The alpha phase of hematite (α-Fe2O3) is one of the most promising catalysts for photoelectrochemical (PEC) water splitting among several photoanode materials due to its suitable band gap and stability in aqueous solutions. The surface structure and morphology of films play pivotal roles in the enhancement of water oxidation reaction kinetics. In this work, α-Fe2O3 films were produced via either spray pyrolysis (SP), chemical vapor deposition (CVD), or aerosol-assisted chemical vapor deposition (AACVD). Their structural and morphological properties were subsequently characterized by powder x-ray diffraction (PXD), scanning electron microscopy (SEM), and Raman spectroscopy. High-quality thin films were best achieved by AACVD annealed at 525 ...
This study aims to synthesize nanostructured hematite films using spray pyrolysis at different depos...
Solar water splitting is a promising method for producing renewable fuels. Thermodynamically, the ov...
Hematite ferric oxide (a-Fe2O3) based photoanode has emerged as a potential candidate for water spli...
DoctorHematite (-Fe2O3) is a photoactive material which is widely investigated in the research field...
Harvesting radiant energy to trigger water photoelectrolysis and produce clean hydrogen is receiving...
Nanostructured alpha-Fe2O3 thin films were grown by plasma-enhanced chemical vapor deposition (PE-CV...
There is a global need to reduce the use of fossil fuels due to the negative impacts of anthropogeni...
In this dissertation, α-Fe2O3 thin film deposition techniques were first evaluated to understand the...
The development of photoelectrode materials for efficient water splitting using solar energy is a cr...
AbstractPhotoelectrodes that are efficient, highly stable, made from low cost materials and easily p...
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...
北九州市立大学博士(工学)Hematite (α-Fe2O3) is a potential photoanode candidate for PEC water splitting owing to...
Photoelectrochemical (PEC) properties of nanostructured hematite (Fe2O3) thin films prepared using p...
The recent momentum in energy research has simplified converting solar to electrical energy through ...
This study aims to synthesize nanostructured hematite films using spray pyrolysis at different depos...
Solar water splitting is a promising method for producing renewable fuels. Thermodynamically, the ov...
Hematite ferric oxide (a-Fe2O3) based photoanode has emerged as a potential candidate for water spli...
DoctorHematite (-Fe2O3) is a photoactive material which is widely investigated in the research field...
Harvesting radiant energy to trigger water photoelectrolysis and produce clean hydrogen is receiving...
Nanostructured alpha-Fe2O3 thin films were grown by plasma-enhanced chemical vapor deposition (PE-CV...
There is a global need to reduce the use of fossil fuels due to the negative impacts of anthropogeni...
In this dissertation, α-Fe2O3 thin film deposition techniques were first evaluated to understand the...
The development of photoelectrode materials for efficient water splitting using solar energy is a cr...
AbstractPhotoelectrodes that are efficient, highly stable, made from low cost materials and easily p...
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...
北九州市立大学博士(工学)Hematite (α-Fe2O3) is a potential photoanode candidate for PEC water splitting owing to...
Photoelectrochemical (PEC) properties of nanostructured hematite (Fe2O3) thin films prepared using p...
The recent momentum in energy research has simplified converting solar to electrical energy through ...
This study aims to synthesize nanostructured hematite films using spray pyrolysis at different depos...
Solar water splitting is a promising method for producing renewable fuels. Thermodynamically, the ov...
Hematite ferric oxide (a-Fe2O3) based photoanode has emerged as a potential candidate for water spli...