This work reports a procedure to modify the surface nanostructure of TiO2 anatase thin films through ion beam irradiation with energies in the keV range. Irradiation with N+ ions leads to the formation of a layer with voids at a depth similar to the ion-projected range. By setting the ion-projected range a few tens of nanometers below the surface of the film, well-ordered nanorods appear aligned with the angle of incidence of the ion beam. Slightly different results were obtained by using heavier (S+) and lighter (B+) ions under similar conditions
Temperature-dependent self-organized formation of nanoripples on TiO2(110) surfaces irradiated by lo...
The growth of TiO2 nanotube arrays (TNTAs) on non-native substrates is essential for exploiting the ...
The low energy broad argon ion beam (1.35-2.0) keV was used for sputtering of a Ti target in an atmo...
The effects of a high ion dose irradiation on TiO2 thin films under different conditions of temperat...
A plethora of technological applications justify why titanium dioxide is probably the most studied o...
This work demonstrates that ions have a strong impact on the growth per cycle (GPC) and material pro...
This work reports the morphological and chemical modifications induced in TiO2 thin films by bombard...
Nanodimensional TiO2 has wide application in the field of photocatalysis, photovoltaic and photochro...
Low energy ion-irradiated hybrid nanostructures with altered interfaces have sparked a lot of intere...
A comprehensive study of nonstoichiometry titanium oxide thin films (TiO x , 0.3≤x≤2) prepared by io...
We report the epitaxial growth of sol–gel TiO2 films by using ion-irradiation enhanced synthesis. Ou...
Nanodimensional TiO<SUB>2</SUB> has wide application in the field of photocatalysis, photovoltaic an...
Organic electronics require a precise control over properties of a moleculeâEuro"substrate interface...
Regular nanoscopic ripple and dot patterns are fabricated on poly-crystalline titanium samples by ir...
Nanocrystalline TiO<SUB>2</SUB> structures are formed by irradiation of 100 MeV Au<SUP>8+</SUP> ion ...
Temperature-dependent self-organized formation of nanoripples on TiO2(110) surfaces irradiated by lo...
The growth of TiO2 nanotube arrays (TNTAs) on non-native substrates is essential for exploiting the ...
The low energy broad argon ion beam (1.35-2.0) keV was used for sputtering of a Ti target in an atmo...
The effects of a high ion dose irradiation on TiO2 thin films under different conditions of temperat...
A plethora of technological applications justify why titanium dioxide is probably the most studied o...
This work demonstrates that ions have a strong impact on the growth per cycle (GPC) and material pro...
This work reports the morphological and chemical modifications induced in TiO2 thin films by bombard...
Nanodimensional TiO2 has wide application in the field of photocatalysis, photovoltaic and photochro...
Low energy ion-irradiated hybrid nanostructures with altered interfaces have sparked a lot of intere...
A comprehensive study of nonstoichiometry titanium oxide thin films (TiO x , 0.3≤x≤2) prepared by io...
We report the epitaxial growth of sol–gel TiO2 films by using ion-irradiation enhanced synthesis. Ou...
Nanodimensional TiO<SUB>2</SUB> has wide application in the field of photocatalysis, photovoltaic an...
Organic electronics require a precise control over properties of a moleculeâEuro"substrate interface...
Regular nanoscopic ripple and dot patterns are fabricated on poly-crystalline titanium samples by ir...
Nanocrystalline TiO<SUB>2</SUB> structures are formed by irradiation of 100 MeV Au<SUP>8+</SUP> ion ...
Temperature-dependent self-organized formation of nanoripples on TiO2(110) surfaces irradiated by lo...
The growth of TiO2 nanotube arrays (TNTAs) on non-native substrates is essential for exploiting the ...
The low energy broad argon ion beam (1.35-2.0) keV was used for sputtering of a Ti target in an atmo...