AbstractSolar radiation and hydrogen generation via splitting water molecules have been recognized as sustainable and clean energy sources having great industrial potentials. In this regard, thin film materials for photovoltaic and photoanodes applications have been widely developed in the last decade. For thin film photovoltaic applications, taking material availability, extraction/processing cost, energy conversion efficiency, and eco-friendliness into account, FeS2 (pyrite) has been predicted to hold the leading position among the most plausible candidates such as Cu2S, Cu2O, CuO, etc. On the other hand, feasible water splitting on nanostructured surface and/or hybrid nanostructures has been observed in the last few years. In terms of pr...
Iron pyrite (FeS2) holds an enormous potential as a low cost and non‐toxic photoelectrochemical and ...
Graduation date: 2010This dissertation outlines two approaches for improving the efficiency and red...
We report on a method to deposit iron pyrite thin films via chemical bath deposition of Fe-O-S thin ...
Preparation and performance of nanostructured iron oxide thin films for solar hydrogen generatio
The general purpose of the study is to fabricate and improve upon FeS2 thin films which can be used ...
Iron pyrite (cubic FeS2) is a non-toxic, earth abundant semiconductor possessing a set of excellent ...
Resurgent interest in iron pyrite (FeS<sub>2</sub>) as an earth-abundant, nontoxic semiconductor for...
Iron pyrite (FeS<sub>2</sub>) nanostructures are of considerable interest for photovoltaic applicati...
Photoelectrochemical water splitting is a clean and promising technique for using a renewable source...
Iron pyrite is a cheap, stable, non-toxic, and earth-abundant material that has great potential in t...
Thin-film photovoltaics (PV) have the potential to supply our future energy needs, but the dominant ...
This thesis describes studies of materials which can be exploited for hydrogen production from water...
Solar hydrogen has the potential to replace fossil fuels with a sustainable energy carrier that can ...
Although iron pyrite had been identified as a novel photo-voltaic material, it is yet to be harnesse...
Iron disulfide (FeS2) or pyrite is a promising candidate material for photovoltaic application, beca...
Iron pyrite (FeS2) holds an enormous potential as a low cost and non‐toxic photoelectrochemical and ...
Graduation date: 2010This dissertation outlines two approaches for improving the efficiency and red...
We report on a method to deposit iron pyrite thin films via chemical bath deposition of Fe-O-S thin ...
Preparation and performance of nanostructured iron oxide thin films for solar hydrogen generatio
The general purpose of the study is to fabricate and improve upon FeS2 thin films which can be used ...
Iron pyrite (cubic FeS2) is a non-toxic, earth abundant semiconductor possessing a set of excellent ...
Resurgent interest in iron pyrite (FeS<sub>2</sub>) as an earth-abundant, nontoxic semiconductor for...
Iron pyrite (FeS<sub>2</sub>) nanostructures are of considerable interest for photovoltaic applicati...
Photoelectrochemical water splitting is a clean and promising technique for using a renewable source...
Iron pyrite is a cheap, stable, non-toxic, and earth-abundant material that has great potential in t...
Thin-film photovoltaics (PV) have the potential to supply our future energy needs, but the dominant ...
This thesis describes studies of materials which can be exploited for hydrogen production from water...
Solar hydrogen has the potential to replace fossil fuels with a sustainable energy carrier that can ...
Although iron pyrite had been identified as a novel photo-voltaic material, it is yet to be harnesse...
Iron disulfide (FeS2) or pyrite is a promising candidate material for photovoltaic application, beca...
Iron pyrite (FeS2) holds an enormous potential as a low cost and non‐toxic photoelectrochemical and ...
Graduation date: 2010This dissertation outlines two approaches for improving the efficiency and red...
We report on a method to deposit iron pyrite thin films via chemical bath deposition of Fe-O-S thin ...