In this paper, we report on the modification of optical band gap of PbS nanostructured films over a wide spectral range (similar to 475-1000 nm) due to in situ Cd-doping and size confinement. The films investigated in this study are grown by chemical bath deposition (CBD) at different temperatures and the doping was conducted for a fixed impurity concentration. The PbS films grown under optimal deposition conditions are found to crystallize in face centered cubic (fcc) structure with an average crystallite size in the range of 22-27 nm. The estimated optical band gap was in the range of 1.22-1.42 eV, for films grown at different temperatures. Doping was found to influence the film growth and results in a reduction of crystallite size (down ...
Semiconductor nanocrystallites exhibit electronic, optical and photochemical properties greatly diff...
Lead sulfide thin films are deposited on glass substrates at room temperature for 2 h by chemical ba...
Nanocrystalline PbS thin films were deposited on glass substrates with various deposition times usin...
PbS and Cd-doped PbS nanocrystalline thin films prepared by the chemical bath deposition technique w...
The present work reports on the chemosynthesis of nanocrystalline lead sulphide (PbS) thin films by ...
AbstractThe transparent and nanocrystalline lead sulfide (PbS) thin films were prepared by the chemi...
AbstractPbS thin films are good materials for antireflection coatings and for solar thermal applicat...
Nanocrystalline lead sulfide (PbS) thin films have been successfully deposited onto glass substrat...
PbSe films were chemically deposited with a range of controlled microstructures, from nanocrystalli...
In this material production research, undoped and Ba-doped nanostructured PbS films are fabricated o...
Nanocrystalline PbS thin films were deposited on glass substrates with various deposition times usin...
AbstractPbS thin films are good materials for antireflection coatings and for solar thermal applicat...
Copper-doped PbS polycrystalline thin films were deposited by chemical bath deposition by adding sma...
Copper-doped PbS polycrystalline thin films were deposited by chemical bath deposition by adding sma...
Copper-doped PbS polycrystalline thin films were deposited by chemical bath deposition by adding sma...
Semiconductor nanocrystallites exhibit electronic, optical and photochemical properties greatly diff...
Lead sulfide thin films are deposited on glass substrates at room temperature for 2 h by chemical ba...
Nanocrystalline PbS thin films were deposited on glass substrates with various deposition times usin...
PbS and Cd-doped PbS nanocrystalline thin films prepared by the chemical bath deposition technique w...
The present work reports on the chemosynthesis of nanocrystalline lead sulphide (PbS) thin films by ...
AbstractThe transparent and nanocrystalline lead sulfide (PbS) thin films were prepared by the chemi...
AbstractPbS thin films are good materials for antireflection coatings and for solar thermal applicat...
Nanocrystalline lead sulfide (PbS) thin films have been successfully deposited onto glass substrat...
PbSe films were chemically deposited with a range of controlled microstructures, from nanocrystalli...
In this material production research, undoped and Ba-doped nanostructured PbS films are fabricated o...
Nanocrystalline PbS thin films were deposited on glass substrates with various deposition times usin...
AbstractPbS thin films are good materials for antireflection coatings and for solar thermal applicat...
Copper-doped PbS polycrystalline thin films were deposited by chemical bath deposition by adding sma...
Copper-doped PbS polycrystalline thin films were deposited by chemical bath deposition by adding sma...
Copper-doped PbS polycrystalline thin films were deposited by chemical bath deposition by adding sma...
Semiconductor nanocrystallites exhibit electronic, optical and photochemical properties greatly diff...
Lead sulfide thin films are deposited on glass substrates at room temperature for 2 h by chemical ba...
Nanocrystalline PbS thin films were deposited on glass substrates with various deposition times usin...