Photoelectrochemical water splitting is a clean and promising technique for using a renewable source of energy, i.e., solar energy, to produce hydrogen. In this work electrochemical formation of iron oxyhydroxide and its conversion to hematite (α- Fe2O3) through thermal treatment have been studied. Oxyhydroxide iron compounds have been prepared onto SnO2/F covered glass substrate by potential cycling with two different potential sweep rate values; then calcined at 520 °C in air to obtain α-Fe2O3 nanostrutured films for their implementation as photoanode in a photoelectrochemical cell. X-ray diffraction analysis allowed finding that iron oxides films have nanocrystalline character. Scanning electron microscopy revealed that films have nanost...
Nanostructured hematite films prepared by a sol gel procedure were evaluated for the photo induced ...
Nanostructured hematite thin films prepared by dip coating technique were investigated for their pho...
Harvesting radiant energy to trigger water photoelectrolysis and produce clean hydrogen is receiving...
DoctorHematite (-Fe2O3) is a photoactive material which is widely investigated in the research field...
Solar hydrogen has the potential to replace fossil fuels with a sustainable energy carrier that can ...
DoctorHydrogen is very promising fuel that may become one of the important energy carrier to meet ou...
High dependency of fossil fuels to maintain human lifestyle cause serious environmental issues to ou...
Photoelectrochemical response of electrodeposited hematite (a-Fe2O3) thin films, whose surface has b...
Hematite, α-Fe2O3 nanocrystalline films have become a covetable material for use in photoelectrochem...
In solar water splitting, the abundant and sustainable solar radiation is directly utilized to split...
Solar water splitting is an environmentally friendly reaction of producing hydrogen gas. Since Honda...
A simplistic and low-cost method that dramatically improves the performance of solution-grown hemati...
There is a global need to reduce the use of fossil fuels due to the negative impacts of anthropogeni...
Hematite is a promising and extensively investigated material for various photoelectrochemical (PEC)...
Hematite (α-Fe<sub>2</sub>O<sub>3</sub>) can be considered as one of the top candidates to act as ph...
Nanostructured hematite films prepared by a sol gel procedure were evaluated for the photo induced ...
Nanostructured hematite thin films prepared by dip coating technique were investigated for their pho...
Harvesting radiant energy to trigger water photoelectrolysis and produce clean hydrogen is receiving...
DoctorHematite (-Fe2O3) is a photoactive material which is widely investigated in the research field...
Solar hydrogen has the potential to replace fossil fuels with a sustainable energy carrier that can ...
DoctorHydrogen is very promising fuel that may become one of the important energy carrier to meet ou...
High dependency of fossil fuels to maintain human lifestyle cause serious environmental issues to ou...
Photoelectrochemical response of electrodeposited hematite (a-Fe2O3) thin films, whose surface has b...
Hematite, α-Fe2O3 nanocrystalline films have become a covetable material for use in photoelectrochem...
In solar water splitting, the abundant and sustainable solar radiation is directly utilized to split...
Solar water splitting is an environmentally friendly reaction of producing hydrogen gas. Since Honda...
A simplistic and low-cost method that dramatically improves the performance of solution-grown hemati...
There is a global need to reduce the use of fossil fuels due to the negative impacts of anthropogeni...
Hematite is a promising and extensively investigated material for various photoelectrochemical (PEC)...
Hematite (α-Fe<sub>2</sub>O<sub>3</sub>) can be considered as one of the top candidates to act as ph...
Nanostructured hematite films prepared by a sol gel procedure were evaluated for the photo induced ...
Nanostructured hematite thin films prepared by dip coating technique were investigated for their pho...
Harvesting radiant energy to trigger water photoelectrolysis and produce clean hydrogen is receiving...