Nanoporous titanium dioxide (TiO2) layers were successfully formed by an electrochemical anodisation method on microroughened titanium (Ti) surfaces in fluoride containing aqueous electrolyte. Microroughened Ti surfaces were produced by sandblasting with Al2O3 particles of 50 μm in diameter and acid-etching in a blend of HCl/H2SO4 solution. The surface morphology, topography and chemical composition of the specimens were analysed by scanning electron microscopy, atomic force microscopy and X-ray photoelectron spectroscopy. The surface roughness and the wettability of treated Ti surfaces were measured using profilometry and a contact angle measurement system, respectively. With anodising of sandblasted-/acid etched surfaces, micrometre- and ...
In this study, micro-textured titanium surfaces were created by sandblasting and acid-etching method...
In this paper corrosion properties and microstructure features of amorphous self-organised TiO2 nano...
Titanium and its alloys are widely used as biomaterials due to their mechanical, chemical and biolog...
Nanoporous titanium dioxide (TiO2) layers were successfully formed by an electrochemical anodisation...
Keywords: Dental implants, sandblasting, nanostructured TiO2, surface morphology. ABSTRACT Titaniu...
Titanium and its alloys are among widely used biomaterials, particularly in the field of orthopedics...
Present paper presents the modification at nano scale level of the surfaces of Ti6Al4V alloy that w...
Titanium and its alloys are the most popular metals applied on end osseous implants manufacturing. C...
The objective of this study is to investigate in vitro cell-materials interactions using human osteo...
The bone-implant interface influences peri-implant bone healing and osseointegration. Among various ...
The bone-implant interface influences peri-implant bone healing and osseointegration. Among various ...
In recent years, nanostructured oxide films on titanium alloy surfaces have gained significant inter...
Commercially pure titanium (cpTi) and titanium alloys are metallic implant materials usually used in...
In this study, micro-textured titanium surfaces were created by sandblasting and acid-etching method...
In this study, micro-textured titanium surfaces were created by sandblasting and acid-etching method...
In this study, micro-textured titanium surfaces were created by sandblasting and acid-etching method...
In this paper corrosion properties and microstructure features of amorphous self-organised TiO2 nano...
Titanium and its alloys are widely used as biomaterials due to their mechanical, chemical and biolog...
Nanoporous titanium dioxide (TiO2) layers were successfully formed by an electrochemical anodisation...
Keywords: Dental implants, sandblasting, nanostructured TiO2, surface morphology. ABSTRACT Titaniu...
Titanium and its alloys are among widely used biomaterials, particularly in the field of orthopedics...
Present paper presents the modification at nano scale level of the surfaces of Ti6Al4V alloy that w...
Titanium and its alloys are the most popular metals applied on end osseous implants manufacturing. C...
The objective of this study is to investigate in vitro cell-materials interactions using human osteo...
The bone-implant interface influences peri-implant bone healing and osseointegration. Among various ...
The bone-implant interface influences peri-implant bone healing and osseointegration. Among various ...
In recent years, nanostructured oxide films on titanium alloy surfaces have gained significant inter...
Commercially pure titanium (cpTi) and titanium alloys are metallic implant materials usually used in...
In this study, micro-textured titanium surfaces were created by sandblasting and acid-etching method...
In this study, micro-textured titanium surfaces were created by sandblasting and acid-etching method...
In this study, micro-textured titanium surfaces were created by sandblasting and acid-etching method...
In this paper corrosion properties and microstructure features of amorphous self-organised TiO2 nano...
Titanium and its alloys are widely used as biomaterials due to their mechanical, chemical and biolog...