The dynamics of nanostructured surface phases on SrTiO(3)(001) have been analysed using in situ scanning tunnelling microscopy (STM) above 800 degrees C. During high-temperature annealing, the formation, growth and ordering of the nanostructures has been observed. Dilines, with a width of approximately 1 nm, are formed from a TiO(2)-rich intermediary at 800 degrees C. STM during annealing at 825 degrees C has enabled us to follow both the growth and dissolution of dilines. Following extended annealing, trilines with a width of approximately 2 nm and ordered two-dimensional (2D) nano-arrays form from the diline domains. Our observations of diline dissolution implies random nucleation and growth, followed by rearrangement at elevated temperat...
Palladium nanocrystals were grown on a nanostructured SrTiO(3)(001) surface and annealed in ultrahig...
The nucleation of SrTiO3 three-dimensional (3D) islands and nanorings on Si substrates via a novel m...
Processing the SrTiO(3)(001) surface results in the self-assembly of reduced titanate nanowires whos...
The dynamics of nanostructured surface phases on SrTiO(3)(001) have been analysed using in situ scan...
Atomic resolution scanning tunnelling microscopy of the SrTiO3(0 0 1) surface reveals that certain t...
Thermal annealing of SrTiO3 substrates is used in a wide range of applications, including films and ...
Thermal annealing of SrTiO3 substrates is used in a wide range of applications, including films and ...
SrTiO3 nanoislands on SrTiO3 (001) in a diffusion-limited growth regime were studied using in situ s...
This thesis focuses on the study of epitaxial nanomaterials grown on SrTiO3 substrates including the...
Scanning tunneling microscopy is used to investigate the appearance of nanoscale islands on the SrTi...
A class of nanostructured surface phases on SrTiO3(001) is reported and characterized through atomic...
This thesis focuses on the study of epitaxial nanomaterials grown on SrTiO3 substrates including the...
SrTiO3(111) samples, doped with Nb, are Ar+ ion sputtered and annealed in ultrahigh vacuum (UHV) and...
Revealing growth mechanism of a thin film and properties of its film substrate interface necessarily...
Palladium nanocrystals were grown on a nanostructured SrTiO(3)(001) surface and annealed in ultrahig...
Palladium nanocrystals were grown on a nanostructured SrTiO(3)(001) surface and annealed in ultrahig...
The nucleation of SrTiO3 three-dimensional (3D) islands and nanorings on Si substrates via a novel m...
Processing the SrTiO(3)(001) surface results in the self-assembly of reduced titanate nanowires whos...
The dynamics of nanostructured surface phases on SrTiO(3)(001) have been analysed using in situ scan...
Atomic resolution scanning tunnelling microscopy of the SrTiO3(0 0 1) surface reveals that certain t...
Thermal annealing of SrTiO3 substrates is used in a wide range of applications, including films and ...
Thermal annealing of SrTiO3 substrates is used in a wide range of applications, including films and ...
SrTiO3 nanoislands on SrTiO3 (001) in a diffusion-limited growth regime were studied using in situ s...
This thesis focuses on the study of epitaxial nanomaterials grown on SrTiO3 substrates including the...
Scanning tunneling microscopy is used to investigate the appearance of nanoscale islands on the SrTi...
A class of nanostructured surface phases on SrTiO3(001) is reported and characterized through atomic...
This thesis focuses on the study of epitaxial nanomaterials grown on SrTiO3 substrates including the...
SrTiO3(111) samples, doped with Nb, are Ar+ ion sputtered and annealed in ultrahigh vacuum (UHV) and...
Revealing growth mechanism of a thin film and properties of its film substrate interface necessarily...
Palladium nanocrystals were grown on a nanostructured SrTiO(3)(001) surface and annealed in ultrahig...
Palladium nanocrystals were grown on a nanostructured SrTiO(3)(001) surface and annealed in ultrahig...
The nucleation of SrTiO3 three-dimensional (3D) islands and nanorings on Si substrates via a novel m...
Processing the SrTiO(3)(001) surface results in the self-assembly of reduced titanate nanowires whos...