Ultrathin ordered titanium oxide films on a Pt(111) surface have been prepared by reactive deposition and characterized by low-energy electron diffraction and scanning tunneling microscopy (STM). According to the postdeposition annealing condition, three different phases have been prepared which show a wagon-wheel-like (hereafter ww) morphological pattern. Two of them can be prepared as single phases (w- and w\u2018-TiOx) and one (wint-TiOx) as a mixed phase which always coexists with at least one of the other two phases. All of them are formed by a Ti 12O bilayer, where the Ti atoms are located at the interface with the substrate, but they show a rather distinct STM ww pattern. The experimental STM contrast has been discussed on the basis ...
Well-ordered ultrathin TiOx layers on Pt(111) surface, prepared by reactive evaporation of Ti in oxy...
The (210) surface of rutile (TiO2) has been studied by the experimental techniques of scanning tunne...
The growth of ultrathin TiOx (0≤x≤2) films on Pd(100) and Pd(111) surfaces by chemical vapor deposit...
Ultrathin ordered titanium oxide films on Pt(111) surface are prepared by reactive evaporation of Ti...
Ordered ultrathin titanium oxide films have been produced under ultrahigh vacuum (UHV) conditions by...
The structure of a monolayer phase of TiOx on Pt(111) has been investigated by low-energy electron d...
A combined use of low energy electron microscopy (LEEM) and microprobe LEED (\u3bc-LEED) allows the ...
The competition between rectangular and hexagonal phases in TiOx ultrathin (monolayer) films grow...
The structure of well-ordered reduced TiOx nanolayers (NLs) on Pt(111), prepared by reactive evapora...
The structure of a monolayer phase of TiOx on Pt(111) showing a zigzag-like contrast is investigated...
We present a thorough investigation of TiO2 films of different thicknesses grown on Pt(111) surface ...
Ultrathin films of titanium oxide were grown on (22 × - √3)-reconstructed Au(111) surfaces by Ti eva...
We investigated the growth of titanium oxide two-dimensional (2D) nanostructures on Au(111), produce...
The preparation and characterization of fully oxidized TiO2 ultrathin films obtained by reactive dep...
The deposition of TiOx (x <= 2) structures on Au(111) by chemical vapor deposition (CVD) in ultrahig...
Well-ordered ultrathin TiOx layers on Pt(111) surface, prepared by reactive evaporation of Ti in oxy...
The (210) surface of rutile (TiO2) has been studied by the experimental techniques of scanning tunne...
The growth of ultrathin TiOx (0≤x≤2) films on Pd(100) and Pd(111) surfaces by chemical vapor deposit...
Ultrathin ordered titanium oxide films on Pt(111) surface are prepared by reactive evaporation of Ti...
Ordered ultrathin titanium oxide films have been produced under ultrahigh vacuum (UHV) conditions by...
The structure of a monolayer phase of TiOx on Pt(111) has been investigated by low-energy electron d...
A combined use of low energy electron microscopy (LEEM) and microprobe LEED (\u3bc-LEED) allows the ...
The competition between rectangular and hexagonal phases in TiOx ultrathin (monolayer) films grow...
The structure of well-ordered reduced TiOx nanolayers (NLs) on Pt(111), prepared by reactive evapora...
The structure of a monolayer phase of TiOx on Pt(111) showing a zigzag-like contrast is investigated...
We present a thorough investigation of TiO2 films of different thicknesses grown on Pt(111) surface ...
Ultrathin films of titanium oxide were grown on (22 × - √3)-reconstructed Au(111) surfaces by Ti eva...
We investigated the growth of titanium oxide two-dimensional (2D) nanostructures on Au(111), produce...
The preparation and characterization of fully oxidized TiO2 ultrathin films obtained by reactive dep...
The deposition of TiOx (x <= 2) structures on Au(111) by chemical vapor deposition (CVD) in ultrahig...
Well-ordered ultrathin TiOx layers on Pt(111) surface, prepared by reactive evaporation of Ti in oxy...
The (210) surface of rutile (TiO2) has been studied by the experimental techniques of scanning tunne...
The growth of ultrathin TiOx (0≤x≤2) films on Pd(100) and Pd(111) surfaces by chemical vapor deposit...