arXiv · 1904.12212
First-principles study of the impact of grain boundary formation in the cathode material LiFePO4
Abstract
Motivated by the need to understand the role of internal interfaces in Li migration occurring in Li-ion batteries, a first principles study of a coincident site lattice grain boundary in LiFePO4 cathode material and in its delithiated counterpart FPO4 is performed. The structure of the investigated grain boundary is obtained and the corresponding interface energy is calculated. Other properties, such as ionic charges and magnetic moments, excess free volume and the lifetime of positrons trapped at the interfaces, are determined and discussed. The results show that while the grain boundary in LiFePO4 has desired structural and bonding characteristics, the analogous boundary in FePO4 needs to be yet optimized to allow for an efficient Li diffusion study.
Explore related subjects
Keep this discovery
Jan Kuriplach, Aki Pulkkinen, Bernardo Barbiellini. 2019-04-27. First-principles study of the impact of grain boundary formation in the cathode material LiFePO4. https://doi.org/10.3390/condmat4030080
Cite the original work for its findings. Save a collection to share your selection of sources.