The iron sulfide mineral greigite, Fe3S4, has shown promising capability as a hydrogenating catalyst, in particular in the reduction of carbon dioxide to produce small organic molecules under mild conditions. We employed density functional theory calculations to investigate the {001},{011} and {111} surfaces of this iron thiospinel material, as well as the production of hydrogen ad-atoms from the dissociation of water molecules on the surfaces. We systematically analysed the adsorption geometries and the electronic structure of both bare and hydroxylated surfaces. The sulfide surfaces presented a higher flexibility than the isomorphic oxide magnetite, Fe3O4, allowing perpendicular movement of the cations above or below the top atomic sulfur...
The interaction of water with Fe3O4(001) is studied by density functional theory calculations includ...
The interaction of water with Fe3O4(001) is studied by density functional theory calculations includ...
The interaction of water with Fe3O4(001) is studied by density functional theory calculations includ...
The iron sulfide mineral greigite, Fe3S4, has shown promising capability as a hydrogenating catalyst...
The iron sulfide mineral greigite, Fe3S4, has shown promising capability as a hydrogenating catalyst...
The iron sulfide mineral greigite, Fe3S4, has shown promising capability as a hydrogenating catalyst...
The iron sulfide mineral greigite, Fe3S4, has shown promising capability as a hydrogenating catalyst...
The interaction of water with catalyst surfaces is a common process which requires investigation. He...
The interaction of water with catalyst surfaces is a common process which requires investigation. He...
The interaction of water with catalyst surfaces is a common process which requires investigation. He...
The interaction of water with catalyst surfaces is a common process which requires investigation. He...
The interaction of water with catalyst surfaces is a common process which requires investigation. He...
The mineral greigite, Fe3S4, shows promising electro-reduction activity, especially towards carbon d...
The mineral greigite, Fe3S4, shows promising electro-reduction activity, especially towards carbon d...
Greigite (Fe3S4), the sulfide counterpart of the spinel-structured oxide material magnetite (Fe3O4),...
The interaction of water with Fe3O4(001) is studied by density functional theory calculations includ...
The interaction of water with Fe3O4(001) is studied by density functional theory calculations includ...
The interaction of water with Fe3O4(001) is studied by density functional theory calculations includ...
The iron sulfide mineral greigite, Fe3S4, has shown promising capability as a hydrogenating catalyst...
The iron sulfide mineral greigite, Fe3S4, has shown promising capability as a hydrogenating catalyst...
The iron sulfide mineral greigite, Fe3S4, has shown promising capability as a hydrogenating catalyst...
The iron sulfide mineral greigite, Fe3S4, has shown promising capability as a hydrogenating catalyst...
The interaction of water with catalyst surfaces is a common process which requires investigation. He...
The interaction of water with catalyst surfaces is a common process which requires investigation. He...
The interaction of water with catalyst surfaces is a common process which requires investigation. He...
The interaction of water with catalyst surfaces is a common process which requires investigation. He...
The interaction of water with catalyst surfaces is a common process which requires investigation. He...
The mineral greigite, Fe3S4, shows promising electro-reduction activity, especially towards carbon d...
The mineral greigite, Fe3S4, shows promising electro-reduction activity, especially towards carbon d...
Greigite (Fe3S4), the sulfide counterpart of the spinel-structured oxide material magnetite (Fe3O4),...
The interaction of water with Fe3O4(001) is studied by density functional theory calculations includ...
The interaction of water with Fe3O4(001) is studied by density functional theory calculations includ...
The interaction of water with Fe3O4(001) is studied by density functional theory calculations includ...