Preparation of nanocrystalline Cd-doped PbS thin films and their structural and optical properties

PbS and Cd-doped PbS nanocrystalline thin films prepared by the chemical bath deposition technique was deposited onto glass substrates at 80 °C. The aqueous solution containing Cd2+ and Pb2+ precursors was used to obtain good quality film deposits at optimized preparative parameters. The character...

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Main Authors: S. Rajathi, K. Kirubavathi, K. Selvaraju
Format: Article
Language:English
Published: Taylor & Francis Group 2017-11-01
Series:Journal of Taibah University for Science
Online Access:http://www.sciencedirect.com/science/article/pii/S1658365517300614
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spelling doaj-69a36b924d5b4d9c8aa8c98adc1353982020-11-24T21:09:52ZengTaylor & Francis GroupJournal of Taibah University for Science1658-36552017-11-0111612961305Preparation of nanocrystalline Cd-doped PbS thin films and their structural and optical propertiesS. Rajathi0K. Kirubavathi1K. Selvaraju2Post Graduate and Research Department of Physics, Thanthai Hans Roever College, Perambalur, 621 212, Tamilnadu, IndiaPost Graduate and Research Department of Physics, Government Arts College, Ariyalur, 621 713, Tamilnadu, IndiaPost Graduate and Research Department of Physics, Government Arts College, Ariyalur, 621 713, Tamilnadu, India; Corresponding author. Fax: +91 4329 221260.PbS and Cd-doped PbS nanocrystalline thin films prepared by the chemical bath deposition technique was deposited onto glass substrates at 80 °C. The aqueous solution containing Cd2+ and Pb2+ precursors was used to obtain good quality film deposits at optimized preparative parameters. The characterization of these films was performed using X-ray diffraction, optical absorption, photoluminescence properties, scanning electron microscopy and energy dispersive X-ray analyses to explore the properties of the PbS and Cd-doped PbS films. The prepared films were adherent to the substrate and well crystallized according to the cubic structure, which displayed a preferred orientation. According to the X-ray diffraction analysis, the crystallite size of the films decreased from 74 nm to 64 nm with increasing Cd doping. The optical properties were determined from ultraviolet-visible spectroscopy measurements in the absorbance energy range from 300â1200 nm. The UV-visible analysis shows that the band gap value of the PbS thin films increased from 2.12 eV to 2.65 eV by doping with Cd. Morphological analysis showed that the shape of the grains over the substrate surface was changed from a regular random orientation to an irregular shape with Cd doping. The energy dispersive X-ray analysis showed that the film contains Cd, Pb and S elements without any other impurities. Keywords: Thin films, Chemical synthesis, X-ray diffraction, Optical propertieshttp://www.sciencedirect.com/science/article/pii/S1658365517300614
collection DOAJ
language English
format Article
sources DOAJ
author S. Rajathi
K. Kirubavathi
K. Selvaraju
spellingShingle S. Rajathi
K. Kirubavathi
K. Selvaraju
Preparation of nanocrystalline Cd-doped PbS thin films and their structural and optical properties
Journal of Taibah University for Science
author_facet S. Rajathi
K. Kirubavathi
K. Selvaraju
author_sort S. Rajathi
title Preparation of nanocrystalline Cd-doped PbS thin films and their structural and optical properties
title_short Preparation of nanocrystalline Cd-doped PbS thin films and their structural and optical properties
title_full Preparation of nanocrystalline Cd-doped PbS thin films and their structural and optical properties
title_fullStr Preparation of nanocrystalline Cd-doped PbS thin films and their structural and optical properties
title_full_unstemmed Preparation of nanocrystalline Cd-doped PbS thin films and their structural and optical properties
title_sort preparation of nanocrystalline cd-doped pbs thin films and their structural and optical properties
publisher Taylor & Francis Group
series Journal of Taibah University for Science
issn 1658-3655
publishDate 2017-11-01
description PbS and Cd-doped PbS nanocrystalline thin films prepared by the chemical bath deposition technique was deposited onto glass substrates at 80 °C. The aqueous solution containing Cd2+ and Pb2+ precursors was used to obtain good quality film deposits at optimized preparative parameters. The characterization of these films was performed using X-ray diffraction, optical absorption, photoluminescence properties, scanning electron microscopy and energy dispersive X-ray analyses to explore the properties of the PbS and Cd-doped PbS films. The prepared films were adherent to the substrate and well crystallized according to the cubic structure, which displayed a preferred orientation. According to the X-ray diffraction analysis, the crystallite size of the films decreased from 74 nm to 64 nm with increasing Cd doping. The optical properties were determined from ultraviolet-visible spectroscopy measurements in the absorbance energy range from 300â1200 nm. The UV-visible analysis shows that the band gap value of the PbS thin films increased from 2.12 eV to 2.65 eV by doping with Cd. Morphological analysis showed that the shape of the grains over the substrate surface was changed from a regular random orientation to an irregular shape with Cd doping. The energy dispersive X-ray analysis showed that the film contains Cd, Pb and S elements without any other impurities. Keywords: Thin films, Chemical synthesis, X-ray diffraction, Optical properties
url http://www.sciencedirect.com/science/article/pii/S1658365517300614
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