W is regarded as one of the most promising candidate materials for plasma-facing materials in future fusion reactors. For this reason, W is studied in variety of formats, such as W blocks, W alloys, W films. In this work, W thin films were prepared by magnetron sputtering deposition. Different materials were used as the substrates. Hydrogen plasma irradiation effect of the thin films was investigated. ? 2013 Elsevier B.V. All rights reserved.EI357-36130
The influence of wall-associated H/sub 2/ molecules and other hydrogen-containing monomers on the de...
Tungsten is a prime choice for armor material in future nuclear fusion devices. For the realization ...
The influence of the deposition conditions on the surface morphology, crystal structure and deuteriu...
In this work, the W bulk prepared by powder sintering and W film deposited by magnetron sputtering w...
Fine-grain tungsten alloys could be one of the solutions for the plasma facing materials of future D...
Plasma facing components (PFC) in a fusion device are subjected to a harsh operating environment inv...
The W films on stainless steel substrate were grown using magnetron sputter deposition. After the de...
One of the major challenges for fusion power is the design and selection of reactor materials that c...
Tungsten containing diamond-like carbon (W-C:H) coatings have been produced by unbalanced magnetron ...
Tungsten containing diamond-like carbon (W-C:H) coatings have been produced by unbalanced magnetron ...
Plasma facing components (PFC) within a fusion device are subjected to a harsh operating environment...
Tungsten (W) targets have been exposed to high density (n(e) = 2 eV. The maximum film thickness was ...
We report results on long-term hydrogen outgassing and permeation studies of structurally highly dis...
DEMO is the name for the first stage prototype fusion reactor considered to be the next step after I...
This study presents experimental results on hydrogen blister formation on powder metallurgy tungsten...
The influence of wall-associated H/sub 2/ molecules and other hydrogen-containing monomers on the de...
Tungsten is a prime choice for armor material in future nuclear fusion devices. For the realization ...
The influence of the deposition conditions on the surface morphology, crystal structure and deuteriu...
In this work, the W bulk prepared by powder sintering and W film deposited by magnetron sputtering w...
Fine-grain tungsten alloys could be one of the solutions for the plasma facing materials of future D...
Plasma facing components (PFC) in a fusion device are subjected to a harsh operating environment inv...
The W films on stainless steel substrate were grown using magnetron sputter deposition. After the de...
One of the major challenges for fusion power is the design and selection of reactor materials that c...
Tungsten containing diamond-like carbon (W-C:H) coatings have been produced by unbalanced magnetron ...
Tungsten containing diamond-like carbon (W-C:H) coatings have been produced by unbalanced magnetron ...
Plasma facing components (PFC) within a fusion device are subjected to a harsh operating environment...
Tungsten (W) targets have been exposed to high density (n(e) = 2 eV. The maximum film thickness was ...
We report results on long-term hydrogen outgassing and permeation studies of structurally highly dis...
DEMO is the name for the first stage prototype fusion reactor considered to be the next step after I...
This study presents experimental results on hydrogen blister formation on powder metallurgy tungsten...
The influence of wall-associated H/sub 2/ molecules and other hydrogen-containing monomers on the de...
Tungsten is a prime choice for armor material in future nuclear fusion devices. For the realization ...
The influence of the deposition conditions on the surface morphology, crystal structure and deuteriu...