferric chloride solution and the c...
Implanted tissue engineering devices interact with the host tissue through their surface in the firs...
The bioactivity and the corrosion protection for a novel nano-grained Ti-20Nb-13Zr at % alloy were e...
The nearly equiatomic Ni-Ti alloy (Nitinol) has been widely employed in the medical and dental field...
A potential new Ni-free Ti alloy for biomedical applications was assessed in order to investigate th...
The influence of surface treatments on the microstructure, in vitro bioactivity and corrosion protec...
International audienceIn the present work, nitrogen ion implantation (original method) to enhance th...
International audienceTo enhance their longevity, dental implants must be highly biocompatible and m...
International audienceA new superelastic Ti-23Hf-3Mo-4Sn biomedical alloy displaying a particularly ...
Nickel-titanium shape memory alloys (NiTi) have attracted much attention as orthopedic materials due...
International audienceIn this study, the new Hardion+ micro-implanter technology was used to modify ...
Ti–25Nb–3Zr–2Sn–3Mo (TLM) alloys have been used in orthopaedics due to their excellent biocompatibil...
Supplementary information files for Physico-chemical characterisation of Ti-Nb-Sn alloys surfaces an...
A new superelastic Ti‐23Hf‐3Mo‐4Sn biomedical alloy displaying a particularly large recovery strain ...
International audienceWithin the framework of this work, we developed a nitriding process on biocomp...
The surface of NiTi alloy was chemically modified using acidified ferric chloride solution and the c...
Implanted tissue engineering devices interact with the host tissue through their surface in the firs...
The bioactivity and the corrosion protection for a novel nano-grained Ti-20Nb-13Zr at % alloy were e...
The nearly equiatomic Ni-Ti alloy (Nitinol) has been widely employed in the medical and dental field...
A potential new Ni-free Ti alloy for biomedical applications was assessed in order to investigate th...
The influence of surface treatments on the microstructure, in vitro bioactivity and corrosion protec...