Vacancy mediated desorption of hydrogen from a sodium alanate surface : An ab initio spin-polarized study


Autoria(s): Du, A. J.; Smith, Sean C.; Lu, G. Q.
Data(s)

01/04/2007

Resumo

Ab initio spin-polarized density functional theory calculations are performed to explore the effect of single Na vacancy on NaAlH4(001) surface on the initial dehydrogenation kinetics. The authors found that two Al–H bond lengths become elongated and weakened due to the presence of a Na vacancy on the NaAlH4(001) surface. Spontaneous recombination from the surface to form molecular hydrogen is observed in the spin-polarized ab initio molecular dynamics simulation. The authors’ results indicate that surface Na vacancies play a critical role in accelerating the dehydrogenation kinetics in sodium alanate. The understanding gained here will aid in the rational design and development of complex hydride materials for hydrogen storage

Identificador

http://eprints.qut.edu.au/61157/

Publicador

American Institute of Physics

Relação

DOI:10.1063/1.2721127

Du, A. J., Smith, Sean C., & Lu, G. Q. (2007) Vacancy mediated desorption of hydrogen from a sodium alanate surface : An ab initio spin-polarized study. Applied Physics Letters, 90, pp. 1431191-1431193.

Direitos

Copyright 2007 American Institute of Physics

Fonte

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

Palavras-Chave #desorption #hydrogen #sodium alanate
Tipo

Journal Article