Zig-zag structure of the nickel thin film has been obtained using Glancing Angle Deposition (GLAD) technique. Glass substrate was positioned 75 degrees with respect to the substrate normal. The obtained nickel thin film was characterized by X-ray Photoelectron Spectroscopy, Scanning Electron Microscopy and Atomic Force Microscopy. Surface energy of the deposited thin film was determined by measuring the contact angle using the static sessile drop method. [Projekat Ministarstva nauke Republike Srbije, br. III 45005
International audienceNickel is a ferromagnetic transition metal with a fcc structure, it has a low ...
International audienceThe crystallographic structure of thin Ni films deposited on Cu(001) has been ...
There is a great interest in various branches of the advanced materials industry for the development...
Zig-zag structure of the nickel thin film has been obtained using Glancing Angle Deposition (GLAD) t...
In this work, a columnar structure of nickel thin film has been obtained using an advanced depositi...
In this work, a columnar structure of nickel thin film has been obtained using an advanced depositio...
In this work, Glancing Angle Deposition technique was used for obtaining nanostructured nickel thin ...
In this work we investigated the influence of different deposition angles on the structural and magn...
In this work, nickel (Ni) thin films were deposited by electron beam evaporation of Ni using Glancin...
In this study, nickel (Ni) thin films were deposited at two different angles (65o and 85o) using Gla...
Nickel (Ni) thin films of different thicknesses (25 nm to 150 nm) were deposited on glass substrates...
Normal, helical and zigzag deposited Ni films were produced by letting a vapour stream of source mat...
In this work we deposited nickel thin films by Glancing Angle Deposition at two different angles (65...
Nanostructured nickel thin films were deposited on glass using glancing angle deposition (GLAD) tech...
In this work, the influence of different deposition angles on the structural, chemical and magnetic ...
International audienceNickel is a ferromagnetic transition metal with a fcc structure, it has a low ...
International audienceThe crystallographic structure of thin Ni films deposited on Cu(001) has been ...
There is a great interest in various branches of the advanced materials industry for the development...
Zig-zag structure of the nickel thin film has been obtained using Glancing Angle Deposition (GLAD) t...
In this work, a columnar structure of nickel thin film has been obtained using an advanced depositi...
In this work, a columnar structure of nickel thin film has been obtained using an advanced depositio...
In this work, Glancing Angle Deposition technique was used for obtaining nanostructured nickel thin ...
In this work we investigated the influence of different deposition angles on the structural and magn...
In this work, nickel (Ni) thin films were deposited by electron beam evaporation of Ni using Glancin...
In this study, nickel (Ni) thin films were deposited at two different angles (65o and 85o) using Gla...
Nickel (Ni) thin films of different thicknesses (25 nm to 150 nm) were deposited on glass substrates...
Normal, helical and zigzag deposited Ni films were produced by letting a vapour stream of source mat...
In this work we deposited nickel thin films by Glancing Angle Deposition at two different angles (65...
Nanostructured nickel thin films were deposited on glass using glancing angle deposition (GLAD) tech...
In this work, the influence of different deposition angles on the structural, chemical and magnetic ...
International audienceNickel is a ferromagnetic transition metal with a fcc structure, it has a low ...
International audienceThe crystallographic structure of thin Ni films deposited on Cu(001) has been ...
There is a great interest in various branches of the advanced materials industry for the development...