Surface modification of titania surfaces with dispersed metal oxide nanoclusters has the potential to enhance photocatalytic activity. These modifications can induce visible light absorption and suppress charge carrier recombination which are vital in improving the efficiency. We have studied heterostructures of Mn4O6 nanoclusters modifying the TiO2 rutile (110) and anatase (101) surfaces using density functional theory (DFT) corrected for on-site Coulomb interactions (DFT + U). Such studies typically focus on the pristine surface, free of the point defects and surface hydroxyls present in real surfaces. In our study we have considered partial hydroxylation of the rutile and anatase surfaces and the role of cation reduction, via oxygen vaca...
Metal oxide photocatalysts are widely studied for applications in solar driven environmental remedia...
Work on the design of new TiO2 based photocatalysts is described. The key concept is the formation o...
In this review we describe our work on new TiO2 based photocatalysts. The key concept in our work is...
Surface modification of titania surfaces with dispersed metal oxide nanoclusters has the potential t...
Surface modification of titania surfaces with dispersed metal oxide nanoclusters has the potential t...
Surface modification of titania surfaces with dispersed metal oxide nanoclusters has the potential t...
Surface modification of titania surfaces with dispersed metal oxide nanoclusters has the potential t...
We use first-principles density functional theory calculations to analyze the effect of chromia nano...
Surface modification with metal oxide nanoclusters has emerged as a candidate for the enhancement of...
© 2017 American Chemical Society. We use first-principles density functional theory calculations to ...
Metal oxide photocatalysts are widely studied for applications in solar driven environmental remedia...
We use first-principles density functional theory calculations to analyze the effect of chromia nano...
Titanium dioxide is an important photocatalytic material with much activity in modifying it to achie...
Titanium dioxide is an important photocatalytic material with much activity in modifying it to achie...
Density functional theory simulations show that modifying rutile TiO2 with metal oxide nanoclusters ...
Metal oxide photocatalysts are widely studied for applications in solar driven environmental remedia...
Work on the design of new TiO2 based photocatalysts is described. The key concept is the formation o...
In this review we describe our work on new TiO2 based photocatalysts. The key concept in our work is...
Surface modification of titania surfaces with dispersed metal oxide nanoclusters has the potential t...
Surface modification of titania surfaces with dispersed metal oxide nanoclusters has the potential t...
Surface modification of titania surfaces with dispersed metal oxide nanoclusters has the potential t...
Surface modification of titania surfaces with dispersed metal oxide nanoclusters has the potential t...
We use first-principles density functional theory calculations to analyze the effect of chromia nano...
Surface modification with metal oxide nanoclusters has emerged as a candidate for the enhancement of...
© 2017 American Chemical Society. We use first-principles density functional theory calculations to ...
Metal oxide photocatalysts are widely studied for applications in solar driven environmental remedia...
We use first-principles density functional theory calculations to analyze the effect of chromia nano...
Titanium dioxide is an important photocatalytic material with much activity in modifying it to achie...
Titanium dioxide is an important photocatalytic material with much activity in modifying it to achie...
Density functional theory simulations show that modifying rutile TiO2 with metal oxide nanoclusters ...
Metal oxide photocatalysts are widely studied for applications in solar driven environmental remedia...
Work on the design of new TiO2 based photocatalysts is described. The key concept is the formation o...
In this review we describe our work on new TiO2 based photocatalysts. The key concept in our work is...