info:eu-repo/semantics/article
Hydrogen divacancy diffusion: A new perspective on H migration in MgH2 materials for energy storage
Fecha
2016-12-05Registro en:
German, Estefania; Gebauer, Verónica; Hydrogen divacancy diffusion: A new perspective on H migration in MgH2 materials for energy storage; Royal Society of Chemistry; Physical Chemistry Chemical Physics; 19; 2; 5-12-2016; 1174-1180
1463-9076
CONICET Digital
CONICET
Autor
German, Estefania
Gebauer, Verónica
Resumen
The formation and diffusion of pairs of hydrogen vacancies (divacancies) in magnesium hydride is modeled using density functional theory. Compared to the commonly studied case of single hydrogen vacancies, it is found that divacancies are energetically favored over two isolated vacancies. Also, as a function of the diffusion axis considered, the calculated diffusion barriers of divacancies are either smaller or of comparable magnitude with respect to the diffusion barriers of a single vacancy. These findings shed new light on hydrogen transport in MgH2, which is of crucial importance to understand the kinetics of hydrogen take-up and release in this storage material.