Study on structural, optical and electrical properties of spray pyrolysed PbxZn1-xS thin films for opto-Electronic applications
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Date
2017
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Elsevier GmbH journals@elsevier.com
Abstract
Ternary thin films are attractive for many applications due to their band gap tunability. In the present study, the stoichiometric n-Pb<inf>x</inf>Zn<inf>1-x</inf>S (x = 0, 0.2, 0.4, 0.5, 0.6, 0.8 and 1) thin films were deposited on glass substrates using spray pyrolysis technique. The structural, optical and electrical studies have been carried out in order to understand the band gap tunability of prepared films. The XRD analysis confirmed that the prepared films were polycrystalline in nature with cubic structure. The substitution of zinc into the lead sulphide lattice led to decrease in the crystallite size, and the orientation of the films changed from (200) to (111) plane. SEM images clearly showed a modification in the morphology of the films from nano size particle to network structure due to Zn ion substitution. The optical band gap energy of Pb<inf>x</inf>Zn<inf>1-x</inf>S thin films varied from 0.40 eV to 3.54 eV and the transition has been changed from indirect to direct with the substitution of zinc into the lead lattice site. The resistivity and activation energy of the films were increased with increase in the band gap. The results confirm the formation of a continues solid solution of PbS and ZnS in the ternary phase which can be a suitable candidate for optoelectronic applications. © 2017 Elsevier GmbH
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Keywords
Activation energy, Composite materials, Crystallite size, Electric properties, Energy gap, Film preparation, Optical lattices, Spray pyrolysis, Substrates, Synthesis (chemical), X ray diffraction, Zinc, Zinc sulfide, Electrical studies, Glass substrates, Nano-size particles, Network structures, Optical and electrical properties, Optical band gap energy, Optoelectronic applications, Spray-pyrolysis techniques, Thin films
Citation
Optik, 2017, 144, , pp. 528-538
