This thesis reports a medium energy ion scattering investigation (MEIS) of platinum, palladium, and rhodium deposited upon the copper (110) surface using 100 keV hydrogen ions. The Daresbury National MEIS facility was used to take blocking curve and energy profiles of the structure formed by e-beam deposition of various thicknesses of platinum, palladium, and rhodium upon an atomically clean and ordered copper (110) crystal face. Quantitative analysis was conducted using an in-house version of the IGOR macro widely used within the MEIS community, adapted to analyse these systems. Sub-monolayer deposits of palladium and platinum were found to preferentially occupy subsurface sites, predominantly in the second layer below a copper first layer...
The growth mode of platinum films on the Cu(100) surface up to a coverage of 2.75 ML has been studie...
The initial stages of Cu deposition at low overpotentials have been studied on the Pt(100) and Pt(11...
The early work of the FOM-AMOLF group in Amsterdam clearly demonstrated the potential of medium ener...
The structure of 0.35 monolayers of platinum deposited onto Cu(110) has been investigated using medi...
An experimental investigation of ultrathin metallic films on face centred cubic(111) surfaces using ...
The structure of Pd films on Cu(1 1 1) and the alloying between the films and the substrate have bee...
We present a combined helium atom scattering (HAS) and medium energy ion scattering (MEIS) study to ...
The growth of vapor-deposited films of Rh, Pd, and Pt on Cu(100) at 300 K was followed by Auger-elec...
This thesis describes the determination of the structures of the (111), (100) and (110) surfaces of ...
The structure of Pd films on Cu(1 1 1) and the alloying between the films and the substrate have bee...
Using 100 keV H+ ions, medium energy ion scattering (MEIS) has been applied to a study of Sb overlay...
A 150° ion scattering spectrometer has been commissioned and utilized to investigate several adsorba...
Medium Energy Ion Scattering studies of the thin metallic film systems created by the deposition of ...
The early stages of metal (M) electrodeposition (M = Cu, Ag, Pb, Cd and Hg) on columnar and smooth P...
Medium-energy ion scattering (MEIS) is a surface analytical technique with the unique ability to pro...
The growth mode of platinum films on the Cu(100) surface up to a coverage of 2.75 ML has been studie...
The initial stages of Cu deposition at low overpotentials have been studied on the Pt(100) and Pt(11...
The early work of the FOM-AMOLF group in Amsterdam clearly demonstrated the potential of medium ener...
The structure of 0.35 monolayers of platinum deposited onto Cu(110) has been investigated using medi...
An experimental investigation of ultrathin metallic films on face centred cubic(111) surfaces using ...
The structure of Pd films on Cu(1 1 1) and the alloying between the films and the substrate have bee...
We present a combined helium atom scattering (HAS) and medium energy ion scattering (MEIS) study to ...
The growth of vapor-deposited films of Rh, Pd, and Pt on Cu(100) at 300 K was followed by Auger-elec...
This thesis describes the determination of the structures of the (111), (100) and (110) surfaces of ...
The structure of Pd films on Cu(1 1 1) and the alloying between the films and the substrate have bee...
Using 100 keV H+ ions, medium energy ion scattering (MEIS) has been applied to a study of Sb overlay...
A 150° ion scattering spectrometer has been commissioned and utilized to investigate several adsorba...
Medium Energy Ion Scattering studies of the thin metallic film systems created by the deposition of ...
The early stages of metal (M) electrodeposition (M = Cu, Ag, Pb, Cd and Hg) on columnar and smooth P...
Medium-energy ion scattering (MEIS) is a surface analytical technique with the unique ability to pro...
The growth mode of platinum films on the Cu(100) surface up to a coverage of 2.75 ML has been studie...
The initial stages of Cu deposition at low overpotentials have been studied on the Pt(100) and Pt(11...
The early work of the FOM-AMOLF group in Amsterdam clearly demonstrated the potential of medium ener...