DOE OSTI · 1813135
A two-dimensional type I superionic conductor
Abstract
Superionic conductors (SICs) possess liquid-like ionic diffusivity in the solid state, finding wide applicability from electrolytes in energy storage to materials for thermoelectric energy conversion. Type I SICs (e.g., AgI, Ag 2 Se, etc.) are defined by a first-order transition to the superionic state and have so far been found exclusively in three-dimensional crystal structures. Here, we reveal a two-dimensional type I SIC, α-KAg 3 Se 2 by scattering techniques and complementary simulations. Quasi-elastic neutron scattering and ab initio molecular dynamics simulations confirm that the superionic Ag + ions are confined to sub-nanometre sheets, with the simulated local structure validated by experimental X-ray powder pair-distribution-function analysis. Finally, we demonstrate that the phase transition temperature can be controlled by chemical substitution of the alkali metal ions that comprise the immobile charge-balancing layers. Our work thus extends the known classes of SICs and will facilitate the design of new materials with tailored ionic conductivities and phase transitions.
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Rettie, Alexander E., Ding, Jingxuan, Zhou, Xiuquan, Johnson, Michael J., Malliakas, Christos D., Osti, Naresh C., Chung, Duck Young, Osborn, Raymond, Delaire, Olivier, Rosenkranz, Stephan, Kanatzidis, Mercouri G.. 2021-07-22. A two-dimensional type I superionic conductor. https://doi.org/10.1038/s41563-021-01053-9
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