The location of Ti atom in sodium alanate : an ab initio spin-polarised study


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

2007

Resumo

In this work, ab initio spin-polarised Density Functional Theory (DFT) calculations are performed to study the interaction of a Ti atom with a NaAlH4(001) surface. We confirm that an interstitially located Ti atom in the NaAlH4 subsurface is the most energetically favoured configuration as recently reported (Chem. Comm. (17) 2006, 1822). On the NaAlH4(001) surface, the Ti atom is most stable when adsorbed between two sodium atoms with an AlH4 unit beneath. A Ti atom on top of an Al atom is also found to be an important structure at low temperatures. The diffusion of Ti from the Al-top site to the Na-bridging site has a low activation barrier of 0.20 eV and may be activated at the experimental temperatures (∼323 K). The diffusion of a Ti atom into the energetically favoured subsurface interstitial site occurs via the Na-bridging surface site and is essentially barrierless.

Identificador

http://eprints.qut.edu.au/61153/

Publicador

Inderscience Publishers

Relação

DOI:10.1504/IJNT.2007.014751

Du, A.J., Smith, Sean C., & Lu, G.Q. (2007) The location of Ti atom in sodium alanate : an ab initio spin-polarised study. International Journal of Nanotechnology, 4(5), pp. 564-573.

Direitos

Copyright 2007 Inderscience Enterprises Ltd.

Fonte

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

Palavras-Chave #density functional theory, ab initio DFT calculation, spin polarisation, surface adsorption, diffusion, activation barrier, Ti atoms, titanium atoms, sodium alanate, nanotechnology, hydrogen storage systems
Tipo

Journal Article