Journal article

Engineering the Site-Disorder and Lithium Distribution in the Lithium Superionic Argyrodite Li6PS5Br


Authors listGautam, Ajay; Sadowski, Marcel; Ghidiu, Michael; Minafra, Nicolo; Senyshyn, Anatoliy; Albe, Karsten; Zeier, Wolfgang G.

Publication year2021

JournalAdvanced Energy Materials

Volume number11

Issue number5

ISSN1614-6832

eISSN1614-6840

Open access statusHybrid

DOI Linkhttps://doi.org/10.1002/aenm.202003369

PublisherWiley


Abstract
Lithium argyrodite superionic conductors, of the form Li6PS5X (X = Cl, Br, and I), have shown great promise as electrolytes for all-solid-state batteries because of their high ionic conductivity and processability. The ionic conductivity of these materials is highly influenced by the structural disorder of S2-/X- anions; however, it is unclear if and how this affects the Li distribution and how it relates to transport, which is critical for improving conductivities. Here it is shown that the site-disorder once thought to be inherent to given compositions can be carefully controlled in Li6PS5Br by tuning synthesis conditions. The site-disorder increases with temperature and can be "frozen" in. Neutron diffraction shows this phenomenon to affect the Li+ substructure by decreasing the jump distance between so-called "cages" of clustered Li+ ions; expansion of these cages makes a more interconnected pathway for Li+ diffusion, thereby increasing ionic conductivity. Additionally, ab initio molecular dynamics simulations provide Li+ diffusion coefficients and time-averaged radial distribution functions as a function of the site-disorder, corroborating the experimental results on Li+ distribution and transport. These approaches of modulating the Li+ substructure can be considered essential for the design and optimization of argyrodites and may be extended to other lithium superionic conductors.



Citation Styles

Harvard Citation styleGautam, A., Sadowski, M., Ghidiu, M., Minafra, N., Senyshyn, A., Albe, K., et al. (2021) Engineering the Site-Disorder and Lithium Distribution in the Lithium Superionic Argyrodite Li6PS5Br, Advanced Energy Materials, 11(5), Article 2003369. https://doi.org/10.1002/aenm.202003369

APA Citation styleGautam, A., Sadowski, M., Ghidiu, M., Minafra, N., Senyshyn, A., Albe, K., & Zeier, W. (2021). Engineering the Site-Disorder and Lithium Distribution in the Lithium Superionic Argyrodite Li6PS5Br. Advanced Energy Materials. 11(5), Article 2003369. https://doi.org/10.1002/aenm.202003369



Keywords


anionic site‐BRlithium substructure

Last updated on 2025-10-06 at 11:19