Nowadays, energy and its resources are of prime importance at the global level. During the last few decades there have been several driving forces for the investigation of new sources of energy. Hydrogen has long been identified as one of the most promising carriers of energy. Photoelectrochemical (PEC) water splitting is one of the most promising means of producing hydrogen through a renewable source. Hematite (α-Fe2O3) is a strong candidate material as photoelectrode for PEC water splitting as it fulfils most of the selection criteria of a suitable photocatalyst material for hydrogen generation such as bandgap, chemical and photelectrochemical stability, and importantly ease of fabrication. This work has explored different preparation tec...
In the context of the diminishing fossil energy resources and global warming, much research is focus...
Solar energy is the most sustainable source of energy available. However, solar applications such as...
The alpha phase of hematite (α-Fe2O3) is one of the most promising catalysts for photoelectrochemica...
Nowadays, energy and its resources are of prime importance at the global level. During the last few ...
Electrodeposited thin films of Fe were oxidised using a novel conventional/microwave hybrid heating ...
Hematite is a promising and extensively investigated material for various photoelectrochemical (PEC)...
Photoelectrochemical water splitting is a clean and promising technique for using a renewable source...
High-temperature annealing above 700 ??C improves the activity of photoelectrochemical water oxidati...
Photo-electrochemical (PEC) water splitting of hematite photoanodes suffers from low performance and...
High dependency of fossil fuels to maintain human lifestyle cause serious environmental issues to ou...
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...
DoctorHydrogen is very promising fuel that may become one of the important energy carrier to meet ou...
Motivated to revolutionize our today's fossil fuels based energy production, my work concentrated on...
Microwave assisted preparation has been shown to improve the performance of hematite photoelectrodes...
In the context of the diminishing fossil energy resources and global warming, much research is focus...
Solar energy is the most sustainable source of energy available. However, solar applications such as...
The alpha phase of hematite (α-Fe2O3) is one of the most promising catalysts for photoelectrochemica...
Nowadays, energy and its resources are of prime importance at the global level. During the last few ...
Electrodeposited thin films of Fe were oxidised using a novel conventional/microwave hybrid heating ...
Hematite is a promising and extensively investigated material for various photoelectrochemical (PEC)...
Photoelectrochemical water splitting is a clean and promising technique for using a renewable source...
High-temperature annealing above 700 ??C improves the activity of photoelectrochemical water oxidati...
Photo-electrochemical (PEC) water splitting of hematite photoanodes suffers from low performance and...
High dependency of fossil fuels to maintain human lifestyle cause serious environmental issues to ou...
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...
DoctorHydrogen is very promising fuel that may become one of the important energy carrier to meet ou...
Motivated to revolutionize our today's fossil fuels based energy production, my work concentrated on...
Microwave assisted preparation has been shown to improve the performance of hematite photoelectrodes...
In the context of the diminishing fossil energy resources and global warming, much research is focus...
Solar energy is the most sustainable source of energy available. However, solar applications such as...
The alpha phase of hematite (α-Fe2O3) is one of the most promising catalysts for photoelectrochemica...