Photoelectrochemical solar water splitting is a promising and sustainable technology for producing solar fuels such as clean hydrogen from water. A widely studied photoanode semiconductor for this application is TiO2, but it suffers from a large band gap (3.2 eV) and fast recombination of electrons and holes. Herein, we present a novel, facile and rapid strategy to develop Mo-doped TiO2 (Mo:TiO2) mixed anatase–rutile photoanodes using [Ti4Mo2O8(OEt)10]2 bimetallic oxo cages as a single source precursor. These cages dissolved in tetrahydrofuran deposit by spray pyrolysis at 150 C forming films with hierarchical porosity on the micrometer and nanometer scale. XPS, EDXS and UV-Vis spectroscopy reveal Mo atoms evaporate during annealing ...
Simple metal oxides such as hematite and titania draw tremendous interest as materials for photoelec...
Hydrogen, the cleanest and most promising energy vector, can be produced by solar into chemical ener...
A thermal atomic layer deposition ALD process to fabricate MoS2 thin films is successfully demonst...
Photoelectrochemical solar water splitting is a promising and sustainable technology for producing s...
Photoelectrochemical water splitting is a promising technology for the development of solar fuels. T...
Simple metal oxides such as hematite and titania draw a tremendous interest as materials for photoel...
Producción CientíficaThis work outlines an experimental and theoretical investigation of the effect ...
To tackle with the energetic and environmental problems for sustainable development, titanium dioxi...
Transition metal doping into the TiO2 lattice can expand the response of these metal oxide nanoparti...
In this article, thin solid films are processed via pulsed-pressure metal organic chemical vapour de...
Transition metal doping into the TiO(2) lattice can expand the response of these metal oxide nano pa...
Current research is paying much attention to heterojunction nanostructures. Owing to its versatile c...
There is an increasing level of interest in the use of black TiO2 prepared by thermal hydrogen treat...
This work outlines an experimental and theoretical investigation of the effect of molybdenum (Mo) do...
Solar hydrogen production through photocatalytically assisted water splitting has attracted a great ...
Simple metal oxides such as hematite and titania draw tremendous interest as materials for photoelec...
Hydrogen, the cleanest and most promising energy vector, can be produced by solar into chemical ener...
A thermal atomic layer deposition ALD process to fabricate MoS2 thin films is successfully demonst...
Photoelectrochemical solar water splitting is a promising and sustainable technology for producing s...
Photoelectrochemical water splitting is a promising technology for the development of solar fuels. T...
Simple metal oxides such as hematite and titania draw a tremendous interest as materials for photoel...
Producción CientíficaThis work outlines an experimental and theoretical investigation of the effect ...
To tackle with the energetic and environmental problems for sustainable development, titanium dioxi...
Transition metal doping into the TiO2 lattice can expand the response of these metal oxide nanoparti...
In this article, thin solid films are processed via pulsed-pressure metal organic chemical vapour de...
Transition metal doping into the TiO(2) lattice can expand the response of these metal oxide nano pa...
Current research is paying much attention to heterojunction nanostructures. Owing to its versatile c...
There is an increasing level of interest in the use of black TiO2 prepared by thermal hydrogen treat...
This work outlines an experimental and theoretical investigation of the effect of molybdenum (Mo) do...
Solar hydrogen production through photocatalytically assisted water splitting has attracted a great ...
Simple metal oxides such as hematite and titania draw tremendous interest as materials for photoelec...
Hydrogen, the cleanest and most promising energy vector, can be produced by solar into chemical ener...
A thermal atomic layer deposition ALD process to fabricate MoS2 thin films is successfully demonst...