Fabrication of bioactive titanium (Ti) by using anodic oxidation method for biomedical application as a high-performance material with good biocompatibility properties has been introduced since many years ago. The current study aims to investigate the physical and chemical properties of anodised Ti oxide layer in sulphuric acid at different applied voltages. High purity Ti films were anodised with varying voltages (50-200 V) in 0.3 M of sulphuric acid at 75 mA.cm-2 current density for 10 min. Anodised Ti films were characterised for physical properties (colour, porosity, surface morphology, thickness) and chemical property (surface mineralogy). The anodised Ti produced using high voltage (200 V) appeared to be highly porous and demonstrated...
Abstract: Competitive manufacturing implies fit for purpose and efficient manufacturing practices. D...
Titanium is used for many applications, ranging from chemical, biomedical, and decorative. Its vers...
Anodic oxide growths on commercially pure titanium in 1 M sulphuric and phosphoric acids have been i...
Fabrication of bioactive titanium (Ti) by using anodic oxidation method for biomedical application a...
Fabrication of bioactive titanium (Ti) by using anodic oxidation method for biomedical application a...
Naturally, titanium (Ti) has bioinert surface which is a non-preferred nucleation site for bone-like...
Anodisation of pure titanium has been carried out in sulphuric and in phosphoric acid solutions at p...
Titanium surface characteristics determine the degree of success of permanent implants. The topograp...
Abstract: Competitive manufacturing implies fit for purpose and efficient manufacturing practices. D...
Titanium and titanium alloys have been widely used in orthopeadics and dental implants because of th...
Anodization coloring of titanium tools or implants is one of the common methods for the differentiat...
To obtain smooth TiO2 coatings for building a new design of Ti-6Al-4V heart valve, the anodic oxidat...
Due to their excellent biocompatibility, titanium alloys ...
Titanium is a metallic biomaterial having multidimensional properties, highly sophisticated function...
The corrosion process is one of the main factors affecting the biocompatibility and mechanical integ...
Abstract: Competitive manufacturing implies fit for purpose and efficient manufacturing practices. D...
Titanium is used for many applications, ranging from chemical, biomedical, and decorative. Its vers...
Anodic oxide growths on commercially pure titanium in 1 M sulphuric and phosphoric acids have been i...
Fabrication of bioactive titanium (Ti) by using anodic oxidation method for biomedical application a...
Fabrication of bioactive titanium (Ti) by using anodic oxidation method for biomedical application a...
Naturally, titanium (Ti) has bioinert surface which is a non-preferred nucleation site for bone-like...
Anodisation of pure titanium has been carried out in sulphuric and in phosphoric acid solutions at p...
Titanium surface characteristics determine the degree of success of permanent implants. The topograp...
Abstract: Competitive manufacturing implies fit for purpose and efficient manufacturing practices. D...
Titanium and titanium alloys have been widely used in orthopeadics and dental implants because of th...
Anodization coloring of titanium tools or implants is one of the common methods for the differentiat...
To obtain smooth TiO2 coatings for building a new design of Ti-6Al-4V heart valve, the anodic oxidat...
Due to their excellent biocompatibility, titanium alloys ...
Titanium is a metallic biomaterial having multidimensional properties, highly sophisticated function...
The corrosion process is one of the main factors affecting the biocompatibility and mechanical integ...
Abstract: Competitive manufacturing implies fit for purpose and efficient manufacturing practices. D...
Titanium is used for many applications, ranging from chemical, biomedical, and decorative. Its vers...
Anodic oxide growths on commercially pure titanium in 1 M sulphuric and phosphoric acids have been i...