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<ArticleSet>
		<Article>
		<Journal>
			<PublisherName>International Journal of Nano Dimension (Int. J. Nano Dimens.)</PublisherName>
			<JournalTitle>Study on structural, luminescence properties and Hall Effect of SnO2 nanoparticles obtained by a Co-precipitation technique</JournalTitle>
			<Issn></Issn>
			<Volume>Volume 10 (2019)</Volume>
			<Issue>Issue 3, July 2019</Issue>
			<PubDate PubStatus="epublish">
                <Year>2024</Year>
                <Month>02</Month>
                <Day>07</Day>
			</PubDate>
		</Journal>
		<ArticleTitle>Study on structural, luminescence properties and Hall Effect of SnO2 nanoparticles obtained by a Co-precipitation technique</ArticleTitle>
		<VernacularTitle></VernacularTitle>
		<FirstPage></FirstPage>
		<LastPage></LastPage>
		<ELocationID EIdType="doi"></ELocationID>
		<Language>EN</Language>
		<AuthorList>
            			<Author>
                				<FirstName>Gopal</FirstName>
				<LastName>Suresh</LastName>
				<Affiliation>Department of Physics, Arignar Anna Govt. Arts College, Cheyyar-604407, Tamil Nadu, India.</Affiliation>
				<Identifier Source="ORCID"></Identifier>
			</Author>
            			<Author>
                				<FirstName>Rajagemberam</FirstName>
				<LastName>Sathishkumar</LastName>
				<Affiliation>Department of Physics, Arignar Anna Govt. Arts College, Cheyyar-604407, Tamil Nadu, India.</Affiliation>
				<Identifier Source="ORCID"></Identifier>
			</Author>
            			<Author>
                				<FirstName>Baskaran</FirstName>
				<LastName>Iruson</LastName>
				<Affiliation>Department of Physics, Arignar Anna Govt. Arts College, Cheyyar-604407, (Affiliated: Thiruvalluvar University, Vellore), Tamil Nadu (TN), India.</Affiliation>
				<Identifier Source="ORCID"></Identifier>
			</Author>
            			<Author>
                				<FirstName></FirstName>
				<LastName></LastName>
				<Affiliation></Affiliation>
				<Identifier Source="ORCID"></Identifier>
			</Author>
            			<Author>
                				<FirstName></FirstName>
				<LastName></LastName>
				<Affiliation></Affiliation>
				<Identifier Source="ORCID"></Identifier>
			</Author>
            			<Author>
                				<FirstName></FirstName>
				<LastName></LastName>
				<Affiliation></Affiliation>
				<Identifier Source="ORCID"></Identifier>
			</Author>
            		</AuthorList>
		<PublicationType>Journal Article</PublicationType>
		<History>
			<PubDate PubStatus="received">
				<Year>2024</Year>
				<Month>02</Month>
				<Day>07</Day>
			</PubDate>
		</History>
		<Abstract>In this paper, we report the synthesis of tin oxide (SnO2) nanoparticles by co-precipitation technique. The structural, surface morphology, thermal and optical properties of the SnO2 samples were analysed using X-ray diffraction (XRD), High-resolution transmission electron microscopy (HRTEM), Fourier transformed infrared (FTIR) spectrum, thermo gravimetric analysis (TGA/DTA), photoluminescence spectrum (PL) and UV–Vis spectroscopy techniques. X-ray diffraction patterns showed the SnO2 crystallites with the tetragonal rutile structure and UV-Vis analysis showed the characteristic absorbance peak at 345 nm. In the PL emission spectrum, three peaks were found at 500, 605 and 651nm, due to the oxygen vacancy defect. Finally, Hall coefficient was also estimated for various values of an applied magnetic field and bias current applied to the SnO2 sample. From the detailed study, it has been found that the prepared sample is an n-type semiconductor.</Abstract>
		<ObjectList>
            			<Object Type="keyword">
				<Param Name="value">Nanoparticles</Param>
			</Object>
						<Object Type="keyword">
				<Param Name="value">Hall Effect</Param>
			</Object>
						<Object Type="keyword">
				<Param Name="value">Luminescence</Param>
			</Object>
						<Object Type="keyword">
				<Param Name="value">Semiconducting materials</Param>
			</Object>
						<Object Type="keyword">
				<Param Name="value">Tin Oxide</Param>
			</Object>
					</ObjectList>
	</Article>
	</ArticleSet>
