| Literature DB >> 28664208 |
Ziqin Rong1, Penghao Xiao2, Miao Liu2, Wenxuan Huang1, Daniel C Hannah2, William Scullin3, Kristin A Persson4, Gerbrand Ceder4.
Abstract
In this work, we identify a new potential Mg battery cathode structure Mo3(PO4)3O, which is predicted to exhibit ultra-fast Mg2+ diffusion and relatively high voltage based on first-principles density functional theory calculations. Nudged elastic band calculations reveal that the migration barrier of the percolation channel is only ∼80 meV, which is remarkably low, and comparable to the best Li-ion conductors. This low barrier is verified by ab initio molecular dynamics and kinetic Monte Carlo simulations. The voltage and specific energy are predicted to be ∼1.98 V and ∼173 W h kg-1, respectively. If confirmed by experiments, this material would have the highest known Mg mobility among inorganic compounds.Entities:
Year: 2017 PMID: 28664208 DOI: 10.1039/c7cc02903a
Source DB: PubMed Journal: Chem Commun (Camb) ISSN: 1359-7345 Impact factor: 6.222