Scanning tunnelling microscopy (STM) was used to investigate the nucleation and growth of palladium clusters on two different, ultrathin, epitaxial, titania films grown on a Pt3Ti(111) surface. The first oxide phase, z'-TiOx, is anisotropic and consists of parallel stripes separated by trenches. Defects (i.e., oxygen vacancies) in this structure are confined to these trenches and act as nucleation sites. Therefore, the Pd clusters are mostly arranged in unidirectional rows along the trenches, creating a template effect. The second phase, w'-TiOx, exhibits a hexagonal, long range, (7 × 7)R21.8°, Moiré-type superstructure with fewer and shallower defects, making the template effect less discernible
Ultrathin ordered titanium oxide films on Pt(111) surface are prepared by reactive evaporation of Ti...
Pd clusters in the size range 1-100 nm are grown at high temperature on HOPG and observed by STM and...
Pd is deposited onto a reconstructed SrTiO3 (001) substrate in an ultrahigh vacuum environment. Elev...
Scanning tunnelling microscopy (STM) was used to investigate the nucleation and growth of palladium ...
Palladium nanocrystals were grown on a nanostructured SrTiO(3)(001) surface and annealed in ultrahig...
Palladium nanocrystals were grown on a nanostructured SrTiO3(001) surface and annealed in ultrahigh ...
This thesis focuses on the study of epitaxial nanomaterials grown on SrTiO3 substrates including the...
Ultrathin ordered films of TiOx (x~1) on Pt(111) has been investigated by scanning tunneling microsc...
Palladium (Pd) crystal islands, with 100–200 nm wide (111) top facets, were grown in ultrahigh vacuu...
Model catalysts of Pd nanoparticles and films on TiO2(110) were fabricated by metal vapour depositio...
Ultrathin ordered films of TiOx (x 1) on Pt(111) have been investigated by scanning tunneling micr...
Model catalysts of Pd nanoparticles and films on TiO2 (I 10) were fabricated by metal vapour deposit...
Performing both ex situ transmission electron microscopy (TEM) and in situ scanning tunnelling micro...
The growth of ultrathin TiOx (0≤x≤2) films on Pd(100) and Pd(111) surfaces by chemical vapor deposit...
Scanning tunnelling microscopy (STM) has been used to study the initial stages of Pt deposition on t...
Ultrathin ordered titanium oxide films on Pt(111) surface are prepared by reactive evaporation of Ti...
Pd clusters in the size range 1-100 nm are grown at high temperature on HOPG and observed by STM and...
Pd is deposited onto a reconstructed SrTiO3 (001) substrate in an ultrahigh vacuum environment. Elev...
Scanning tunnelling microscopy (STM) was used to investigate the nucleation and growth of palladium ...
Palladium nanocrystals were grown on a nanostructured SrTiO(3)(001) surface and annealed in ultrahig...
Palladium nanocrystals were grown on a nanostructured SrTiO3(001) surface and annealed in ultrahigh ...
This thesis focuses on the study of epitaxial nanomaterials grown on SrTiO3 substrates including the...
Ultrathin ordered films of TiOx (x~1) on Pt(111) has been investigated by scanning tunneling microsc...
Palladium (Pd) crystal islands, with 100–200 nm wide (111) top facets, were grown in ultrahigh vacuu...
Model catalysts of Pd nanoparticles and films on TiO2(110) were fabricated by metal vapour depositio...
Ultrathin ordered films of TiOx (x 1) on Pt(111) have been investigated by scanning tunneling micr...
Model catalysts of Pd nanoparticles and films on TiO2 (I 10) were fabricated by metal vapour deposit...
Performing both ex situ transmission electron microscopy (TEM) and in situ scanning tunnelling micro...
The growth of ultrathin TiOx (0≤x≤2) films on Pd(100) and Pd(111) surfaces by chemical vapor deposit...
Scanning tunnelling microscopy (STM) has been used to study the initial stages of Pt deposition on t...
Ultrathin ordered titanium oxide films on Pt(111) surface are prepared by reactive evaporation of Ti...
Pd clusters in the size range 1-100 nm are grown at high temperature on HOPG and observed by STM and...
Pd is deposited onto a reconstructed SrTiO3 (001) substrate in an ultrahigh vacuum environment. Elev...