The properties of water adsorbed on the methyl-terminated Si(111) surface, CH(3):Si(111), are investigated using a first principles approach to complement a recent experimental study. We confirm the existence of weak hydrogen bonds between water and the substrate; however we show that the bonding configuration is different from that assumed in the analysis of the experimental data. In fact, a water molecule prefers to interact with the substrate by adopting a "face" approach direction in which a H atom points toward the C atom of the methyl group; instead the suggested "vertex" configuration, characterized by a weak C-H center dot center dot center dot OH(2) hydrogen bond, turns out to be clearly unfavored. This behavior resembles that obse...
We present a local density functional investigation of the adsorption geometry and the surface diffu...
The physical and chemical adsorption of water at the (1 Ã 1) and (2 Ã 1)-reconstructed C(111) surfac...
Silver iodide (AgI) is an efficient ice-nucleating material. This has been related to the close latt...
The properties of water adsorbed on the methyl-terminated Si(111) surface, CH(3):Si(111), are invest...
The properties of interfacial water on Cl- and H-terminated Si( 111) surfaces are investigated using...
The adsorption of water on the Si(001) surface is studied by using density-functional total-energy c...
The properties of interfacial water on the Cl- and H-terminated Si(111) surfaces are reinvestigated ...
In recent years, first principles investigations have been applied successfully to the cal-culation ...
In this work, a number of state density calculations are carried out to understand the binding state...
Structural and electronic properties of Si termination, O-middle termination, and O-rich termination...
We present first-principles density-functional calculations for the adsorption of water on the Ge(10...
This density functional theory study compares water adsorption on the ceria (111) and (100) surfaces...
Water is ubiquitous in nature and ordinary to us. However, no matter how common it is, water is uniq...
Molecular-dynamics simulations for silicon, hydrogen- and hydroxyl-terminated silicon in contact wit...
The isotherm thickness and hydrogen-bonding interactions of water layers adsorbed on hydrophilic and...
We present a local density functional investigation of the adsorption geometry and the surface diffu...
The physical and chemical adsorption of water at the (1 Ã 1) and (2 Ã 1)-reconstructed C(111) surfac...
Silver iodide (AgI) is an efficient ice-nucleating material. This has been related to the close latt...
The properties of water adsorbed on the methyl-terminated Si(111) surface, CH(3):Si(111), are invest...
The properties of interfacial water on Cl- and H-terminated Si( 111) surfaces are investigated using...
The adsorption of water on the Si(001) surface is studied by using density-functional total-energy c...
The properties of interfacial water on the Cl- and H-terminated Si(111) surfaces are reinvestigated ...
In recent years, first principles investigations have been applied successfully to the cal-culation ...
In this work, a number of state density calculations are carried out to understand the binding state...
Structural and electronic properties of Si termination, O-middle termination, and O-rich termination...
We present first-principles density-functional calculations for the adsorption of water on the Ge(10...
This density functional theory study compares water adsorption on the ceria (111) and (100) surfaces...
Water is ubiquitous in nature and ordinary to us. However, no matter how common it is, water is uniq...
Molecular-dynamics simulations for silicon, hydrogen- and hydroxyl-terminated silicon in contact wit...
The isotherm thickness and hydrogen-bonding interactions of water layers adsorbed on hydrophilic and...
We present a local density functional investigation of the adsorption geometry and the surface diffu...
The physical and chemical adsorption of water at the (1 Ã 1) and (2 Ã 1)-reconstructed C(111) surfac...
Silver iodide (AgI) is an efficient ice-nucleating material. This has been related to the close latt...