TY - JOUR
T1 - Mg-doped CdS films prepared by chemical bath deposition. Optical and electrical properties
AU - Caballero-Briones, F.
AU - Calzadilla, O.
AU - Chalé-Lara, F.
AU - Rejón, V.
AU - Peña, J. L.
N1 - Publisher Copyright:
© 2015, National Institute R and D of Materials Physics. All rights reserved.
PY - 2015
Y1 - 2015
N2 - Mg-doped CdS thin films were prepared onto glass substrates by the chemical bath deposition method increasing Mg2+ contents in the chemical bath. Film composition was studied by X-ray photoelectron spectroscopy. The physical properties of the films such as the lattice parameter, crystallite size and crystal structure were studied by X-ray diffraction and the film morphology was examined by atomic force microscopy. XPS results indicate an incorporation of up to 0.27 at. %. X-ray diffraction showed that films occur primarily in the hexagonal phase. The band gap increased with the Mg2+ added to the bath. The film resistance reduced with the Mg doping and an increased photocurrent response was observed under illumination. Using photocurrent sensing atomic force microscopy (PCAFM) in selected samples, an increasing photocurrent response was measured in the grain boundaries. I-V curves in PCAFM indicate n-type doping character.
AB - Mg-doped CdS thin films were prepared onto glass substrates by the chemical bath deposition method increasing Mg2+ contents in the chemical bath. Film composition was studied by X-ray photoelectron spectroscopy. The physical properties of the films such as the lattice parameter, crystallite size and crystal structure were studied by X-ray diffraction and the film morphology was examined by atomic force microscopy. XPS results indicate an incorporation of up to 0.27 at. %. X-ray diffraction showed that films occur primarily in the hexagonal phase. The band gap increased with the Mg2+ added to the bath. The film resistance reduced with the Mg doping and an increased photocurrent response was observed under illumination. Using photocurrent sensing atomic force microscopy (PCAFM) in selected samples, an increasing photocurrent response was measured in the grain boundaries. I-V curves in PCAFM indicate n-type doping character.
KW - CdS
KW - Chemical bath deposition
KW - Magnesium doping
KW - Optical and electrical properties
UR - http://www.scopus.com/inward/record.url?scp=84927665381&partnerID=8YFLogxK
M3 - Artículo
SN - 1584-8663
VL - 12
SP - 137
EP - 145
JO - Chalcogenide Letters
JF - Chalcogenide Letters
IS - 4
ER -