Si-5-pentagonal rings and Y-shaped Si-4 building blocks in Li32Si18 system: similarities with the crystalline Zintl phase Li12Si7
Abstract
Potential energy surface screening combined with density functional computations reveal that the Li32Si18 lowest energy structure consists of Si-4 Y-shaped and Si-5-pentagonal moieties, as observed in the crystalline Zintl-phase Li12Si7. The Li32Si18 system can be interpreted as an assembly of Li10Si4 (Si-4-Y) and Li6Si5 (Si-5-pentagonal) clusters, showing a clear growth pattern towards a material assembled from clusters. Chemical bonding analysis shows that the silicon atoms are strongly connected by covalent bonds, with a significant electron transfer from the lithium resulting in primarily electrostatic Li-Si interactions. This study establishes a structural relationship between Li-Si compounds at sub-nano, nano, and macro scales, which, together with the abundant literature on Zintl-phases of lithium silicides, may open new routes for materials design.
Más información
Título según WOS: | Si-5-pentagonal rings and Y-shaped Si-4 building blocks in Li32Si18 system: similarities with the crystalline Zintl phase Li12Si7 |
Título de la Revista: | MOLECULAR SYSTEMS DESIGN ENGINEERING |
Volumen: | 8 |
Número: | 2 |
Editorial: | ROYAL SOC CHEMISTRY |
Fecha de publicación: | 2023 |
Página de inicio: | 207 |
Página final: | 216 |
DOI: |
10.1039/d2me00152g |
Notas: | ISI |