Rare-Earth Oxides (REOs) possess a remarkable intrinsic hydrophobicity, making them candidates for a myriad of applications. Although the superhydrophobicity of REOs has been explored experimentally, the atomistic details of the structure at the oxide-water interface are still not well understood. In this work, we report a Density Functional Theory study of the interaction between water with CeO2, Nd2O3, and ?-Al2O3 to explain their different wettability. The wetting of the metal oxide surface is controlled by geometric and electronic factors. While the electronic term is related to the acid-base properties of the surface layer, the geometric factor depends on the matching between adsorption sites and oxygen atoms from the hexagonal water n...
Spin-polarized density functional theory (DFT + U) periodic calculations have been performed to stud...
The structural, electronic and mechanical properties of crystalline ruthenium dioxide RuO2 in its ru...
Surface hydrophobicity can be exploited in the design of catalyst materials to improve their activit...
Rare-earth oxides (REOs) possess a remarkable intrinsic hydrophobicity, making them candidates for a...
Rare earth oxides (REOs) are attracting attention for use as cost-effective, high-performance dropwi...
© 2019 The hydrophobicity of CeO 2 surfaces is examined here. Since wettability measurements are ext...
Many applications require materials that are both intrinsically hydrophobic and robust. The current ...
Hydrophobic surfaces that are robust can have widespread applications in drop-wise condensation, ant...
International audienceThe hydrophobicity of CeO2 surfaces is examined here. Since wettability measur...
Thesis: S.M. in Technology and Policy, Massachusetts Institute of Technology, Institute for Data, Sy...
We present density functional theory investigations of the bulk properties of cerium oxides ( CeO2 ...
Surfaces of main group and transition metal oxides are covered by a layer of adsorbed water molecule...
Ceria (CeO2) is a well-known catalytic oxide with many environmental, energy production, and industr...
The authors discuss the role of the presence of dangling H bonds from water or from surface hydroxyl...
Determining the structure of water on metal oxide surfaces is a key step toward a molecular-level un...
Spin-polarized density functional theory (DFT + U) periodic calculations have been performed to stud...
The structural, electronic and mechanical properties of crystalline ruthenium dioxide RuO2 in its ru...
Surface hydrophobicity can be exploited in the design of catalyst materials to improve their activit...
Rare-earth oxides (REOs) possess a remarkable intrinsic hydrophobicity, making them candidates for a...
Rare earth oxides (REOs) are attracting attention for use as cost-effective, high-performance dropwi...
© 2019 The hydrophobicity of CeO 2 surfaces is examined here. Since wettability measurements are ext...
Many applications require materials that are both intrinsically hydrophobic and robust. The current ...
Hydrophobic surfaces that are robust can have widespread applications in drop-wise condensation, ant...
International audienceThe hydrophobicity of CeO2 surfaces is examined here. Since wettability measur...
Thesis: S.M. in Technology and Policy, Massachusetts Institute of Technology, Institute for Data, Sy...
We present density functional theory investigations of the bulk properties of cerium oxides ( CeO2 ...
Surfaces of main group and transition metal oxides are covered by a layer of adsorbed water molecule...
Ceria (CeO2) is a well-known catalytic oxide with many environmental, energy production, and industr...
The authors discuss the role of the presence of dangling H bonds from water or from surface hydroxyl...
Determining the structure of water on metal oxide surfaces is a key step toward a molecular-level un...
Spin-polarized density functional theory (DFT + U) periodic calculations have been performed to stud...
The structural, electronic and mechanical properties of crystalline ruthenium dioxide RuO2 in its ru...
Surface hydrophobicity can be exploited in the design of catalyst materials to improve their activit...