We report the results of a computational study of TiO2 nanoclusters of various sizes as well as of complex systems with various molecules adsorbed onto the clusters to set the ground for the modeling of charge transfer processes in hybrid organic–inorganic photovoltaics or photocatalytic degradation of pollutants. Despite the large number of existing computational studies of TiO2 clusters and in spite of the higher computing power of the typical available hardware, allowing for calculations of larger systems, there are still studies that use cluster sizes that are too small and not appropriate to address particular problems or certain complex systems relevant in photovoltaic or photocatalytic applications. By means of density function...
In this work we present a theoretical investigation of the attachment of catechol and isonicotinic ...
Density functional theory (DFT) calculation is carried out to access the band structure and density ...
We investigated the influence of size and structure on the electronic structure of TiO2 nanoparticle...
Titanium dioxide is an important photocatalytic material with much activity in modifying it to achie...
International audienceThis paper proposes the cluster approach methodology to simulate electronic pr...
Titanium dioxide is an important photocatalytic material with much activity in modifying it to achie...
Coumarin-based dyes have been successfully used in dye-sensitized solar cells, leading to photovolta...
Titanium dioxide and related oxide materials have been investigated using density functional theory ...
ABSTRACT: We use density functional theory to examine structure− activity relationships of small van...
We study the vertical and adiabatic ionisation potentials and electron affinities of bare and hydrox...
We study the vertical and adiabatic ionization potentials and electron affinities of bare and hydrox...
Metal oxide clusters of sub-nm dimensions dispersed on a metal oxide support are an important class ...
The efficiency of dye-sensitized solar cells (DSCs) depends critically on the electronic structure o...
Charging and doping are two important strategies used in TiO2 quantum dots for photocatalysis and ph...
Titanium dioxide and TiO2 -based materials are widely used in environmental- and energy-related appl...
In this work we present a theoretical investigation of the attachment of catechol and isonicotinic ...
Density functional theory (DFT) calculation is carried out to access the band structure and density ...
We investigated the influence of size and structure on the electronic structure of TiO2 nanoparticle...
Titanium dioxide is an important photocatalytic material with much activity in modifying it to achie...
International audienceThis paper proposes the cluster approach methodology to simulate electronic pr...
Titanium dioxide is an important photocatalytic material with much activity in modifying it to achie...
Coumarin-based dyes have been successfully used in dye-sensitized solar cells, leading to photovolta...
Titanium dioxide and related oxide materials have been investigated using density functional theory ...
ABSTRACT: We use density functional theory to examine structure− activity relationships of small van...
We study the vertical and adiabatic ionisation potentials and electron affinities of bare and hydrox...
We study the vertical and adiabatic ionization potentials and electron affinities of bare and hydrox...
Metal oxide clusters of sub-nm dimensions dispersed on a metal oxide support are an important class ...
The efficiency of dye-sensitized solar cells (DSCs) depends critically on the electronic structure o...
Charging and doping are two important strategies used in TiO2 quantum dots for photocatalysis and ph...
Titanium dioxide and TiO2 -based materials are widely used in environmental- and energy-related appl...
In this work we present a theoretical investigation of the attachment of catechol and isonicotinic ...
Density functional theory (DFT) calculation is carried out to access the band structure and density ...
We investigated the influence of size and structure on the electronic structure of TiO2 nanoparticle...