Metal oxide-organic hybrid semiconductors exhibit specific properties depending not only on their composition but also on the synthesis procedure, and particularly on the functionalization method, determining the interaction between the two components. Surface adsorption is the most common way to prepare organic-modified metal oxides. Here a simple sol–gel route is described as an alternative, finely controlled strategy to synthesize titanium oxide-based materials containing organic molecules coordinated to the metal. The effect of the molecular structure of the ligands on the surface properties of the hybrids is studied using three enediols able to form charge transfer complexes: catechol, dopamine, and ascorbic acid. For each system, the ...
The visible-light-responsive inorganic-organic hybrid was prepared by surface modification of commer...
The adsorption of Zn-Tetra-Phenyl-Porphyrin (ZnTPP) on nanoporous hierarchically organized anatase T...
Since the discovery of its photocatalytic properties, titanium dioxide has remained one of the most ...
Metal oxide-organic hybrid semiconductors exhibit specific properties depending not only on their co...
Surface functionalized titanium dioxides (TiO2) are among the most studied hybrid materials for phot...
The spontaneous formation and long-term surface stabilization of superoxide radicals are observed on...
Surface modification of nanocrystalline TiO2 particles (45 ) with bidentate benzene derivatives (cat...
Titanium dioxide photosensitization may be achieved in various ways, involving surface modification ...
The attachment of squaric acid, a non-aromatic molecule, to the surface of TiO2 powder induced the o...
We investigated photoelectrodes based on TiO2-polyheptazine hybrid materials. Since both TiO2 and po...
We report synthesis of a new catechol derivative of 2,2'-bipyridyl (L1) and two new Os(II)-polypyrid...
Titania is one of the most widely used benchmark standard photocatalysts in the field of environment...
International audienceThe purpose of this work is to establish a fabrication method for new electron...
The oxidation of trans-ferulic acid (C 10H 10O 4) in aqueous TiO 2 dispersion occurs via the formati...
The photosensitive molecule adsorption on titanium dioxide (TiO2) forms the so-called “dye sensitize...
The visible-light-responsive inorganic-organic hybrid was prepared by surface modification of commer...
The adsorption of Zn-Tetra-Phenyl-Porphyrin (ZnTPP) on nanoporous hierarchically organized anatase T...
Since the discovery of its photocatalytic properties, titanium dioxide has remained one of the most ...
Metal oxide-organic hybrid semiconductors exhibit specific properties depending not only on their co...
Surface functionalized titanium dioxides (TiO2) are among the most studied hybrid materials for phot...
The spontaneous formation and long-term surface stabilization of superoxide radicals are observed on...
Surface modification of nanocrystalline TiO2 particles (45 ) with bidentate benzene derivatives (cat...
Titanium dioxide photosensitization may be achieved in various ways, involving surface modification ...
The attachment of squaric acid, a non-aromatic molecule, to the surface of TiO2 powder induced the o...
We investigated photoelectrodes based on TiO2-polyheptazine hybrid materials. Since both TiO2 and po...
We report synthesis of a new catechol derivative of 2,2'-bipyridyl (L1) and two new Os(II)-polypyrid...
Titania is one of the most widely used benchmark standard photocatalysts in the field of environment...
International audienceThe purpose of this work is to establish a fabrication method for new electron...
The oxidation of trans-ferulic acid (C 10H 10O 4) in aqueous TiO 2 dispersion occurs via the formati...
The photosensitive molecule adsorption on titanium dioxide (TiO2) forms the so-called “dye sensitize...
The visible-light-responsive inorganic-organic hybrid was prepared by surface modification of commer...
The adsorption of Zn-Tetra-Phenyl-Porphyrin (ZnTPP) on nanoporous hierarchically organized anatase T...
Since the discovery of its photocatalytic properties, titanium dioxide has remained one of the most ...