English

First principles modelling of magnesium titanium hydrides

Materials Science 2010-02-10 v1

Abstract

Mixing Mg with Ti leads to a hydride Mg(x)Ti(1-x)H2 with markedly improved (de)hydrogenation properties for x < 0.8, as compared to MgH2. Optically, thin films of Mg(x)Ti(1-x)H2 have a black appearance, which is remarkable for a hydride material. In this paper we study the structure and stability of Mg(x)Ti(1-x)H2, x= 0-1 by first-principles calculations at the level of density functional theory. We give evidence for a fluorite to rutile phase transition at a critical composition x(c)= 0.8-0.9, which correlates with the experimentally observed sharp decrease in (de)hydrogenation rates at this composition. The densities of states of Mg(x)Ti(1-x)H2 have a peak at the Fermi level, composed of Ti d states. Disorder in the positions of the Ti atoms easily destroys the metallic plasma, however, which suppresses the optical reflection. Interband transitions result in a featureless optical absorption over a large energy range, causing the black appearance of Mg(x)Ti(1-x)H2.

Cite

@article{arxiv.0910.1003,
  title  = {First principles modelling of magnesium titanium hydrides},
  author = {Süleyman Er and Michiel J. van Setten and Gilles A. de Wijs and Geert Brocks},
  journal= {arXiv preprint arXiv:0910.1003},
  year   = {2010}
}

Comments

22 pages, 9 figures, 4 tables

R2 v1 2026-06-21T13:54:42.750Z