Harnessing solar energy for the production of clean hydrogen by photoelectrochemical water splitting represents a very attractive, but challenging approach for sustainable energy generation. In this regard, the fabrication of Fe 2 O 3 \u2013TiO 2 photoanodes is reported, showing attractive performances [ 482.0 mA cm 122 at 1.23 V vs. the reversible hydrogen electrode in 1 M NaOH] under simulated one-sun illumination. This goal, corresponding to a tenfold photoactivity enhancement with respect to bare Fe 2 O 3 , is achieved by atomic layer deposition of TiO 2 over hematite (\u3b1-Fe 2 O 3 ) nanostructures fabricated by plasma enhanced-chemical vapor deposition and fi nal annealing at 650 \ub0C. The adopted approach enables an intimate Fe 2 ...
In this study, a ternary nanostructured α-Fe2O3/Au/TiO2 film with integrating a crystalline α-Fe2O3 ...
Solar hydrogen production through photocatalytically assisted water splitting has attracted a great ...
DoctorHydrogen is very promising fuel that may become one of the important energy carrier to meet ou...
Harnessing solar energy for the production of clean hydrogen by photo-electrochemical water splittin...
Functional nanoscale interfaces that promote the transport of photoexcited charge carriers are funda...
Simple metal oxides such as hematite and titania draw tremendous interest as materials for photoelec...
A simplistic and low-cost method that dramatically improves the performance of solution-grown hemati...
Iron and titanium oxides have attracted substantial attention in photoelectrochemical water splittin...
The surface modification of semiconductor photoelectrodes with passivation overlayers has recently a...
To improve the photoelectrochemical (PEC) performance of hematite thin-film photoanode, we report a ...
Simple metal oxides such as hematite and titania draw a tremendous interest as materials for photoel...
There is a global need to reduce the use of fossil fuels due to the negative impacts of anthropogeni...
Hematite (α-Fe2O3) is recognized as a promising photoelectrode material for photoelectrochemical (PE...
In the context of the diminishing fossil energy resources and global warming, much research is focus...
Photocharging is a novel and effective photoanode treatment for improving the photoelectrochemical w...
In this study, a ternary nanostructured α-Fe2O3/Au/TiO2 film with integrating a crystalline α-Fe2O3 ...
Solar hydrogen production through photocatalytically assisted water splitting has attracted a great ...
DoctorHydrogen is very promising fuel that may become one of the important energy carrier to meet ou...
Harnessing solar energy for the production of clean hydrogen by photo-electrochemical water splittin...
Functional nanoscale interfaces that promote the transport of photoexcited charge carriers are funda...
Simple metal oxides such as hematite and titania draw tremendous interest as materials for photoelec...
A simplistic and low-cost method that dramatically improves the performance of solution-grown hemati...
Iron and titanium oxides have attracted substantial attention in photoelectrochemical water splittin...
The surface modification of semiconductor photoelectrodes with passivation overlayers has recently a...
To improve the photoelectrochemical (PEC) performance of hematite thin-film photoanode, we report a ...
Simple metal oxides such as hematite and titania draw a tremendous interest as materials for photoel...
There is a global need to reduce the use of fossil fuels due to the negative impacts of anthropogeni...
Hematite (α-Fe2O3) is recognized as a promising photoelectrode material for photoelectrochemical (PE...
In the context of the diminishing fossil energy resources and global warming, much research is focus...
Photocharging is a novel and effective photoanode treatment for improving the photoelectrochemical w...
In this study, a ternary nanostructured α-Fe2O3/Au/TiO2 film with integrating a crystalline α-Fe2O3 ...
Solar hydrogen production through photocatalytically assisted water splitting has attracted a great ...
DoctorHydrogen is very promising fuel that may become one of the important energy carrier to meet ou...