Polycrystalline anatase thin films, (001)- and (101)-oriented anatase TiO₂ single crystals and (001)- and (110)-oriented rutile TiO₂ single crystals with various surface treatments were studied by photoelectron spectroscopy to obtain their surface potentials. Regardless of orientations and polymorph, a huge variation of the Fermi level and work function was achieved by varying the surface condition. The most strongly oxidized surfaces are obtained after oxygen plasma treatment with a Fermi level ∼2.6 eV above the valence band maximum and ionization potentials of up to 9.5 eV (work function 7.9 eV). All other treated anatase surfaces exhibit an ionization potential independent of surface condition of 7.96±0.15 eV. The Fermi level positions a...
The electronic properties of anatase and rutile TiO2 polycrystalline particle films have been studie...
We demonstrate a quantitative relation between exposed crystal surfaces and photocatalytic activity ...
2010 TiO2 is a well investigated material due to its vast array of applications, from the most commo...
Polycrystalline anatase thin films, (001)- and (101)-oriented anatase TiO₂ single crystals and (001)...
Polycrystalline anatase thin films, (001)- and (101)-oriented anatase TiO 2 single crystals ...
ABSTRACT: Using photoelectron spectroscopy, the interface formation of anatase and rutile TiO2 with ...
The prototypical photocatalyst TiO2 exists in different polymorphs, the most common forms are the an...
The most widely used oxide for photocatalytic applications owing to its low cost and high activity i...
Titanium dioxide is a material finding applications in variety of areas, including catalysis, photoc...
From calculations of the electrostatic potential at the most densely packed rutile (110) and anatase...
Transparent conductive oxides, such as TiO2, are important functional materials for optoelectronic a...
Surfaces of metal oxides play a vital role in many technologically important applications. The surfa...
Electronic structures of rutile and anatase polymorph of TiO2 were determined by resonant inelastic ...
Excess electrons facilitate redox reactions at the technologically relevant anatase TiO2(101) surfac...
From calculations of the electrostatic potential at the most densely packed rutile (110) and anatase...
The electronic properties of anatase and rutile TiO2 polycrystalline particle films have been studie...
We demonstrate a quantitative relation between exposed crystal surfaces and photocatalytic activity ...
2010 TiO2 is a well investigated material due to its vast array of applications, from the most commo...
Polycrystalline anatase thin films, (001)- and (101)-oriented anatase TiO₂ single crystals and (001)...
Polycrystalline anatase thin films, (001)- and (101)-oriented anatase TiO 2 single crystals ...
ABSTRACT: Using photoelectron spectroscopy, the interface formation of anatase and rutile TiO2 with ...
The prototypical photocatalyst TiO2 exists in different polymorphs, the most common forms are the an...
The most widely used oxide for photocatalytic applications owing to its low cost and high activity i...
Titanium dioxide is a material finding applications in variety of areas, including catalysis, photoc...
From calculations of the electrostatic potential at the most densely packed rutile (110) and anatase...
Transparent conductive oxides, such as TiO2, are important functional materials for optoelectronic a...
Surfaces of metal oxides play a vital role in many technologically important applications. The surfa...
Electronic structures of rutile and anatase polymorph of TiO2 were determined by resonant inelastic ...
Excess electrons facilitate redox reactions at the technologically relevant anatase TiO2(101) surfac...
From calculations of the electrostatic potential at the most densely packed rutile (110) and anatase...
The electronic properties of anatase and rutile TiO2 polycrystalline particle films have been studie...
We demonstrate a quantitative relation between exposed crystal surfaces and photocatalytic activity ...
2010 TiO2 is a well investigated material due to its vast array of applications, from the most commo...