Computer modelling techniques were used to elucidate the hydration behaviour of three iron (hydr)oxide minerals at the atomic level: white rust, goethite and hematite. A potential model was first adapted and tested against the bulk structures and properties of eight different iron oxides, oxyhydroxides and hydroxides, followed by surface simulations of Fe(OH)2, α-FeO(OH) and α-Fe2O3. The major interaction between the adsorbing water molecules and the surface is through interaction of their oxygen ions with surface iron ions, followed by hydrogen-bonding to surface oxygen ions. The energies released upon the associative adsorption of water range from 1 to 17 kJ mol−1 for Fe(OH)2, 26 to 80 kJ mol−1 for goethite and 40 to 85 kJ mol−1 for hemat...
International audienceHematite materials are of crucial interest since they are involved in many phy...
Trace metal concentrations in soils and sediments are often controlled by adsorption to iron oxides ...
Determining the structure of water on metal oxide surfaces is a key step toward a molecular-level un...
In this thesis, we have used atomistic simulation techniques to investigate the surface structure an...
Interaction between water and oxide surfaces plays an important role in many applications. In the pr...
Abstrac~The interaction of water with synthetically prepared goethite (e-FeOOH) and amorphous hyd-ra...
The interaction of water with the basal plane (0001) of α-Fe2O3 (hematite) is a fundamental and chal...
The interaction of water with the Fe3O4(001) surface was investigated in a combined ambient pressure...
Iron oxides and hydroxides are highly reactive mineral phases in natural systems since they interact...
Abstract--A structural model for the geometry of Fe(III) octahe-dra near the surface of finely divid...
Protohematite (Fe2?x/3(OH) x O3?x 1 ? x < 0.5) and hydrohematite (Fe2?x/3(OH) x O3?x 0.5 ? x < 0) ar...
The interaction of water with iron oxide surfaces is relevant for several processes of practical int...
We present a mechanistic study on the interaction of water with a well-defined model Fe<sub>3</sub>O...
International audienceHematite materials are of crucial interest since they are involved in many phy...
Trace metal concentrations in soils and sediments are often controlled by adsorption to iron oxides ...
Determining the structure of water on metal oxide surfaces is a key step toward a molecular-level un...
In this thesis, we have used atomistic simulation techniques to investigate the surface structure an...
Interaction between water and oxide surfaces plays an important role in many applications. In the pr...
Abstrac~The interaction of water with synthetically prepared goethite (e-FeOOH) and amorphous hyd-ra...
The interaction of water with the basal plane (0001) of α-Fe2O3 (hematite) is a fundamental and chal...
The interaction of water with the Fe3O4(001) surface was investigated in a combined ambient pressure...
Iron oxides and hydroxides are highly reactive mineral phases in natural systems since they interact...
Abstract--A structural model for the geometry of Fe(III) octahe-dra near the surface of finely divid...
Protohematite (Fe2?x/3(OH) x O3?x 1 ? x < 0.5) and hydrohematite (Fe2?x/3(OH) x O3?x 0.5 ? x < 0) ar...
The interaction of water with iron oxide surfaces is relevant for several processes of practical int...
We present a mechanistic study on the interaction of water with a well-defined model Fe<sub>3</sub>O...
International audienceHematite materials are of crucial interest since they are involved in many phy...
Trace metal concentrations in soils and sediments are often controlled by adsorption to iron oxides ...
Determining the structure of water on metal oxide surfaces is a key step toward a molecular-level un...