AbstractThe oblique angle configuration has emerged as an invaluable tool for the deposition of nanostructured thin films. This review develops an up to date description of its principles, including the atomistic mechanisms governing film growth and nanostructuration possibilities, as well as a comprehensive description of the applications benefiting from its incorporation in actual devices. In contrast with other reviews on the subject, the electron beam assisted evaporation technique is analyzed along with other methods operating at oblique angles, including, among others, magnetron sputtering and pulsed laser or ion beam-assisted deposition techniques. To account for the existing differences between deposition in vacuum or in the presenc...
The microstructural features of amorphous TiO2 thin films grown by the electron beam physical vapour...
We experimentally analyze different growth regimes of Ti thin films associated to the existence of k...
Thin films have a great impact on the modern era of technology. Thin films are considered as backbon...
The oblique angle configuration has emerged as an invaluable tool for the deposition of nanostructur...
AbstractThe oblique angle configuration has emerged as an invaluable tool for the deposition of nano...
The growth of nanostructured physical vapor deposited thin films at oblique angles is becoming a hot...
With the aim to gain a deeper understanding of the role of the angle of incidence in physical vapor ...
Physical vapor deposition is a fundamental tool to create thin films for countless applications. Dep...
The influence of one dimensional substrate patterns on the nanocolumnar growth of thin films deposit...
The present work represents a systematical study of the growth of columnar, metallic thin films depo...
Oblique angle deposition (OAD) is a powerful technique for the fabrication of porous nanostructured ...
It is demonstrated that, besides classical nanocolumnar arrays, the oblique angle geometry induces t...
Oblique angle deposition (OAD) is a powerful technique for the fabrication of porous nanostructured ...
The nano-porosity embedded into the tilted and separated nanocolumns characteristic of the microstru...
The growth of Ti thin films by the magnetron sputtering technique at oblique angles and at room temp...
The microstructural features of amorphous TiO2 thin films grown by the electron beam physical vapour...
We experimentally analyze different growth regimes of Ti thin films associated to the existence of k...
Thin films have a great impact on the modern era of technology. Thin films are considered as backbon...
The oblique angle configuration has emerged as an invaluable tool for the deposition of nanostructur...
AbstractThe oblique angle configuration has emerged as an invaluable tool for the deposition of nano...
The growth of nanostructured physical vapor deposited thin films at oblique angles is becoming a hot...
With the aim to gain a deeper understanding of the role of the angle of incidence in physical vapor ...
Physical vapor deposition is a fundamental tool to create thin films for countless applications. Dep...
The influence of one dimensional substrate patterns on the nanocolumnar growth of thin films deposit...
The present work represents a systematical study of the growth of columnar, metallic thin films depo...
Oblique angle deposition (OAD) is a powerful technique for the fabrication of porous nanostructured ...
It is demonstrated that, besides classical nanocolumnar arrays, the oblique angle geometry induces t...
Oblique angle deposition (OAD) is a powerful technique for the fabrication of porous nanostructured ...
The nano-porosity embedded into the tilted and separated nanocolumns characteristic of the microstru...
The growth of Ti thin films by the magnetron sputtering technique at oblique angles and at room temp...
The microstructural features of amorphous TiO2 thin films grown by the electron beam physical vapour...
We experimentally analyze different growth regimes of Ti thin films associated to the existence of k...
Thin films have a great impact on the modern era of technology. Thin films are considered as backbon...