We investigated how SrOx segregates on a Nb doped SrTiO3 (100) surface by in air annealing. Using atomic force and photoemission electron microscopes, we can directly visualize the morphology and the electronic phase changes with SrOx segregation. SrOx islands less than 2 mu m in size and 1-5 unit cells thick nucleate first and grow in a labyrinth domain pattern. After prolonged annealing, SrOx forms a similar to 10 nm thick film. We show that the domain pattern can be controlled by introducing a surface miscut angle of SrTiO3. Additionally, the segregated SrOx has a lower work function, compared to that of SrTiO3. These results suggest that the control and tunability of SrOx segregation is applicable to the design of a new functional elect...
This thesis describes investigations into the role of non-stoichiometry in the surface and bulk prop...
This thesis focuses on the study of epitaxial nanomaterials grown on SrTiO3 substrates including the...
Redox-based resistive switching is one of the most-promising concepts in the focus of research to me...
SrTiO3(111) samples, doped with Nb, are Ar+ ion sputtered and annealed in ultrahigh vacuum (UHV) and...
High resolution X-ray photoelectron spectroscopy (XPS) was performed on the (001) surfaces of Nb-dop...
The resistance switching phenomenon in many transition metal oxides is described by ion motion leadi...
Atomic resolution scanning tunnelling microscopy of the SrTiO3(0 0 1) surface reveals that certain t...
SrTiO3 has many applications involving interfaces with other materials, but defects that affect the ...
The resistance switching phenomenon in many transition metal oxides is described by ion motion leadi...
Thermal annealing of SrTiO3 substrates is used in a wide range of applications, including films and ...
SrTiO3 (STO) is a highly attractive oxide material due to its flexible tunability of electrical prop...
Thermal annealing of SrTiO3 substrates is used in a wide range of applications, including films and ...
The resistance switching phenomenon in many transition metal oxides is described by ion motion leadi...
Novel classes of materials are required to meet the technological challenges in modern electronics. ...
This thesis describes investigations into the role of non-stoichiometry in the surface and bulk prop...
This thesis describes investigations into the role of non-stoichiometry in the surface and bulk prop...
This thesis focuses on the study of epitaxial nanomaterials grown on SrTiO3 substrates including the...
Redox-based resistive switching is one of the most-promising concepts in the focus of research to me...
SrTiO3(111) samples, doped with Nb, are Ar+ ion sputtered and annealed in ultrahigh vacuum (UHV) and...
High resolution X-ray photoelectron spectroscopy (XPS) was performed on the (001) surfaces of Nb-dop...
The resistance switching phenomenon in many transition metal oxides is described by ion motion leadi...
Atomic resolution scanning tunnelling microscopy of the SrTiO3(0 0 1) surface reveals that certain t...
SrTiO3 has many applications involving interfaces with other materials, but defects that affect the ...
The resistance switching phenomenon in many transition metal oxides is described by ion motion leadi...
Thermal annealing of SrTiO3 substrates is used in a wide range of applications, including films and ...
SrTiO3 (STO) is a highly attractive oxide material due to its flexible tunability of electrical prop...
Thermal annealing of SrTiO3 substrates is used in a wide range of applications, including films and ...
The resistance switching phenomenon in many transition metal oxides is described by ion motion leadi...
Novel classes of materials are required to meet the technological challenges in modern electronics. ...
This thesis describes investigations into the role of non-stoichiometry in the surface and bulk prop...
This thesis describes investigations into the role of non-stoichiometry in the surface and bulk prop...
This thesis focuses on the study of epitaxial nanomaterials grown on SrTiO3 substrates including the...
Redox-based resistive switching is one of the most-promising concepts in the focus of research to me...