Alkali and transition metal atom-functionalized germanene for hydrogen storage: A DFT investigation

Akari Narayama Sosa, Francisco de Santiago, Álvaro Miranda, Alejandro Trejo, Fernando Salazar, Luis Antonio Pérez, Miguel Cruz-Irisson

Producción científica: Contribución a una revistaArtículorevisión exhaustiva

58 Citas (Scopus)

Resumen

In this work, we have performed density functional theory-based calculations to study the adsorption of H2 molecules on germanene decorated with alkali atoms (AM) and transition metal atoms (TM). The cohesive energy indicates that interaction between AM (TM) atoms and germanene is strong. The values of the adsorption energies of H2 molecules on the AM or TM atoms are in the range physisorption. The K-decorated germanene has the largest storage capacity, being able to bind up to six H2 molecules, whereas the Au and Na atoms adsorbed five and four H2 molecules, respectively. Li and Ag atoms can bind a maximum of three H2 molecules, while Cu-decorated germanene only adsorbed one H2 molecule. Formation energies show that all the studied cases of H2 molecules adsorbed on AM and TM atom-decorated germanene are energetically favorable. These results indicate that decorated germanene can serve as a hydrogen storage system.

Idioma originalInglés
Páginas (desde-hasta)20245-20256
Número de páginas12
PublicaciónInternational Journal of Hydrogen Energy
Volumen46
N.º38
DOI
EstadoPublicada - 3 jun. 2021

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