SrMoO₃, SrNbO₃, and SrVO₃ are remarkable highly conducting d¹ (V, Nb) or d² (Mo) perovskite metals with an intrinsically high transparency in the visible. A key scientific question is how the optical properties of these materials can be manipulated to make them suitable for applications as transparent electrodes and in plasmonics. Here, it is shown how 3d/4d cationic substitution in perovskites tailors the relevant materials parameters, i.e., optical transition energy and plasma frequency. With the example of the solid‐state solution SrV₁₋ₓMoₓO₃, it is shown that the absorption and reflection edges can be shifted to the edges of the visible light spectrum, resulting in a material that has the potential to outperform indium tin oxide (ITO) d...
We present a systematic investigation of the role and importance of excitonic effects on the optical...
Despite being a requisite for modern transparent electronics, few metals have a sufficiently high in...
We report optical properties of doped n-type SrSnO3 and ZnSnO3 in relation to potential application ...
SrMoO₃, SrNbO₃, and SrVO₃ are remarkable highly conducting d¹ (V, Nb) or d² (Mo) perovskite metals w...
Transparent conductors-nearly an oxymoron-are in pressing demand, as ultrathin-film technologies bec...
Transparent metallic oxides are pivotal materials in information technology, photovoltaics, or even ...
International audienceThe vanadate SrVO3 is a transparent conductor perovskite with optical and elec...
Correlated metallic transition metal oxides offer a route to thin film transparent conductors that i...
Transparent and metallic oxides based on 3d and 4d metals are promising materials for plasmonics. He...
International audienceIt has been shown recently that the perovskite oxide SrVO3 is a transparent co...
Correlated metals with high carrier density and strongly correlated electron effects provide an alte...
International audienceIt has been shown recently that the perovskite oxide SrVO 3 is a transparent c...
International audienceThe vanadate SrVO3 is a transparent conductor perovskite with optical and elec...
We present a systematic investigation of the role and importance of excitonic effects on the optical...
Despite being a requisite for modern transparent electronics, few metals have a sufficiently high in...
We report optical properties of doped n-type SrSnO3 and ZnSnO3 in relation to potential application ...
SrMoO₃, SrNbO₃, and SrVO₃ are remarkable highly conducting d¹ (V, Nb) or d² (Mo) perovskite metals w...
Transparent conductors-nearly an oxymoron-are in pressing demand, as ultrathin-film technologies bec...
Transparent metallic oxides are pivotal materials in information technology, photovoltaics, or even ...
International audienceThe vanadate SrVO3 is a transparent conductor perovskite with optical and elec...
Correlated metallic transition metal oxides offer a route to thin film transparent conductors that i...
Transparent and metallic oxides based on 3d and 4d metals are promising materials for plasmonics. He...
International audienceIt has been shown recently that the perovskite oxide SrVO3 is a transparent co...
Correlated metals with high carrier density and strongly correlated electron effects provide an alte...
International audienceIt has been shown recently that the perovskite oxide SrVO 3 is a transparent c...
International audienceThe vanadate SrVO3 is a transparent conductor perovskite with optical and elec...
We present a systematic investigation of the role and importance of excitonic effects on the optical...
Despite being a requisite for modern transparent electronics, few metals have a sufficiently high in...
We report optical properties of doped n-type SrSnO3 and ZnSnO3 in relation to potential application ...