We provide insights into the influence of surface termination on the oxygen vacancy incorporation for the perovskite model material SrTiO3 during annealing in reducing gas environments. We present a novel approach to tailor the oxygen vacancy formation by controlling the termination. We prove that a SrO-termination can inhibit the incorporation of oxygen vacancies across the (100)-surface and apply this to control their incorporation during thin film growth. Utilizing the conducting interface between LaAlO3 and SrTiO3, we could tailor the oxygen-vacancy based conductivity contribution by the level of SrO termination at the interface
Electrical transport and microstructure of interfaces between nm-thick films of various perovskite o...
Electrical transport and microstructure of interfaces between nm-thick films of various perovskite o...
International audienceSrTiO3 becomes a high-mobility metallic conductor when doped with oxygen vacan...
Emerging electrical and magnetic properties of oxide interfaces are often dominated by the terminati...
Controlling the properties of the surface region of ternary perovskite-type titanates is of high imp...
Controlling the properties of the surface region of ternary perovskite-type titanates is of high imp...
We experimentally investigated optical, electrical, and microstructural properties of heterointerfac...
We experimentally investigated optical, electrical, and microstructural properties of heterointerfac...
Transition metal oxides constitute one of the most interesting material classes due to their wide va...
Perovskite materials, specifically strontium titanate (SrTiO3, STO) thin films, have gained signific...
Perovskite materials, specifically strontium titanate (SrTiO3, STO) thin films, have gained signific...
Using both computational and experimental analysis, we demonstrate a rich point-defect phase diagram...
Density functional theory and low energy ion scattering spectroscopy were applied to study the mecha...
The origin of the conductivity at the interface of two insulating perovskite oxides is a matter of i...
Analogous to semiconductor heterostructures, interfaces between polar and non-polar perovskite oxide...
Electrical transport and microstructure of interfaces between nm-thick films of various perovskite o...
Electrical transport and microstructure of interfaces between nm-thick films of various perovskite o...
International audienceSrTiO3 becomes a high-mobility metallic conductor when doped with oxygen vacan...
Emerging electrical and magnetic properties of oxide interfaces are often dominated by the terminati...
Controlling the properties of the surface region of ternary perovskite-type titanates is of high imp...
Controlling the properties of the surface region of ternary perovskite-type titanates is of high imp...
We experimentally investigated optical, electrical, and microstructural properties of heterointerfac...
We experimentally investigated optical, electrical, and microstructural properties of heterointerfac...
Transition metal oxides constitute one of the most interesting material classes due to their wide va...
Perovskite materials, specifically strontium titanate (SrTiO3, STO) thin films, have gained signific...
Perovskite materials, specifically strontium titanate (SrTiO3, STO) thin films, have gained signific...
Using both computational and experimental analysis, we demonstrate a rich point-defect phase diagram...
Density functional theory and low energy ion scattering spectroscopy were applied to study the mecha...
The origin of the conductivity at the interface of two insulating perovskite oxides is a matter of i...
Analogous to semiconductor heterostructures, interfaces between polar and non-polar perovskite oxide...
Electrical transport and microstructure of interfaces between nm-thick films of various perovskite o...
Electrical transport and microstructure of interfaces between nm-thick films of various perovskite o...
International audienceSrTiO3 becomes a high-mobility metallic conductor when doped with oxygen vacan...