Theoretical study of [111]-germanium nanowires as anode materials in rechargeable batteries: a density functional theory approach



Título del documento: Theoretical study of [111]-germanium nanowires as anode materials in rechargeable batteries: a density functional theory approach
Revista: Revista mexicana de física
Base de datos:
Número de sistema: 000592460
ISSN: 0035-001X
Autores: 1
1
1
1
1
2
2
1
Instituciones: 1Instituto Politécnico Nacional, ESIME-Culhuacan, Ciudad de México. México
2Universidad Nacional Autónoma de México, Instituto de Física, Ciudad de México. México
Año:
Periodo: May-Jun
Volumen: 69
Número: 3
País: México
Idioma: Inglés
Resumen en inglés In this work, we present a density functional theory study of hydrogen-passivated germanium nanowires grown along the 111 crystallographic direction. The study is performed within the local density approximation and the supercell technique. Four different diameters of nanowires were considered and the surface hydrogen atoms were replaced by Li ones using a sequential process. The results indicate that the nanowires have a semiconductor behaviour and the energy band gap diminishes when the number of Li atoms per unit cell increases. The formation energy results reveal that the Li atoms increase the stability of the Ge nanowires, and there is a charge transfer from the Li atoms to the surface Ge atoms. The open-circuit voltage values are almost independent of the concentration of Li atoms. Moreover the lithium storage capacity results reveal that the Ge nanowires could be good candidates to be incorporated as anodic materials in the new generation of rechargeable batteries.
Keyword: Germanium nanowires,
Energy storage,
Anode materials,
Density functional theory.
Texto completo: Texto completo (Ver PDF) Texto completo (Ver HTML)