Anatase TiO2 provides photoactivity with high chemical stability at a reasonable cost. Different methods have been used to enhance its photocatalytic activity by creating band gap states through the introduction of oxygen vacancies, hydrogen impurities, or the adorption of phthalocyanines, which are usually employed as organic dyes in dye-sensitized solar cells. Predicting how these interactions affect the electronic structure of anatase requires an efficient and robust theory. In order to document the efficiency and accuracy of commonly used approaches we have considered two widely used implementations of density functional theory (DFT), namely the all-electron linear combination of atomic orbitals (AE-LCAO) and the pseudo-potential plane ...
The anatase structure of titanium dioxide (TiO2) nanoparticles was prepared via sol–gel technique an...
There are three main crystal forms of TiO2 in nature: rutile, anatase and brookite. In this paper, t...
Knowledge of the alignment of molecular frontier levels in the ground state can be used to predict t...
Anatase TiO2 provides photoactivity with high chemical stability at a reasonable cost. Different met...
Anatase TiO2 provides photoactivity with high chemical stability at a reasonable cost. Different met...
Anatase TiO2 provides photoactivity with high chemical stability at a reasonable cost. Different met...
Anatase TiO 2 provides photoactivity with high chemical stability at a reasonable cost. Different me...
Anatase TiO2 provides photoactivity with high chemical stability at a reasonable cost. Different met...
We model TiO2 rutile (110) and anatase (101) surfaces and investigate the effect of adsorption of be...
Density functional–pseudopotential calculations were performed to study the effects of hydrogen dopi...
Adsorbed metal atoms and metal doping onto TiO2 can effectively enhance the optical and photocatalyt...
The energetic and electronic properties of various P doping configurations at the rutile TiO2 (110) ...
In this paper we investigated the effects of Fe-doping of the anatase TiO2 (1 0 1) surface on the cr...
Titanium dioxide exhibits superior photocatalytic properties, mainly occurring in liquid environment...
Photocatalytic water splitting using titanium dioxide (TiO2) nanotube is a clean and sustainable met...
The anatase structure of titanium dioxide (TiO2) nanoparticles was prepared via sol–gel technique an...
There are three main crystal forms of TiO2 in nature: rutile, anatase and brookite. In this paper, t...
Knowledge of the alignment of molecular frontier levels in the ground state can be used to predict t...
Anatase TiO2 provides photoactivity with high chemical stability at a reasonable cost. Different met...
Anatase TiO2 provides photoactivity with high chemical stability at a reasonable cost. Different met...
Anatase TiO2 provides photoactivity with high chemical stability at a reasonable cost. Different met...
Anatase TiO 2 provides photoactivity with high chemical stability at a reasonable cost. Different me...
Anatase TiO2 provides photoactivity with high chemical stability at a reasonable cost. Different met...
We model TiO2 rutile (110) and anatase (101) surfaces and investigate the effect of adsorption of be...
Density functional–pseudopotential calculations were performed to study the effects of hydrogen dopi...
Adsorbed metal atoms and metal doping onto TiO2 can effectively enhance the optical and photocatalyt...
The energetic and electronic properties of various P doping configurations at the rutile TiO2 (110) ...
In this paper we investigated the effects of Fe-doping of the anatase TiO2 (1 0 1) surface on the cr...
Titanium dioxide exhibits superior photocatalytic properties, mainly occurring in liquid environment...
Photocatalytic water splitting using titanium dioxide (TiO2) nanotube is a clean and sustainable met...
The anatase structure of titanium dioxide (TiO2) nanoparticles was prepared via sol–gel technique an...
There are three main crystal forms of TiO2 in nature: rutile, anatase and brookite. In this paper, t...
Knowledge of the alignment of molecular frontier levels in the ground state can be used to predict t...