Artículo de publicación ISICarbon nanostructures were prepared by RF magnetron sputtering at deposition times from 30 to 120 min and temperatures on silicon substrates from 390 degrees C to 510 degrees C. Scanning and transmission electron microscopy (TEM) observations showed that carbon films deposited at 510 C consisted of nanostructured polycrystalline carbon nanoflakes. Dark field TEM images showed carbon nanocrystals of 1 nm average size. The sp(2) hybridization decreases with increasing deposition time, as it was confirmed by X-ray photoelectron spectroscopy. The nature of these carbon nanostructures would be turbostratics, an intermediate state between hexagonal and amorphous phases.project Postdoctoral Fondecyt 3140565 project ...
The synthesis and properties of fullerene-like carbon materials containing nitrogen deposited by ion...
Nanostructured carbon thin films have been grown by deposition of cluster beams produced by a supers...
Nanostructured carbon is widely used in energy storage devices (e.g., Li-ion and Li-air batteries an...
Carbon thin films are often called in the literature, "diamond-like carbon" films. They consist of t...
The growth, structure and field emission properties of the two-dimensional carbon nanoflakes (CNFs) ...
[[abstract]]Carbon nanoflakes (CNFs) with corrugated geometry were synthesized using RF sputtering p...
This paper presents the results of the production of carbon nanoparticles by magnetron sputtering in...
In this thesis, experimental investigation of the growth mechanism of unique nanostructured carbon f...
The hybrid structures of carbon nanomaterials reveal the excellent properties and open new windows f...
Purpose: The application of a common magnetron discharge to the growth of carbon nanostructures is s...
Carbon nanowalls were prepared on silicon substrates by radio frequency magnetron sputtering under a...
The use of clusters as elemental building blocks can open new routes towards the creation of a new c...
Annealing of silicon-carbon nanoparticles was performed in argon at atmospheric pressure to enable f...
Carbon scientists throughout the world have been attracted to the study of the structure, texture an...
The microstructure of filtered cathodic vacuum arc deposited tetrahedral amorphous carbon films is s...
The synthesis and properties of fullerene-like carbon materials containing nitrogen deposited by ion...
Nanostructured carbon thin films have been grown by deposition of cluster beams produced by a supers...
Nanostructured carbon is widely used in energy storage devices (e.g., Li-ion and Li-air batteries an...
Carbon thin films are often called in the literature, "diamond-like carbon" films. They consist of t...
The growth, structure and field emission properties of the two-dimensional carbon nanoflakes (CNFs) ...
[[abstract]]Carbon nanoflakes (CNFs) with corrugated geometry were synthesized using RF sputtering p...
This paper presents the results of the production of carbon nanoparticles by magnetron sputtering in...
In this thesis, experimental investigation of the growth mechanism of unique nanostructured carbon f...
The hybrid structures of carbon nanomaterials reveal the excellent properties and open new windows f...
Purpose: The application of a common magnetron discharge to the growth of carbon nanostructures is s...
Carbon nanowalls were prepared on silicon substrates by radio frequency magnetron sputtering under a...
The use of clusters as elemental building blocks can open new routes towards the creation of a new c...
Annealing of silicon-carbon nanoparticles was performed in argon at atmospheric pressure to enable f...
Carbon scientists throughout the world have been attracted to the study of the structure, texture an...
The microstructure of filtered cathodic vacuum arc deposited tetrahedral amorphous carbon films is s...
The synthesis and properties of fullerene-like carbon materials containing nitrogen deposited by ion...
Nanostructured carbon thin films have been grown by deposition of cluster beams produced by a supers...
Nanostructured carbon is widely used in energy storage devices (e.g., Li-ion and Li-air batteries an...