International audienceThe search for Li ions conducting ceramics is burgeoning, owing to the regain interest for solid state batteries. Here we investigate the effect of Mg substitutions on the ionic conductivity of the A2SnO3 (A = Li, Na) phases. Pure A1.8Mg0.1SnO3 and A2.2Mg0.1Sn0.9O3 were structurally characterized and their ionic conductivity was measured by AC impedance spectroscopy. We show a decrease of the activation energy with increasing the Mg substitution and found ionic conductivities three and two orders of magnitude higher for Li2.2Mg0.1Sn0.9O3 and Na1.8Mg0.1SnO3 as compared to pristine Li2SnO3 and Na2SnO3, respectively. Neutron diffraction was used to determine the Mg localization in the crystal structure and to provide a ra...
International audienceSolid electrolytes with Nasicon structure are already envisioned as promising ...
Li2SnS3 is a fast Li+ ion conductor that exhibits high thermal stability (mp ∼750 °C) as well as env...
We investigated why commercial Li$_7$La$_3$Zr$_2$O$_{12}$ (LLZO) with Nb- and Ta substitution shows ...
International audienceThe search for Li ions conducting ceramics is burgeoning, owing to the regain ...
The search for Li ions conducting ceramics is burgeoning, owing to the regain interest for solid sta...
Li9S3N (LSN) is investigated as a new lithium ion conductor and barrier coating between an electroly...
Herein, we report a study on the structural and thermodynamic effects that cation size disparity may...
The lithium argyrodites Li6PS5X (X = Cl, Br, and I) have attracted interest as fast solid ioniccondu...
Solid-state batteries with inorganic solid electrolytes are currently being discussed as a more reli...
Exploration of sulfidic sodium solid electrolytes and their design contributes to advances in solid-...
Exploration of sulfidic sodium solid electrolytes and their design contributes to advances insolid s...
Tin-based oxide Li2SnO3 has attracted considerable interest as a promising cathode material for pote...
Triclinic Na2Mn3O7 has been identified as a promising material for high-capacity sodium-ion batterie...
Mechanically sinterable sulfide Na+ superionic conductors are key to enabling room-temperature-opera...
We report novel calcium-substituted perovskite-type solid state electrolyte with nominal composition...
International audienceSolid electrolytes with Nasicon structure are already envisioned as promising ...
Li2SnS3 is a fast Li+ ion conductor that exhibits high thermal stability (mp ∼750 °C) as well as env...
We investigated why commercial Li$_7$La$_3$Zr$_2$O$_{12}$ (LLZO) with Nb- and Ta substitution shows ...
International audienceThe search for Li ions conducting ceramics is burgeoning, owing to the regain ...
The search for Li ions conducting ceramics is burgeoning, owing to the regain interest for solid sta...
Li9S3N (LSN) is investigated as a new lithium ion conductor and barrier coating between an electroly...
Herein, we report a study on the structural and thermodynamic effects that cation size disparity may...
The lithium argyrodites Li6PS5X (X = Cl, Br, and I) have attracted interest as fast solid ioniccondu...
Solid-state batteries with inorganic solid electrolytes are currently being discussed as a more reli...
Exploration of sulfidic sodium solid electrolytes and their design contributes to advances in solid-...
Exploration of sulfidic sodium solid electrolytes and their design contributes to advances insolid s...
Tin-based oxide Li2SnO3 has attracted considerable interest as a promising cathode material for pote...
Triclinic Na2Mn3O7 has been identified as a promising material for high-capacity sodium-ion batterie...
Mechanically sinterable sulfide Na+ superionic conductors are key to enabling room-temperature-opera...
We report novel calcium-substituted perovskite-type solid state electrolyte with nominal composition...
International audienceSolid electrolytes with Nasicon structure are already envisioned as promising ...
Li2SnS3 is a fast Li+ ion conductor that exhibits high thermal stability (mp ∼750 °C) as well as env...
We investigated why commercial Li$_7$La$_3$Zr$_2$O$_{12}$ (LLZO) with Nb- and Ta substitution shows ...