Strontium titanate (SrTiO3, STO) is a prototypical perovskite oxide, widely exploited in many technological applications, from catalysis to energy conversion devices. In the context of solid-oxide fuel cells, STO has been recently applied as an epitaxial substrate for nano-sized layers of mixed ion-electron conductive catalysts with enhanced electrochemical performances. To extend the applications of such heterogeneous nano-cathodes in real devices, also the STO support should be active for both electron transport and oxide diffusion. To this end, we explored using first-principles calculations the strategy of doping of STO at the Sr site with sodium and potassium. These two ions fit in the perovskite structure and induce holes in the STO v...
The electronic conductivity and thermodynamic stability of mixed n-type and p-type doped SrTiO3 have...
Sr2Fe1.5Mo0.5O6-delta (SFMO) is a promising electrode material for solid oxide electrochemical cells...
Electrolyzer and fuel cells based on proton-conducting solid oxide ceramics (PC-SOEC/FC) are gaining...
Strontium titanate (SrTiO3, STO) is a prototypical perovskite oxide, widely exploited in many techno...
Strontium titanate (SrTiO3, STO) is a prototypical perovskite oxide, widely exploited in many techno...
The effect of p- and n-type dopants on ionic and electronic conductivity of SrTiO3based perovskites ...
Mixed conducting perovskite oxides are promising catalysts for high-temperature oxygen reduction rea...
Wide bandgap semiconductor perovskite SrTiO3 (STO) has attracted extensive attention due to its high...
Global advances in industrialization are precipitating increasingly rapid consumption of fossil fuel...
The effect of dislocations on the chemical, electrical and transport properties in oxide materials i...
„Everything new is well-forgotten old“. This saying appears to fit to SrTiO3, as a representative me...
The electrical properties of donor-doped SrTiO3 (n-STO) are profoundly affected by an oxidation-indu...
Using both computational and experimental analysis, we demonstrate a rich point-defect phase diagram...
The influence of high temperature oxygen annealing on (100) oriented donor-doped SrTiO3 single cryst...
Strontium titanate is a promising dielectric material for device applications including capacitors a...
The electronic conductivity and thermodynamic stability of mixed n-type and p-type doped SrTiO3 have...
Sr2Fe1.5Mo0.5O6-delta (SFMO) is a promising electrode material for solid oxide electrochemical cells...
Electrolyzer and fuel cells based on proton-conducting solid oxide ceramics (PC-SOEC/FC) are gaining...
Strontium titanate (SrTiO3, STO) is a prototypical perovskite oxide, widely exploited in many techno...
Strontium titanate (SrTiO3, STO) is a prototypical perovskite oxide, widely exploited in many techno...
The effect of p- and n-type dopants on ionic and electronic conductivity of SrTiO3based perovskites ...
Mixed conducting perovskite oxides are promising catalysts for high-temperature oxygen reduction rea...
Wide bandgap semiconductor perovskite SrTiO3 (STO) has attracted extensive attention due to its high...
Global advances in industrialization are precipitating increasingly rapid consumption of fossil fuel...
The effect of dislocations on the chemical, electrical and transport properties in oxide materials i...
„Everything new is well-forgotten old“. This saying appears to fit to SrTiO3, as a representative me...
The electrical properties of donor-doped SrTiO3 (n-STO) are profoundly affected by an oxidation-indu...
Using both computational and experimental analysis, we demonstrate a rich point-defect phase diagram...
The influence of high temperature oxygen annealing on (100) oriented donor-doped SrTiO3 single cryst...
Strontium titanate is a promising dielectric material for device applications including capacitors a...
The electronic conductivity and thermodynamic stability of mixed n-type and p-type doped SrTiO3 have...
Sr2Fe1.5Mo0.5O6-delta (SFMO) is a promising electrode material for solid oxide electrochemical cells...
Electrolyzer and fuel cells based on proton-conducting solid oxide ceramics (PC-SOEC/FC) are gaining...