The objective of this investigation is to study the effectiveness of anodized surface of commercial purity titanium (Cp-Ti) on its corrosion behaviour in simulated body fluid (SBF) and proliferation of osteoblast cells on it, to assess its potentiality as a process of surface modification in enhancing corrosion resistance and osseointegration of dental implants. Highly ordered nano-porous oxide layer, with nano-sized pores, is developed on the surface of Cp-Ti through electrochemical anodization in the electrolyte of aqueous solution of 0 center dot 5% HF at 15 V for 30 min at 24 A degrees C. The nano-porous feature of the anodized surface is characterized by field-emission scanning electron microscope (FESEM). Pores of some anodized sample...
Titanium and its alloys are often used for long-term implants after their surface treatment. Such su...
Anodizing could be used for bio-functionalization of the surfaces of titanium alloys. In this study,...
The bone-implant interface influences peri-implant bone healing and osseointegration. Among various ...
International audienceAlterations of the commercially pure titanium (cpTi) surface may be undertaken...
The effects of anodized titanium (Ti) with a potential hydrogen fluoride (HF) acid pretreatment thro...
Electrochemical studies in SBF solution were performed, in order to determine the best corrosion res...
The composition of the electrolytes used in the process of anodic oxidation was modified to generate...
International audienceThe purpose of this study was to investigate the relationship between the oste...
Statement of problem. To improve a direct implant fixation to the bone, various strategies have been...
International audienceTribocorrosion plays an important role in the lifetime of metallic implants. O...
Among all biomaterials used for bone replacement, it is recognized that both commercially pure titan...
Titanium and its alloys have become the biomaterial of choice for orthopaedic applications due to th...
The good corrosion resistance is crucial for implant biomaterials application, because the metallic ...
Commercially pure titanium (cpTi) and titanium alloys are the most commonly used metallic biomateria...
Commercially pure titanium (cpTi) and titanium alloys are the most commonly used metallic biomateria...
Titanium and its alloys are often used for long-term implants after their surface treatment. Such su...
Anodizing could be used for bio-functionalization of the surfaces of titanium alloys. In this study,...
The bone-implant interface influences peri-implant bone healing and osseointegration. Among various ...
International audienceAlterations of the commercially pure titanium (cpTi) surface may be undertaken...
The effects of anodized titanium (Ti) with a potential hydrogen fluoride (HF) acid pretreatment thro...
Electrochemical studies in SBF solution were performed, in order to determine the best corrosion res...
The composition of the electrolytes used in the process of anodic oxidation was modified to generate...
International audienceThe purpose of this study was to investigate the relationship between the oste...
Statement of problem. To improve a direct implant fixation to the bone, various strategies have been...
International audienceTribocorrosion plays an important role in the lifetime of metallic implants. O...
Among all biomaterials used for bone replacement, it is recognized that both commercially pure titan...
Titanium and its alloys have become the biomaterial of choice for orthopaedic applications due to th...
The good corrosion resistance is crucial for implant biomaterials application, because the metallic ...
Commercially pure titanium (cpTi) and titanium alloys are the most commonly used metallic biomateria...
Commercially pure titanium (cpTi) and titanium alloys are the most commonly used metallic biomateria...
Titanium and its alloys are often used for long-term implants after their surface treatment. Such su...
Anodizing could be used for bio-functionalization of the surfaces of titanium alloys. In this study,...
The bone-implant interface influences peri-implant bone healing and osseointegration. Among various ...