AbstractThe cubic FeS2 (Pyrite) films are prepared by chemical bath deposition method (CBD) at different iron ion precursor concentrations that varying from 2.0M to 0.5M. X-ray diffractograms revealed that the presence of (110) plane, corresponding to marcasite structure, and (106) and (304) planes, corresponding to FeS (Triolite) phase are observed along with the pure pyrite phase (200) at higher concentrations of iron. The films deposited at 1.0M concentration has strong (200) and (023) planes related to pure pyrite phase. This is confirmed by the Raman measurements. It is observed that the molar concentration of the precursor plays an important role in controlling the morphology of the films. FTIR spectra shows the existence of –OH, -CH ...
FeS2 pynte has been prepared by MOCVD in the temperature range from 200 to 600 C. As precursors F...
FeS2 thin films have been deposited from an aqueous solution onto microscope glass substrates by che...
Iron pyrite (FeS2) holds an enormous potential as a low cost and non-toxic photoelectrochemical and ...
AbstractThe cubic FeS2 (Pyrite) films are prepared by chemical bath deposition method (CBD) at diffe...
We report on a method to deposit iron pyrite thin films via chemical bath deposition of Fe-O-S thin ...
Based on experimental results and theoretical analysis effects of the crystal structure on the optic...
Thin films of iron disulfide have been prepared by Low-Pressure Chernical Vapor Deposition (LPCVD) f...
Resurgent interest in iron pyrite (FeS<sub>2</sub>) as an earth-abundant, nontoxic semiconductor for...
Thin films of pyrite have been prepared by low pressure metalorganic chemical vapour deposition LP ...
The use of pyrite FeS<sub>2</sub> as an earth-abundant, low-cost, nontoxic thin film photovoltaic hi...
Semiconducting pyrites were successfully deposited on glass substrates from Diethyldithiocarbamato i...
Iron pyrite (FeS2) holds an enormous potential as a low cost and non‐toxic photoelectrochemical and ...
Although iron pyrite had been identified as a novel photo-voltaic material, it is yet to be harnesse...
Thin iron disulphide pyrite FeS2 films 5 100 nm were prepared by reactive d.c. magnetron sputt...
FeS2 thin films have been deposited by using low cost chemical bath deposition technique. The films ...
FeS2 pynte has been prepared by MOCVD in the temperature range from 200 to 600 C. As precursors F...
FeS2 thin films have been deposited from an aqueous solution onto microscope glass substrates by che...
Iron pyrite (FeS2) holds an enormous potential as a low cost and non-toxic photoelectrochemical and ...
AbstractThe cubic FeS2 (Pyrite) films are prepared by chemical bath deposition method (CBD) at diffe...
We report on a method to deposit iron pyrite thin films via chemical bath deposition of Fe-O-S thin ...
Based on experimental results and theoretical analysis effects of the crystal structure on the optic...
Thin films of iron disulfide have been prepared by Low-Pressure Chernical Vapor Deposition (LPCVD) f...
Resurgent interest in iron pyrite (FeS<sub>2</sub>) as an earth-abundant, nontoxic semiconductor for...
Thin films of pyrite have been prepared by low pressure metalorganic chemical vapour deposition LP ...
The use of pyrite FeS<sub>2</sub> as an earth-abundant, low-cost, nontoxic thin film photovoltaic hi...
Semiconducting pyrites were successfully deposited on glass substrates from Diethyldithiocarbamato i...
Iron pyrite (FeS2) holds an enormous potential as a low cost and non‐toxic photoelectrochemical and ...
Although iron pyrite had been identified as a novel photo-voltaic material, it is yet to be harnesse...
Thin iron disulphide pyrite FeS2 films 5 100 nm were prepared by reactive d.c. magnetron sputt...
FeS2 thin films have been deposited by using low cost chemical bath deposition technique. The films ...
FeS2 pynte has been prepared by MOCVD in the temperature range from 200 to 600 C. As precursors F...
FeS2 thin films have been deposited from an aqueous solution onto microscope glass substrates by che...
Iron pyrite (FeS2) holds an enormous potential as a low cost and non-toxic photoelectrochemical and ...