Surface x-ray diffraction has been employed to quantitatively assess the surface structure of α-Cr2O3(0001) as a function of oxygen partial pressure at room temperature. In ultrahigh vacuum, the surface is found to exhibit a partially occupied double layer of chromium atoms. At an oxygen partial pressure of 1×10−2 mbar, the surface is determined to be terminated by chromyl species (CrO), clearly demonstrating that the presence of oxygen can significantly influence the structure of α-Cr2O3(0001)
Local-density calculations on the CrO2 (001) surface are reported. The half-metallic character of th...
Local-density calculations on the CrO2 (001) surface are reported. The half-metallic character of th...
The interaction of oxygen with the epitaxially grown Cr2O3(0001) oxide surface has been examined usi...
The Cr2O3(0001) surface is assumed to terminate by chromium atoms, chromyl groups, and oxygen atoms....
International audienceIn this theoretical work, the stability of α-Cr2O3 surfaces in various oxidizi...
Surface X-ray diffraction has been employed to elucidate the surface structure of α-Cr2O3(0001) as a...
International audienceIn this theoretical work, the stability of α-Cr2O3 surfaces in various oxidizi...
International audienceIn this theoretical work, the stability of α-Cr2O3 surfaces in various oxidizi...
International audienceIn this theoretical work, the stability of α-Cr2O3 surfaces in various oxidizi...
International audienceIn this theoretical work, the stability of α-Cr2O3 surfaces in various oxidizi...
Transition metal oxides are important materials in heterogenous catalysis, as supporting materials a...
Local-density calculations on the CrO2 (001) surface are reported. The half-metallic character of th...
Local-density calculations on the CrO2 (001) surface are reported. The half-metallic character of th...
Local-density calculations on the CrO2 (001) surface are reported. The half-metallic character of th...
Surface X-ray diffraction has been employed to elucidate the surface structure of α-Cr<sub>2</sub>O<...
Local-density calculations on the CrO2 (001) surface are reported. The half-metallic character of th...
Local-density calculations on the CrO2 (001) surface are reported. The half-metallic character of th...
The interaction of oxygen with the epitaxially grown Cr2O3(0001) oxide surface has been examined usi...
The Cr2O3(0001) surface is assumed to terminate by chromium atoms, chromyl groups, and oxygen atoms....
International audienceIn this theoretical work, the stability of α-Cr2O3 surfaces in various oxidizi...
Surface X-ray diffraction has been employed to elucidate the surface structure of α-Cr2O3(0001) as a...
International audienceIn this theoretical work, the stability of α-Cr2O3 surfaces in various oxidizi...
International audienceIn this theoretical work, the stability of α-Cr2O3 surfaces in various oxidizi...
International audienceIn this theoretical work, the stability of α-Cr2O3 surfaces in various oxidizi...
International audienceIn this theoretical work, the stability of α-Cr2O3 surfaces in various oxidizi...
Transition metal oxides are important materials in heterogenous catalysis, as supporting materials a...
Local-density calculations on the CrO2 (001) surface are reported. The half-metallic character of th...
Local-density calculations on the CrO2 (001) surface are reported. The half-metallic character of th...
Local-density calculations on the CrO2 (001) surface are reported. The half-metallic character of th...
Surface X-ray diffraction has been employed to elucidate the surface structure of α-Cr<sub>2</sub>O<...
Local-density calculations on the CrO2 (001) surface are reported. The half-metallic character of th...
Local-density calculations on the CrO2 (001) surface are reported. The half-metallic character of th...
The interaction of oxygen with the epitaxially grown Cr2O3(0001) oxide surface has been examined usi...