An in situ atomic level investigation of the surface structure of anatase nanocrystals has been conducted under conditions relevant to gas phase photocatalytic splitting of water. The experiments were carried out in a modified environmental transmission electron microscope fitted with a high intensity broadband light source with an illumination intensity of 1430 mW/cm<sup>2</sup> close to 10 suns. When the titania is exposed to light and water vapor, the initially crystalline surface converts to an amorphous phase one to two monolayers thick. Spectroscopic analyses show that the amorphous layer contains titanium in a +3 oxidation state. The amorphous layer is stable and does not increase in thickness with time and is heavily hydroxylated. T...
An anatase film electrode on FTO glass has been produced by a mix of commercial nanostructured anata...
We comprehensively explored the photocatalytic properties, in H2 production by methanol photosteam r...
International audienceIn this study, we have investigated the hydrothermal stability of mesostructur...
An important factor that governs solar energy transformation into electrical or chemical energy, whe...
Metal oxides structures, formed by ordered self-assembling of crystalline nanoparticles aggregates, ...
It is well known that the surface of metal oxide catalysts presents, usually, non-crystalline specie...
The electronic properties of anatase and rutile TiO2 polycrystalline particle films have been studie...
Amorphous TixOy with high surface area has attracted significant interest as photocatalyst with high...
Anatase-type nanocrystalline titania layers were prepared by oxidizing the crystalline titanium nitr...
Amorphous titanium dioxide was introduced into the pores of mesoporous silica thin films with 75% po...
X-ray photoelectron (XPS) experiments at normal and grazing emission are performed, demonstrating th...
The anatase TiO2(101) surface and its interaction with water is an important topic in oxide surface ...
We comprehensively explored the photocatalytic properties, in H-2 production by methanol photosteam ...
Anatase\u2013rutile and anatase\u2013brookite\u2013rutile composite nanocrystals were synthesized by...
An anatase film electrode on FTO glass has been produced by a mix of commercial nanostructured anata...
We comprehensively explored the photocatalytic properties, in H2 production by methanol photosteam r...
International audienceIn this study, we have investigated the hydrothermal stability of mesostructur...
An important factor that governs solar energy transformation into electrical or chemical energy, whe...
Metal oxides structures, formed by ordered self-assembling of crystalline nanoparticles aggregates, ...
It is well known that the surface of metal oxide catalysts presents, usually, non-crystalline specie...
The electronic properties of anatase and rutile TiO2 polycrystalline particle films have been studie...
Amorphous TixOy with high surface area has attracted significant interest as photocatalyst with high...
Anatase-type nanocrystalline titania layers were prepared by oxidizing the crystalline titanium nitr...
Amorphous titanium dioxide was introduced into the pores of mesoporous silica thin films with 75% po...
X-ray photoelectron (XPS) experiments at normal and grazing emission are performed, demonstrating th...
The anatase TiO2(101) surface and its interaction with water is an important topic in oxide surface ...
We comprehensively explored the photocatalytic properties, in H-2 production by methanol photosteam ...
Anatase\u2013rutile and anatase\u2013brookite\u2013rutile composite nanocrystals were synthesized by...
An anatase film electrode on FTO glass has been produced by a mix of commercial nanostructured anata...
We comprehensively explored the photocatalytic properties, in H2 production by methanol photosteam r...
International audienceIn this study, we have investigated the hydrothermal stability of mesostructur...