Nanotubular structures were generated on the surface of titanium c.p. by anodization technique in an aqueous solution of acetic acid (14% v/v) with different sources of fluoride ion (HF, NaF, NH4 F). The aim of using these three different compounds is to study the effect of the counterion (H+ , Na+ and NH4+ ) on the morphology, wettability and surface free energy of the modified surface. Nanotubes were generated at 10 and 15 V for each anodizing solution. To further improve surface characteristics, the samples were heat-treated at 600°C for 4 hours and at 560°C for 3 hours. SEM images revealed the formation of nanotubes in all anodizing conditions, while their diameter increased proportionally to the electric potential. X-ray diffraction an...
Nanotubular titanium oxide (TiO(2)) produced by self-ordering processes using electrochemical anodiz...
A highly ordered TiO2 nanotube array has been prepared on a commercial pure titanium substrate in a ...
We have investigated the formation of self-organized titanium oxide nanotube layers by anodic oxidat...
Nanotubular structures were generated on the surface of titanium c.p. by anodization technique in an...
Titanium and its alloys are widely used as biomaterials due to their mechanical, chemical and biolog...
The highly ordered titanium dioxide nanotube coatings were produced under various electrochemical co...
This work focus on the formation of titanium oxide {Ti02) nanotubes on theTi-6AI-4V alloy by anodiza...
A vertically aligned titania nanotube layer was obtained by electrochemical anodic oxidation in the ...
Titania nanotube (TNT) coatings were produced using low-potential anodic oxidation of Ti6Al4V subst...
Nanotubes have been subject of studies with regard to their ability to promote differentiation of se...
This paper investigates the formation mechanism of ribs on the outer wall of anodized TiO 2 nanotube...
Titanium and its alloys are widely used as biomaterials due to their mechanical, chemical and biolog...
In this paper corrosion properties and microstructure features of amorphous self-organised TiO2 nano...
© 2015, Allen Press Inc. All rights reserved. Traditionally, titanium oxide (TiO2) nanotubes (TNTs) ...
xxiii, 237 leaves : ill. ; 30 cm.PolyU Library Call No.: [THS] LG51 .H577P ME 2010 HuangHighly-order...
Nanotubular titanium oxide (TiO(2)) produced by self-ordering processes using electrochemical anodiz...
A highly ordered TiO2 nanotube array has been prepared on a commercial pure titanium substrate in a ...
We have investigated the formation of self-organized titanium oxide nanotube layers by anodic oxidat...
Nanotubular structures were generated on the surface of titanium c.p. by anodization technique in an...
Titanium and its alloys are widely used as biomaterials due to their mechanical, chemical and biolog...
The highly ordered titanium dioxide nanotube coatings were produced under various electrochemical co...
This work focus on the formation of titanium oxide {Ti02) nanotubes on theTi-6AI-4V alloy by anodiza...
A vertically aligned titania nanotube layer was obtained by electrochemical anodic oxidation in the ...
Titania nanotube (TNT) coatings were produced using low-potential anodic oxidation of Ti6Al4V subst...
Nanotubes have been subject of studies with regard to their ability to promote differentiation of se...
This paper investigates the formation mechanism of ribs on the outer wall of anodized TiO 2 nanotube...
Titanium and its alloys are widely used as biomaterials due to their mechanical, chemical and biolog...
In this paper corrosion properties and microstructure features of amorphous self-organised TiO2 nano...
© 2015, Allen Press Inc. All rights reserved. Traditionally, titanium oxide (TiO2) nanotubes (TNTs) ...
xxiii, 237 leaves : ill. ; 30 cm.PolyU Library Call No.: [THS] LG51 .H577P ME 2010 HuangHighly-order...
Nanotubular titanium oxide (TiO(2)) produced by self-ordering processes using electrochemical anodiz...
A highly ordered TiO2 nanotube array has been prepared on a commercial pure titanium substrate in a ...
We have investigated the formation of self-organized titanium oxide nanotube layers by anodic oxidat...