Layered transition-metal chalcogenides have emerged as a fascinating new class of materials for catalysis. Here, we present periodic density functional theory (DFT) calculations of the adsorption of thiophene and the direct desulfurization reaction pathways on the (001), (011), and (111) surfaces of layered FeS. The fundamental aspects of the thiophene adsorption, including the initial adsorption geometries, adsorption energies, structural parameters, and electronic properties, are presented. From the calculated adsorption energies, we show that the flat adsorption geometries, wherein the thiophene molecule forms multiple π-bonds with the FeS surfaces, are energetically more favorable than the upright adsorption geometries, with the strengt...
With the ever growing number of proposed desnity functional theory (DFT) functionals it becomes nece...
The mineral greigite, Fe3S4, shows promising electro-reduction activity, especially towards carbon d...
The iron sulfide mineral greigite, Fe3S4, has shown promising capability as a hydrogenating catalyst...
Layered transition-metal chalcogenides have emerged as a fascinating new class of materials for cata...
Layered transition-metal chalcogenides have emerged as a fascinating new class of materials for cata...
Layered transition metal chalcogenides have emerged as a fascinating new class of materials for cata...
Layered transition metal chalcogenides have emerged as a fascinating new class of materials for cata...
Catalytic removal of the S-content from thiophene is a central step in efforts aiming to reduce the ...
We use density functional theory with the inclusion of the van der Waals interaction to study the ad...
Elementary reaction steps for the catalytic cycle of thiophene desulfurization on Ni3Sy and Ni4Sy cl...
The hydrodesulfurization (HDS) of thiophene and its derivatives by Mo-based catalysts shows signific...
Combining density functional theory calculations and temperature programmed desorption (TPD) experi...
The ability to elucidate the elementary steps of a chemical reaction at the atomic scale is importan...
The adsorption of sulfur oxides (SOx) represents the fundamental step towards their conversion to lo...
We have theoretically studied the hydrodesulphurisation (HDS) mechanism of thiophene and its hydroge...
With the ever growing number of proposed desnity functional theory (DFT) functionals it becomes nece...
The mineral greigite, Fe3S4, shows promising electro-reduction activity, especially towards carbon d...
The iron sulfide mineral greigite, Fe3S4, has shown promising capability as a hydrogenating catalyst...
Layered transition-metal chalcogenides have emerged as a fascinating new class of materials for cata...
Layered transition-metal chalcogenides have emerged as a fascinating new class of materials for cata...
Layered transition metal chalcogenides have emerged as a fascinating new class of materials for cata...
Layered transition metal chalcogenides have emerged as a fascinating new class of materials for cata...
Catalytic removal of the S-content from thiophene is a central step in efforts aiming to reduce the ...
We use density functional theory with the inclusion of the van der Waals interaction to study the ad...
Elementary reaction steps for the catalytic cycle of thiophene desulfurization on Ni3Sy and Ni4Sy cl...
The hydrodesulfurization (HDS) of thiophene and its derivatives by Mo-based catalysts shows signific...
Combining density functional theory calculations and temperature programmed desorption (TPD) experi...
The ability to elucidate the elementary steps of a chemical reaction at the atomic scale is importan...
The adsorption of sulfur oxides (SOx) represents the fundamental step towards their conversion to lo...
We have theoretically studied the hydrodesulphurisation (HDS) mechanism of thiophene and its hydroge...
With the ever growing number of proposed desnity functional theory (DFT) functionals it becomes nece...
The mineral greigite, Fe3S4, shows promising electro-reduction activity, especially towards carbon d...
The iron sulfide mineral greigite, Fe3S4, has shown promising capability as a hydrogenating catalyst...