To improve ionic conductivity, solid-state electrolytes with polarizable anions that weakly interact with mobile ions have received much attention, a recent example being lithium/sodium-rich antiperovskite MHCh (M = Li, Na; Ch = S, Se, Te). Herein, in order to clarify the role of anions in antiperovskites, the MFCh family, in which the polarizable H anion at the octahedral center is replaced by the ionic F anion, is investigated theoretically and experimentally. We unexpectedly found that the stronger attractive interaction between F and M ions does not slow down the M ion diffusion, with the calculated energy barrier being as low as that of MHCh. This fact suggests that the low-frequency rotational phonon modes of the octahedron of cubic MFCh (and MHCh) are intrinsic to facilitate the fast ionic diffusion. A systematic analysis further reveals a correlation between the tolerance factor and the ionic transport: as decreases within the cubic phase, the rotational mode becomes softer, resulting in the reduction of the migration energy. The cubic iodine-doped LiFSe has a room-temperature ionic conductivity of 5 × 10 S/cm with a bulk activation energy of 0.18 eV.

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http://dx.doi.org/10.1021/jacs.1c04260DOI Listing

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