Diamond-like carbon (DLC) is a promising protective coating for future optical storage technologies. The requirements place conflicting constraints on the nature of the DLC. It must be transparent at 400 nm, hard and wear-resistant, uniform, pinhole-free, have a low stress and be deposited at high rate without a high heat load on a plastic substrate. In order to optimise the films under these constraints, we have studied in detail the band gap, stress, density and Young's modulus of hydrogenated amorphous carbon (a-C:H) films deposited by plasma enhanced chemical vapour deposition using a large area electron cyclotron wave resonance source of 14 in. diameter and a variety of hydrocarbon gas sources. We have been able to produce wear-resista...
International audienceThe aim of this work is to study the mechanical properties of Deuterated Diamo...
The aim of this experimental work is to identify how the surfaces of materials that are most often u...
This present study aims to determine the hydrogen influence on the electrical gap of diamond-like ca...
Diamond-like carbon (DLC) films have several excellent properties like high hardness, high wear resi...
There is great demand for thin functional coatings in the semiconductor, optics, electronics, medica...
In the recent years, diamond and diamond-like carbon films (DLC) with nearly ideal properties have b...
The protecting against damage, computer hard disks have to be coated by hard films. The increasing d...
Amorphous hydrogen-free carbon films (a-C) combine the outstanding properties of diamond with those ...
Diamond-like carbon (DLC) films combine several excellent properties like high hardness, low frictio...
An overview is given on the deposition, properties and applications of dense amorphous carbon films ...
This work investigates Diamond-like Carbon thick and thin films for applications in Microelectromech...
Efficient hydrogenated diamond-like carbon (DLC) film deposition in a plasma reactor that features b...
Diamond-like carbon films form a critical protective layer on magnetic hard disks and their reading ...
Amorphous diamondlike carbon (DLC) films were deposited using both single and dual ion beam techniqu...
Diamond-like carbon (DLC) films have attracted great interest in several applications in optical and...
International audienceThe aim of this work is to study the mechanical properties of Deuterated Diamo...
The aim of this experimental work is to identify how the surfaces of materials that are most often u...
This present study aims to determine the hydrogen influence on the electrical gap of diamond-like ca...
Diamond-like carbon (DLC) films have several excellent properties like high hardness, high wear resi...
There is great demand for thin functional coatings in the semiconductor, optics, electronics, medica...
In the recent years, diamond and diamond-like carbon films (DLC) with nearly ideal properties have b...
The protecting against damage, computer hard disks have to be coated by hard films. The increasing d...
Amorphous hydrogen-free carbon films (a-C) combine the outstanding properties of diamond with those ...
Diamond-like carbon (DLC) films combine several excellent properties like high hardness, low frictio...
An overview is given on the deposition, properties and applications of dense amorphous carbon films ...
This work investigates Diamond-like Carbon thick and thin films for applications in Microelectromech...
Efficient hydrogenated diamond-like carbon (DLC) film deposition in a plasma reactor that features b...
Diamond-like carbon films form a critical protective layer on magnetic hard disks and their reading ...
Amorphous diamondlike carbon (DLC) films were deposited using both single and dual ion beam techniqu...
Diamond-like carbon (DLC) films have attracted great interest in several applications in optical and...
International audienceThe aim of this work is to study the mechanical properties of Deuterated Diamo...
The aim of this experimental work is to identify how the surfaces of materials that are most often u...
This present study aims to determine the hydrogen influence on the electrical gap of diamond-like ca...