Comparison of the thermal stability of the codeposited carbon/hydrogen layer to that of the saturated implant layer
Author:
Publisher
Elsevier BV
Subject
Nuclear Energy and Engineering,General Materials Science,Nuclear and High Energy Physics
Reference24 articles.
1. Behavior of implanted d and he in pyrolytic graphite
2. Trapping, detrapping and replacement of keV hydrogen implanted into graphite
3. Temperature dependence of H saturation and isotope exchange
4. Ion-induced release of deuterium from carbon
5. The effect of radiation damage on deuteron re-emission and trapping in carbon
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1. Hydrogenated Amorphous Carbon Films (a-C:H);Tetrahedrally Bonded Amorphous Carbon Films I;2018
2. Study of correlation of deuterium content in a-C:D dust induced by laser irradiation from the co-deposited surface with the grain size and velocity;Physica Scripta;2014-05-01
3. Fuel re-absorption by thermally treated co-deposited carbon layers;Physica Scripta;2011-12-01
4. Assessment of Collateral Effects of Thermo-Oxidation on DIII-D In-Vessel Components in Preparation for In Situ Oxidation in DIII-D;Fusion Science and Technology;2010-10
5. Effect of bias and hydrogenation on the elemental concentration and the thermal stability of amorphous thin carbon films, deposited on Si substrate;Diamond and Related Materials;2009-11
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