We present a mechanistic study on the interaction of water with a well-defined model Fe3O4(111) surface that was investigated by a combination of direct calorimetric measurements of adsorption energies, infrared vibrational spectroscopy, and calculations bases on density functional theory (DFT). We show that the adsorption energy of water (101 kJ mol−1) is considerably higher than all previously reported values obtained by indirect desorption-based methods. By employing 18O-labeled water molecules and an Fe3O4 substrate, we proved that the generally accepted simple model of water dissociation to form two individual OH groups per water molecule is not correct. DFT calculations suggest formation of a dimer, which consists of one water molecul...
Determining the structure of water on metal oxide surfaces is a key step toward a molecular-level un...
Determining the structure of water on metal oxide surfaces is a key step toward a molecular-level un...
The surface structure of magnetite Fe3O4(111) in contact with oxygen and water is investigated using...
We present a mechanistic study on the interaction of water with a well-defined model Fe3O4(111) surf...
We present a mechanistic study on the interaction of water with a well-defined model Fe3O4(111) surf...
We present a mechanistic study on the interaction of water with a well-defined model Fe<sub>3</sub>O...
The majority of the theoretical work that attempted to provide atomic level details on the adsorptio...
Using density functional theory calculations together with an on-site Coulomb repulsion term (GGA+U...
Using density functional theory calculations together with an on-site Coulomb repulsion term (GGA+U)...
Using density functional theory calculations together with an on-site Coulomb repulsion term (GGA+U)...
We monitored adsorption of water on a well-defined Fe<sub>3</sub>O<sub>4</sub>(111) film surface at ...
The interaction of water with iron oxide surfaces is relevant for several processes of practical int...
The interaction of water with iron oxide surfaces is relevant for several processes of practical int...
The interaction of water with iron oxide surfaces is relevant for several processes of practical int...
The interaction of water with iron oxide surfaces is relevant for several processes of practical int...
Determining the structure of water on metal oxide surfaces is a key step toward a molecular-level un...
Determining the structure of water on metal oxide surfaces is a key step toward a molecular-level un...
The surface structure of magnetite Fe3O4(111) in contact with oxygen and water is investigated using...
We present a mechanistic study on the interaction of water with a well-defined model Fe3O4(111) surf...
We present a mechanistic study on the interaction of water with a well-defined model Fe3O4(111) surf...
We present a mechanistic study on the interaction of water with a well-defined model Fe<sub>3</sub>O...
The majority of the theoretical work that attempted to provide atomic level details on the adsorptio...
Using density functional theory calculations together with an on-site Coulomb repulsion term (GGA+U...
Using density functional theory calculations together with an on-site Coulomb repulsion term (GGA+U)...
Using density functional theory calculations together with an on-site Coulomb repulsion term (GGA+U)...
We monitored adsorption of water on a well-defined Fe<sub>3</sub>O<sub>4</sub>(111) film surface at ...
The interaction of water with iron oxide surfaces is relevant for several processes of practical int...
The interaction of water with iron oxide surfaces is relevant for several processes of practical int...
The interaction of water with iron oxide surfaces is relevant for several processes of practical int...
The interaction of water with iron oxide surfaces is relevant for several processes of practical int...
Determining the structure of water on metal oxide surfaces is a key step toward a molecular-level un...
Determining the structure of water on metal oxide surfaces is a key step toward a molecular-level un...
The surface structure of magnetite Fe3O4(111) in contact with oxygen and water is investigated using...