Harvesting radiant energy to trigger water photoelectrolysis and produce clean hydrogen is receiving increasing attention in the search of alternative energy resources. In this regard, hematite (α-Fe<sub>2</sub>O<sub>3</sub>) nanostructures with controlled nano-organization have been fabricated and investigated for use as anodes in photoelectrochemical (PEC) cells. The target systems have been grown on conductive substrates by plasma enhanced-chemical vapor deposition (PE-CVD) and subjected to eventual ex situ annealing in air to further tailor their structure and properties. A detailed multitechnique approach has enabled to elucidate the interrelations between system characteristics and the generated photocurrent. The present α-Fe<sub>2</s...
We report great enhancement in photoelectrochemical water splitting efficiency of hematite assisted ...
Photoelectrochemical (PEC) solar water splitting represents a clean and sustainable approach for hyd...
Functional nanoscale interfaces that promote the transport of photoexcited charge carriers are funda...
Harvesting radiant energy to trigger water photoelectrolysis and produce clean hydrogen is receiving...
Harvesting radiant energy to trigger water photoelectrolysis and produce clean hydrogen is receiving...
Harvesting radiant energy to trigger water photoelectrolysis and produce clean hydrogen is receiving...
A new nanostructured α-Fe<sub>2</sub>O<sub>3</sub> photoelectrode synthesized through plasma-enhance...
A new nanostructured \u3b1-Fe2O3 photoelectrode synthesized through plasma-enhanced chemical vapor d...
Nanostructured Fe2O3 thin films were grown by plasma enhanced-chemical vapor deposition (PE-CVD) fro...
There is a global need to reduce the use of fossil fuels due to the negative impacts of anthropogeni...
We report the photoelectrochemical (PEC) performance of a densely grown single crystalline hematite ...
Solar hydrogen has the potential to replace fossil fuels with a sustainable energy carrier that can ...
DoctorHematite (-Fe2O3) is a photoactive material which is widely investigated in the research field...
The incorporation of oxygen vacancies in hematite has been investigated as a promising route to impr...
Harnessing solar energy for the production of clean hydrogen by photoelectrochemical water splitting...
We report great enhancement in photoelectrochemical water splitting efficiency of hematite assisted ...
Photoelectrochemical (PEC) solar water splitting represents a clean and sustainable approach for hyd...
Functional nanoscale interfaces that promote the transport of photoexcited charge carriers are funda...
Harvesting radiant energy to trigger water photoelectrolysis and produce clean hydrogen is receiving...
Harvesting radiant energy to trigger water photoelectrolysis and produce clean hydrogen is receiving...
Harvesting radiant energy to trigger water photoelectrolysis and produce clean hydrogen is receiving...
A new nanostructured α-Fe<sub>2</sub>O<sub>3</sub> photoelectrode synthesized through plasma-enhance...
A new nanostructured \u3b1-Fe2O3 photoelectrode synthesized through plasma-enhanced chemical vapor d...
Nanostructured Fe2O3 thin films were grown by plasma enhanced-chemical vapor deposition (PE-CVD) fro...
There is a global need to reduce the use of fossil fuels due to the negative impacts of anthropogeni...
We report the photoelectrochemical (PEC) performance of a densely grown single crystalline hematite ...
Solar hydrogen has the potential to replace fossil fuels with a sustainable energy carrier that can ...
DoctorHematite (-Fe2O3) is a photoactive material which is widely investigated in the research field...
The incorporation of oxygen vacancies in hematite has been investigated as a promising route to impr...
Harnessing solar energy for the production of clean hydrogen by photoelectrochemical water splitting...
We report great enhancement in photoelectrochemical water splitting efficiency of hematite assisted ...
Photoelectrochemical (PEC) solar water splitting represents a clean and sustainable approach for hyd...
Functional nanoscale interfaces that promote the transport of photoexcited charge carriers are funda...