Hard carbon thin films were synthesized on Si (100) and quartz substrates by the Pulsed Laser Deposition (PLD) technique in vacuum or methane ambient to study their suitability for applications requiring high mechanical resistance. The deposited films’ surface morphology was investigated by scanning electron microscopy, crystalline status by X-ray diffraction, packing and density by X-ray reflectivity, chemical bonding by Raman and X-ray photoelectron spectroscopy, adherence by “pull-out” measurements and mechanical properties by nanoindentation tests. Films synthesized in vacuum were a-C DLC type, while films synthesized in methane were categorized as a-C:H. The majority of PLD films consisted of two layers: one low density layer towards ...
Diamond-like carbon films have been deposited from a fullerite target by ultra-short pulsed laser de...
Carbon films have been synthesized at room temperature in helium atmosphere, at high pressure, on (1...
Pulsed laser deposition (PLD) with KrF-excimer laser radiation (lambda = 248 nm, tau = 25 ns) is use...
Hard carbon thin films were synthesized on Si (100) and quartz substrates by the Pulsed Laser Deposi...
Diamond-like carbon (DLC) films have been prepared by pulsed laser deposition (PLD) (wavelength 248 ...
In this work, carbon thin films are grown in different background environments (Air, Helium and Argo...
Amorphous hydrogen-free carbon films (a-C) combine the outstanding properties of diamond with those ...
The surface morphologies of pulsed laser deposited ultra-thin diamond-like carbon films were studied...
Pulsed laser deposition with KrF-excimer laser radiation (lambda = 248 nm; t = 25 ns) is used to gro...
This work aims to investigate the properties and microstructure of diamond-like carbon film deposite...
Fabrication of wear resistant and low friction carbon films on the engineered substrates is consider...
In this work, carbon thin films are grown in different background environments (Air, Helium and Argo...
Pulsed laser deposition (PLD) and chemical vapour deposition (CVD) have been proven to be among the ...
The protecting against damage, computer hard disks have to be coated by hard films. The increasing d...
Carbon films have been synthesized at room temperature in helium atmosphere, at high pressure, on (1...
Diamond-like carbon films have been deposited from a fullerite target by ultra-short pulsed laser de...
Carbon films have been synthesized at room temperature in helium atmosphere, at high pressure, on (1...
Pulsed laser deposition (PLD) with KrF-excimer laser radiation (lambda = 248 nm, tau = 25 ns) is use...
Hard carbon thin films were synthesized on Si (100) and quartz substrates by the Pulsed Laser Deposi...
Diamond-like carbon (DLC) films have been prepared by pulsed laser deposition (PLD) (wavelength 248 ...
In this work, carbon thin films are grown in different background environments (Air, Helium and Argo...
Amorphous hydrogen-free carbon films (a-C) combine the outstanding properties of diamond with those ...
The surface morphologies of pulsed laser deposited ultra-thin diamond-like carbon films were studied...
Pulsed laser deposition with KrF-excimer laser radiation (lambda = 248 nm; t = 25 ns) is used to gro...
This work aims to investigate the properties and microstructure of diamond-like carbon film deposite...
Fabrication of wear resistant and low friction carbon films on the engineered substrates is consider...
In this work, carbon thin films are grown in different background environments (Air, Helium and Argo...
Pulsed laser deposition (PLD) and chemical vapour deposition (CVD) have been proven to be among the ...
The protecting against damage, computer hard disks have to be coated by hard films. The increasing d...
Carbon films have been synthesized at room temperature in helium atmosphere, at high pressure, on (1...
Diamond-like carbon films have been deposited from a fullerite target by ultra-short pulsed laser de...
Carbon films have been synthesized at room temperature in helium atmosphere, at high pressure, on (1...
Pulsed laser deposition (PLD) with KrF-excimer laser radiation (lambda = 248 nm, tau = 25 ns) is use...