(H2O)10 and (H2O)12 are used to investigate the growth of ice on metal surfaces with hexagonal symmetry. The model of the virtual metal surface was used to separate the electronic structure of the metal from that of the water cluster while maintaining the geometric constraints imposed by the metal surface on the water cluster. To complement the ab initio calculations on the water cluster, an additional multicenter analysis was done to analyze the hydrogen bonds within the clusters. These calculations suggested that the water bilayer structure adjacent to the virtual metal surface effectively shields the growing ice cystal from the metal surface
The molecular structure of the wetting layer of ice on Pt(111) is resolved using scanning tunneling ...
Studies of the structure of supported water clusters provide ameans for obtaining a rigorousmolecula...
Heterogeneous ice nucleation is the primary pathway for ice formation. However, the detailed molecul...
(H2O)10 and (H2O)12 are used to investigate the growth of ice on metal surfaces with hexagonal symme...
The work presented in this thesis details the structural and chemical flexibility of water layers on...
We prescribe an analytical form of the interaction potential between rigid water and a rigid platinu...
Heterogeneous ice nucleation at solid surfaces impacts many areas of science, from environmental pro...
Heterogeneous ice nucleation at solid surfaces impacts many areas of science, from environmental pro...
Heterogeneous ice nucleation at solid surfaces impacts many areas of science, from environmental pro...
At metal surfaces, water structures are determined by a competition between optimizing the bonding o...
Studies of the structure of supported water clusters provide a means for obtaining a rigorous molecu...
Recent quantum mechanical (QM) calculations for a monolayer of H_2O on Ru(0001) suggested a novel st...
The authors discuss the role of the presence of dangling H bonds from water or from surface hydroxyl...
Water has an incredible ability to form a rich variety of structures, with 16 bulk ice phases identi...
ater adsorption on well-defined metal surfaces is a useful model system for exploring the nature of ...
The molecular structure of the wetting layer of ice on Pt(111) is resolved using scanning tunneling ...
Studies of the structure of supported water clusters provide ameans for obtaining a rigorousmolecula...
Heterogeneous ice nucleation is the primary pathway for ice formation. However, the detailed molecul...
(H2O)10 and (H2O)12 are used to investigate the growth of ice on metal surfaces with hexagonal symme...
The work presented in this thesis details the structural and chemical flexibility of water layers on...
We prescribe an analytical form of the interaction potential between rigid water and a rigid platinu...
Heterogeneous ice nucleation at solid surfaces impacts many areas of science, from environmental pro...
Heterogeneous ice nucleation at solid surfaces impacts many areas of science, from environmental pro...
Heterogeneous ice nucleation at solid surfaces impacts many areas of science, from environmental pro...
At metal surfaces, water structures are determined by a competition between optimizing the bonding o...
Studies of the structure of supported water clusters provide a means for obtaining a rigorous molecu...
Recent quantum mechanical (QM) calculations for a monolayer of H_2O on Ru(0001) suggested a novel st...
The authors discuss the role of the presence of dangling H bonds from water or from surface hydroxyl...
Water has an incredible ability to form a rich variety of structures, with 16 bulk ice phases identi...
ater adsorption on well-defined metal surfaces is a useful model system for exploring the nature of ...
The molecular structure of the wetting layer of ice on Pt(111) is resolved using scanning tunneling ...
Studies of the structure of supported water clusters provide ameans for obtaining a rigorousmolecula...
Heterogeneous ice nucleation is the primary pathway for ice formation. However, the detailed molecul...