A detailed Raman analysis is carried out in order to explain the results of the systematic morphological and mechanical characterisation of unhydrogenated and hydrogenated amorphous carbon films prepared by the pulsed laser deposition at substrate temperatures ranging from 25 to 600 degrees C. The carbon bonding modifications produced by the different deposition conditions are discussed via the quantitative analysis of the changes correspondingly induced into the shape of the Raman spectra. The indications coming from scanning electron microscopy, atomic force microscopy and hardness measurements are understood in terms of the different sp(3)- to sp(2)-bonding fraction attained and the role of both substrate temperature and growth ambient o...
Diamond-like carbon (DLC) films are extensively used in various industries due to their superior pro...
Hard carbon thin films were synthesized on Si (100) and quartz substrates by the Pulsed Laser Deposi...
Recent advances in the fabrication and classification of amorphous carbon (a-Carbon) thin films play...
Crystalline diamond coatings and, increasingly, diamond-like amorphous carbon (DLC) films are used f...
Amorphous carbon films, deposited with the LASER-ARC technique, were characterized using Raman scatt...
10.1007/s003390101044Applied Physics A: Materials Science and Processing744519-523APAM
Amorphous hydrogen-free carbon films (a-C) combine the outstanding properties of diamond with those ...
Currently, Amorphous Carbon (a-C) attracts a lot of attention for different mechanical and electroni...
Diamond-like carbon (DLC) films have been prepared by pulsed laser deposition (PLD) (wavelength 248 ...
The process of depositing diamond-like carbon films on fused quartz substrates via the plume generat...
Abstract. Investigation of diamondlike carbon films using Raman spectroscopy method has showed, that...
Tetrahedral amorphous carbon films have been produced by pulsed laser deposition, at a wavelength o...
Hard carbon thin films were synthesized on Si (100) and quartz substrates by the Pulsed Laser Deposi...
Diamond-like carbon (DLC) films are extensively used in various industries due to their superior pro...
This work aims to investigate the properties and microstructure of diamond-like carbon film deposite...
Diamond-like carbon (DLC) films are extensively used in various industries due to their superior pro...
Hard carbon thin films were synthesized on Si (100) and quartz substrates by the Pulsed Laser Deposi...
Recent advances in the fabrication and classification of amorphous carbon (a-Carbon) thin films play...
Crystalline diamond coatings and, increasingly, diamond-like amorphous carbon (DLC) films are used f...
Amorphous carbon films, deposited with the LASER-ARC technique, were characterized using Raman scatt...
10.1007/s003390101044Applied Physics A: Materials Science and Processing744519-523APAM
Amorphous hydrogen-free carbon films (a-C) combine the outstanding properties of diamond with those ...
Currently, Amorphous Carbon (a-C) attracts a lot of attention for different mechanical and electroni...
Diamond-like carbon (DLC) films have been prepared by pulsed laser deposition (PLD) (wavelength 248 ...
The process of depositing diamond-like carbon films on fused quartz substrates via the plume generat...
Abstract. Investigation of diamondlike carbon films using Raman spectroscopy method has showed, that...
Tetrahedral amorphous carbon films have been produced by pulsed laser deposition, at a wavelength o...
Hard carbon thin films were synthesized on Si (100) and quartz substrates by the Pulsed Laser Deposi...
Diamond-like carbon (DLC) films are extensively used in various industries due to their superior pro...
This work aims to investigate the properties and microstructure of diamond-like carbon film deposite...
Diamond-like carbon (DLC) films are extensively used in various industries due to their superior pro...
Hard carbon thin films were synthesized on Si (100) and quartz substrates by the Pulsed Laser Deposi...
Recent advances in the fabrication and classification of amorphous carbon (a-Carbon) thin films play...