We carried out a theoretical study of the rutile TiO2(110) surface using ab initio techniques. We investigate the effects of both surface and subsurface defects. These defects consist of a missing oxygen atom in the crystalline structure, the oxygen vacancy. We show that the defect formation energy of oxygen vacancies strongly depends on the position of the defect in the material. Our results imply that subsurface defects could play a role in the reactivity of the surface
Titanium dioxide (TiO2) is well known as the most competent material for both photocatalysis and pho...
Surface defects are important in oxide surface chemistry, because they change not only the surface g...
The structural and electronic properties of oxygen vacancies (V-Ox) and titanium interstitials (Ti-(...
We carried out a theoretical study of the rutile TiO2(110) surface using ab initio techniques. We in...
The role of defects in the chemical activity of the rutile TiO2(110) surface remains a rich topic of...
Density functional theory and a pseudopotential plane wave method are applied to study electronic an...
The formation energies of oxygen vacancies at different surface and subsurface sites of anatase (101...
The energetic and electronic properties of various P doping configurations at the rutile TiO2 (110) ...
We present calculations for Ti adatoms and interstitials at the (110) surface of rutile TiO2, where ...
In the framework of the ab initio atomic thermodynamics, the preliminary analysis of the oxygen defe...
We investigate the effect of adsorbates on the structure and photoabsorption of reduced TiO2 by firs...
Many physical and chemical processes on TiO2 surface are linked to the excess electrons originated f...
We have carried out a systematic study of oxygen vacancy formation on the TiO2 ~110! surface by mea...
International audienceThe dielectric behavior of the reduced TiO 2 (110) rutile surface has been exp...
Native point defects in the rutile TiO2 are studied via first-principles pseudopotential calculation...
Titanium dioxide (TiO2) is well known as the most competent material for both photocatalysis and pho...
Surface defects are important in oxide surface chemistry, because they change not only the surface g...
The structural and electronic properties of oxygen vacancies (V-Ox) and titanium interstitials (Ti-(...
We carried out a theoretical study of the rutile TiO2(110) surface using ab initio techniques. We in...
The role of defects in the chemical activity of the rutile TiO2(110) surface remains a rich topic of...
Density functional theory and a pseudopotential plane wave method are applied to study electronic an...
The formation energies of oxygen vacancies at different surface and subsurface sites of anatase (101...
The energetic and electronic properties of various P doping configurations at the rutile TiO2 (110) ...
We present calculations for Ti adatoms and interstitials at the (110) surface of rutile TiO2, where ...
In the framework of the ab initio atomic thermodynamics, the preliminary analysis of the oxygen defe...
We investigate the effect of adsorbates on the structure and photoabsorption of reduced TiO2 by firs...
Many physical and chemical processes on TiO2 surface are linked to the excess electrons originated f...
We have carried out a systematic study of oxygen vacancy formation on the TiO2 ~110! surface by mea...
International audienceThe dielectric behavior of the reduced TiO 2 (110) rutile surface has been exp...
Native point defects in the rutile TiO2 are studied via first-principles pseudopotential calculation...
Titanium dioxide (TiO2) is well known as the most competent material for both photocatalysis and pho...
Surface defects are important in oxide surface chemistry, because they change not only the surface g...
The structural and electronic properties of oxygen vacancies (V-Ox) and titanium interstitials (Ti-(...