Ti-6Al-4V alloy is the most commonly used alloy for dental and orthopedic implants. In order to improve osseointegration, different surface modification methods are usually employed, including self-assembled monolayers (SAMs). This study presents an investigation of both active (electroassisted) and passive (adsorption) approaches for the modification of Ti-6Al-4V using alkylphosphonic acid. The monolayers were characterized by cyclic voltammetry, double-layer capacitance, contact angle measurements, X-ray photoelectron spectroscopy, polarization modulation infrared reflection adsorption spectroscopy, electrochemical impedance spectroscopy, and corrosion potentiodynamic polarization measurements. It is shown that the electrochemically assis...
Among all biomaterials used for bone replacement, it is recognized that both commercially pure titan...
The main aim of this work was to assess the electrochemical behavior of new Ti35Nb5Zr and Ti35Nb10Zr...
The use of self-assembling monolayers (SAM) of long chain carboxylic acids has a potential for desig...
ABSTRACT: Ti-6Al-4V alloy is the most commonly used alloy for dental and orthopedic implants. In ord...
International audienceTitanium and titanium-based alloys are widely used in various biomedical appli...
Mono-functional self assembled monolayer of alkanecarboxylic (Nonanoic and Nonadeconic) and alkaneph...
Due to their excellent biocompatibility, titanium alloys ...
This study compared the tribological properties in nano- and millinewton load ranges of Ti-6Al-4V s...
International audienceSurface treatments are considered as a good alternative to increase biocompati...
Titanium metal is a commonly used implant material which can be colonized by bacteria. Biofilms are ...
The good corrosion resistance is crucial for implant biomaterials application, because the metallic ...
The in vitro behaviors of the etched, electrochemically anodized, and hydroxyapatite (HA)-coated Ti6...
Bacterial contamination of implanted devices is a common cause of their failure. The aim of the pres...
The formation of methyl-terminated carboxylic acid self-assembled monolayers (SAMs) with even number...
Inflammation in the tissue surrounding titanium (Ti)-based alloy implants can lead to increased acid...
Among all biomaterials used for bone replacement, it is recognized that both commercially pure titan...
The main aim of this work was to assess the electrochemical behavior of new Ti35Nb5Zr and Ti35Nb10Zr...
The use of self-assembling monolayers (SAM) of long chain carboxylic acids has a potential for desig...
ABSTRACT: Ti-6Al-4V alloy is the most commonly used alloy for dental and orthopedic implants. In ord...
International audienceTitanium and titanium-based alloys are widely used in various biomedical appli...
Mono-functional self assembled monolayer of alkanecarboxylic (Nonanoic and Nonadeconic) and alkaneph...
Due to their excellent biocompatibility, titanium alloys ...
This study compared the tribological properties in nano- and millinewton load ranges of Ti-6Al-4V s...
International audienceSurface treatments are considered as a good alternative to increase biocompati...
Titanium metal is a commonly used implant material which can be colonized by bacteria. Biofilms are ...
The good corrosion resistance is crucial for implant biomaterials application, because the metallic ...
The in vitro behaviors of the etched, electrochemically anodized, and hydroxyapatite (HA)-coated Ti6...
Bacterial contamination of implanted devices is a common cause of their failure. The aim of the pres...
The formation of methyl-terminated carboxylic acid self-assembled monolayers (SAMs) with even number...
Inflammation in the tissue surrounding titanium (Ti)-based alloy implants can lead to increased acid...
Among all biomaterials used for bone replacement, it is recognized that both commercially pure titan...
The main aim of this work was to assess the electrochemical behavior of new Ti35Nb5Zr and Ti35Nb10Zr...
The use of self-assembling monolayers (SAM) of long chain carboxylic acids has a potential for desig...