Quantum modeling of hydrogen retention on partially oxidized beryllium
Author:
Publisher
Elsevier BV
Subject
Nuclear Energy and Engineering,General Materials Science,Nuclear and High Energy Physics
Reference13 articles.
1. Status of knowledge of chemical erosion of carbon and critical issues for extrapolation to ITER
2. Dissociative adsorption of small molecules at vacancies on the graphite (0001) surface
3. First-principles study of electronic properties of hydrogenated graphite
4. Density functional study of hydrogen adsorption on beryllium (0001)
5. Adsorption of hydrogen on Be(0001) surfaces
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1. Effect of low-temperature oxidation and heat treatment under vacuum on the Al–Be interdiffusion process;Physical Chemistry Chemical Physics;2024
2. The effect of beryllium oxide on retention in JET ITER-like wall tiles;Nuclear Materials and Energy;2019-05
3. Coadsorbed oligolayers of beryllium and oxygen on molybdenum (1 1 2) surface: Formation and chemical composition, atomic structure and evaporation;Surface Science;2019-04
4. Interactions of extrinsic interstitial atoms (H, He, O, C) with vacancies in beryllium from first-principles;Computational Materials Science;2014-07
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