Atomic hydrogen diffusion in novel magnesium nanostructures : the impact of incorporated subsurface carbon atoms


Autoria(s): Du, Aijun; Smith, Sean C; Yao, X.; He, Y.; Lu, G.Q.
Data(s)

2006

Resumo

Ab initio Density Functional Theory (DFT) calculations are performed to study the diffusion of atomic hydrogen on a Mg(0001) surface and their migration into the subsurface layers. A carbon atom located initially on a Mg(0001) surface can migrate into the sub-surface layer and occupy a fcc site, with charge transfer to the C atom from neighboring Mg atoms. The cluster of postively charged Mg atoms surrounding a sub-surface C is then shown to facilitate the dissociative chemisorption of molecular hydrogen on the Mg(0001) surface, and the surface migration and subsequent diffusion into the subsurface of atomic hydrogen. This helps rationalize the experimentally-observed improvement in absorption kinetics of H2 when graphite or single walled carbon nanotubes (SWCNT) are introduced into the Mg powder during ball milling.

Identificador

http://eprints.qut.edu.au/61164/

Publicador

Institute of Physics Publishing Ltd.

Relação

DOI:10.1088/1742-6596/29/1/032

Du, Aijun, Smith, Sean C, Yao, X., He, Y., & Lu, G.Q. (2006) Atomic hydrogen diffusion in novel magnesium nanostructures : the impact of incorporated subsurface carbon atoms. Journal of Physics: Conference Series, 29, pp. 167-172.

Fonte

School of Chemistry, Physics & Mechanical Engineering; Science & Engineering Faculty

Tipo

Journal Article