We describe the synthesis and lithium-ion conductivity of new perovskite-related oxides of the formulas, LiCa1.65square0.35Ti1.3B1.7O9 (B =Nb,Ta)(I,II), LiSr2Ti2.5W0.5O9 (III) and LiSr1.65square0.35Ti2.15W0.85O9(IV). OxidesI andII crystallize in orthorhombic (GdFeO3-type) structure, while oxidesIII andIV possess cubic symmetry. All of them exhibit significant lithium-ion conduction at high temperatures, the highest conductivity of ~10-2S/cm at 800°C among the oxides is exhibited by the composition IV. The results are discussed in the light of previous work on lithium-ion conducting perovskite oxides containing d0 cations
The synthesis by solid state reaction of new fast ion conductors with perovskite structure was carri...
Conventional lithium-ion batteries embrace graphite anodes which operate at potential as low as meta...
La0.5Li0.5TiO3 perovskite was synthesized by various wet chemical methods. By adopting low temperat...
We describe the synthesis and lithium-ion conductivity of new perovskite-related oxides of the formu...
We synthesized Li2x−ySr1−xTayZr1−yO3 (LSTZ, x=0.75y) with various Ta contents y=0.60, 0.70, 0.75, 0....
We describe the design and synthesis of new lithium ion conductors with the formula, LiSr1.65?0.35B1...
We describe the design and synthesis of new lithium ion conductors with the formula, LiSr(1.65)recta...
The structure, thermal stability, morphology and ion conductivity of titanium perovskites with the g...
The properties of perovskite type ABO3 lithium-ion conducting oxides based on lanthanum lithium tita...
Perovskite-type compounds ABO3 in which A= La, Li and B = Ti (Li2/33xLaxTiO3, LLT) exhibit very high...
Perovskite-type solid-state electrolytes, Li3xLa2/3–xTiO3 (LLTO), are considered among the most prom...
Layered perovskite oxides of the Ruddlesden-Popper (RP) type structure can be good lithium-ion condu...
We report the synthesis, structure and ionic conductivity of new layered perovskite oxides of the fo...
We report the synthesis, structure and ionic conductivity of new layered perovskite oxides of the fo...
We synthesized polycrystalline perovskite-type Li-ion-conducting oxides (general formula: ABO3), Sr0...
The synthesis by solid state reaction of new fast ion conductors with perovskite structure was carri...
Conventional lithium-ion batteries embrace graphite anodes which operate at potential as low as meta...
La0.5Li0.5TiO3 perovskite was synthesized by various wet chemical methods. By adopting low temperat...
We describe the synthesis and lithium-ion conductivity of new perovskite-related oxides of the formu...
We synthesized Li2x−ySr1−xTayZr1−yO3 (LSTZ, x=0.75y) with various Ta contents y=0.60, 0.70, 0.75, 0....
We describe the design and synthesis of new lithium ion conductors with the formula, LiSr1.65?0.35B1...
We describe the design and synthesis of new lithium ion conductors with the formula, LiSr(1.65)recta...
The structure, thermal stability, morphology and ion conductivity of titanium perovskites with the g...
The properties of perovskite type ABO3 lithium-ion conducting oxides based on lanthanum lithium tita...
Perovskite-type compounds ABO3 in which A= La, Li and B = Ti (Li2/33xLaxTiO3, LLT) exhibit very high...
Perovskite-type solid-state electrolytes, Li3xLa2/3–xTiO3 (LLTO), are considered among the most prom...
Layered perovskite oxides of the Ruddlesden-Popper (RP) type structure can be good lithium-ion condu...
We report the synthesis, structure and ionic conductivity of new layered perovskite oxides of the fo...
We report the synthesis, structure and ionic conductivity of new layered perovskite oxides of the fo...
We synthesized polycrystalline perovskite-type Li-ion-conducting oxides (general formula: ABO3), Sr0...
The synthesis by solid state reaction of new fast ion conductors with perovskite structure was carri...
Conventional lithium-ion batteries embrace graphite anodes which operate at potential as low as meta...
La0.5Li0.5TiO3 perovskite was synthesized by various wet chemical methods. By adopting low temperat...