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Chemical Precipitation Synthesis of Ferric Chloride Doped Zinc Sulphide Nanoparticles and their Characterization Studies

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1TitleTitle of DocumentChemical Precipitation Synthesis of Ferric Chloride Doped Zinc Sulphide Nanoparticles and their Characterization Studies
2CreatorAuthor's name, affiliation, country T.THEIVASANTHI, N. KARTHEESWARI and M. ALAGAR
Center for Research and Post Graduate Department of Physics, Ayya Nadar Janaki Ammal College, Sivakasi - 626124, India
3SubjectDicipline(s) Chemical Science
3SubjectKeywords ZnS nanoparticles, Chemical precipitation, Optical band gap, XRD, Thermal analysis
4DescriptionAbstract Nanoparticles of ferric chloride doped ZnS has been synthesized by simple chemical precipitation method and characterized by XRD, SEM, UV-Vis analysis, differential thermal analysis, thermogravimetric analysis and differential scanning calorimetry. XRD patterns of the samples reveal particle size, specific surface area and the formation of cubic structure. The SEM images show that the cauliflower likes structure. Optical band gap values have been obtained from UV-Vis absorption spectra. It has also been found that energy band gap (Eg) increases with the increase in molar concentration of reactant solution. Thermal analysis measurement of the prepared sample shows that the thermal stability of pure ZnS is decreased due to increase in ferric chloride concentration. Undoped ZnS is more thermal stable when compared to FeCl3 doped ZnS.
5PublishersOrganizing agency, location WWW Publications, India
6Contributor Sponsor(s) -
7DateDate (YYYY-MM-DD) -
8TypeStatus & genre Peer-reviewed Article
8TypeType
9FormateFile Formate PDF
10IdentifierUniform Resource Identifier Click Here
10IdentifierDigital Object Identifier DOI:10.7598/cst2013.207
11SourceJournal/conference title; vol., no. (Year)Chemical Science Transactions, Volume  2 , Number  (2), (2013)
12LanuguageEnglish=en en
13RelationSupp.files
14Coverage -
15CopyrightCopyright and permissions
Chemical Science Transactions | Chem Sci Trans | CST | Online Chemistry Journal | Open Access
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