In recent years, nanostructured oxide films on titanium alloy surfaces have gained significant interest due to their electrical, catalytic and biological properties. In literature, there is variety of different approaches to fabricate nanostructured oxide films. Among these methods, anodization technique, which allows fine-tuning of oxide film thickness, feature size, topography and chemistry, is one of the most popular approaches to fabricate nanostructured oxide films on titanium alloys, and it has been widely investigated for orthopedic applications. Briefly, anodization is the growth of a controlled oxide film on a metallic component attached to the anode of an electrochemical cell. This review provides an overview of the anodization te...
Titanium is naturally covered with a nanometric oxide film (TiO2) that accounts for most of its indu...
Titanium is naturally covered with a nanometric oxide film (TiO2) that accounts for most of its indu...
Titanium is naturally covered with a nanometric oxide film (TiO2) that accounts for most of its indu...
In recent years, nanostructured oxide films on titanium alloy surfaces have gained significant inter...
In recent years, nanostructured oxide films on titanium alloy surfaces have gained significant inter...
Titanium and its alloys are widely used as biomaterials due to their mechanical, chemical and biolog...
Keywords: Dental implants, sandblasting, nanostructured TiO2, surface morphology. ABSTRACT Titaniu...
The anodization of commercially pure Ti alloy (99.5 wt %) and two biomedical titanium alloys, Ti6Al7...
Titanium dioxide is the most common among titanium oxides and minerals. It can be either synthesized...
The anodization of commercially pure Ti alloy (99.5 wt %) and two biomedical titanium alloys, Ti6Al7...
Titanium surface characteristics determine the degree of success of permanent implants. The topograp...
Nanoporous titanium dioxide (TiO2) layers were successfully formed by an electrochemical anodisation...
Due to their excellent biocompatibility, titanium alloys ...
The objective of this study is to investigate in vitro cell-materials interactions using human osteo...
Titanium is naturally covered with a nanometric oxide film (TiO2) that accounts for most of its indu...
Titanium is naturally covered with a nanometric oxide film (TiO2) that accounts for most of its indu...
Titanium is naturally covered with a nanometric oxide film (TiO2) that accounts for most of its indu...
Titanium is naturally covered with a nanometric oxide film (TiO2) that accounts for most of its indu...
In recent years, nanostructured oxide films on titanium alloy surfaces have gained significant inter...
In recent years, nanostructured oxide films on titanium alloy surfaces have gained significant inter...
Titanium and its alloys are widely used as biomaterials due to their mechanical, chemical and biolog...
Keywords: Dental implants, sandblasting, nanostructured TiO2, surface morphology. ABSTRACT Titaniu...
The anodization of commercially pure Ti alloy (99.5 wt %) and two biomedical titanium alloys, Ti6Al7...
Titanium dioxide is the most common among titanium oxides and minerals. It can be either synthesized...
The anodization of commercially pure Ti alloy (99.5 wt %) and two biomedical titanium alloys, Ti6Al7...
Titanium surface characteristics determine the degree of success of permanent implants. The topograp...
Nanoporous titanium dioxide (TiO2) layers were successfully formed by an electrochemical anodisation...
Due to their excellent biocompatibility, titanium alloys ...
The objective of this study is to investigate in vitro cell-materials interactions using human osteo...
Titanium is naturally covered with a nanometric oxide film (TiO2) that accounts for most of its indu...
Titanium is naturally covered with a nanometric oxide film (TiO2) that accounts for most of its indu...
Titanium is naturally covered with a nanometric oxide film (TiO2) that accounts for most of its indu...
Titanium is naturally covered with a nanometric oxide film (TiO2) that accounts for most of its indu...