Three different Ti6Al4V surface oxidation methods have been applied to obtain three types of titania materials of different nanoarchitecture. Electrochemical oxidation of titanium alloy allowed for obtaining titania nanotubes (TNT), chemical oxidation led to obtain titania nanofibers (TNF), and thermal oxidation gave titania nanowires (TNW). My earlier investigations of these nanomaterials were focused mainly on the estimation of their bioactivity and potential application in modern implantology. In this article, the comparative analysis of the photocatalytic activity of produced systems, as well as the impact of their structure and morphology on this activity, are discussed. The activity of studied nanomaterials was estimated basis of UV-i...
Anatase-type nanocrystalline titania layers were prepared by oxidizing the crystalline titanium nitr...
In this study the influence of morphology of vertically oriented titanium oxide nanotube arrays (TN...
The present work illustrates the effect of electrolyte composition on the self-organized TiO2 nanotu...
Morphologically different titania coatings (nanofibers (TNFs), nanoneedles (TNNs), and nanowires (TN...
Titania has been the focus of attention for several decades owing to its chemical stability, non-tox...
Titania nanotube (TNT) coatings were produced using low-potential anodic oxidation of Ti6Al4V substr...
It was for the first time that the complex compound of gallic acid with titanium (IV) salt was used ...
Properties of nanostructured materials differ vastly from those of bulk materials and modifications ...
The anodic oxidation of Ti6Al4V substrate surfaces with the use of cyclically changing potential ena...
Highly oriented titania nanotube (TN) arrays with {1 0 1} crystal face were prepared on the surface ...
Water pollution is considered a serious threat to human life. An advanced oxidation process in the p...
Titanium dioxide or Titania is a semiconductor compound having remarkable dielectric, electronic and...
The morphology, structural, and optical properties of porous titania layers prepared by electrochemi...
Biomedical implants and devices that penetrate soft tissue are highly susceptible to infection, but ...
Surface nanocrystallization of titanium metal is processed by a high-energy shot peening treatment f...
Anatase-type nanocrystalline titania layers were prepared by oxidizing the crystalline titanium nitr...
In this study the influence of morphology of vertically oriented titanium oxide nanotube arrays (TN...
The present work illustrates the effect of electrolyte composition on the self-organized TiO2 nanotu...
Morphologically different titania coatings (nanofibers (TNFs), nanoneedles (TNNs), and nanowires (TN...
Titania has been the focus of attention for several decades owing to its chemical stability, non-tox...
Titania nanotube (TNT) coatings were produced using low-potential anodic oxidation of Ti6Al4V substr...
It was for the first time that the complex compound of gallic acid with titanium (IV) salt was used ...
Properties of nanostructured materials differ vastly from those of bulk materials and modifications ...
The anodic oxidation of Ti6Al4V substrate surfaces with the use of cyclically changing potential ena...
Highly oriented titania nanotube (TN) arrays with {1 0 1} crystal face were prepared on the surface ...
Water pollution is considered a serious threat to human life. An advanced oxidation process in the p...
Titanium dioxide or Titania is a semiconductor compound having remarkable dielectric, electronic and...
The morphology, structural, and optical properties of porous titania layers prepared by electrochemi...
Biomedical implants and devices that penetrate soft tissue are highly susceptible to infection, but ...
Surface nanocrystallization of titanium metal is processed by a high-energy shot peening treatment f...
Anatase-type nanocrystalline titania layers were prepared by oxidizing the crystalline titanium nitr...
In this study the influence of morphology of vertically oriented titanium oxide nanotube arrays (TN...
The present work illustrates the effect of electrolyte composition on the self-organized TiO2 nanotu...