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<Article>
<Journal>
				<PublisherName>University of Kashan</PublisherName>
				<JournalTitle>Journal of Nanostructures</JournalTitle>
				<Issn>2251-7871</Issn>
				<Volume>13</Volume>
				<Issue>4</Issue>
				<PubDate PubStatus="epublish">
					<Year>2023</Year>
					<Month>10</Month>
					<Day>01</Day>
				</PubDate>
			</Journal>
<ArticleTitle>SDS Capped CdTe QDs Binary Mixture for Dye-sensitized Solar Cell Applications</ArticleTitle>
<VernacularTitle></VernacularTitle>
			<FirstPage>939</FirstPage>
			<LastPage>947</LastPage>
			<ELocationID EIdType="pii">114211</ELocationID>
			
<ELocationID EIdType="doi">10.22052/JNS.2023.04.004</ELocationID>
			
			<Language>EN</Language>
<AuthorList>
<Author>
					<FirstName>Ameer</FirstName>
					<LastName>Qasim Abd</LastName>
<Affiliation>Applied Sciences Department, University of Technology- Iraq, Baghdad, Iraq</Affiliation>

</Author>
<Author>
					<FirstName>Odai</FirstName>
					<LastName>N. Salman</LastName>
<Affiliation>Applied Sciences Department, University of Technology- Iraq, Baghdad, Iraq</Affiliation>

</Author>
</AuthorList>
				<PublicationType>Journal Article</PublicationType>
			<History>
				<PubDate PubStatus="received">
					<Year>2023</Year>
					<Month>06</Month>
					<Day>04</Day>
				</PubDate>
			</History>
		<Abstract>The creation of Semiconductor Quantum Dots (QDs) utilizing the pulsed Laser ablation approach from a solid target in a liquid media is simple, rapid, and has a lower environmental effect than other methods. The synthesis of sodium dodecyl sulfate (SDS) capped Cadmium telluride (CdTe) The morphological and optical characteristics of the prepared CdTe QDs were investigated by X-ray diffraction, UV-Vis spectra, Fourier Transform infrared spectroscopy; and transmission electron microscopy. QDs ranging in size from 3 nm to 12 nm were seen to develop. The log normal distribution is used to describe the distribution of particle diameter. The short-circuit current density rose by 20% in the dye sensitized solar cell (DSSC) with and without SDS capped CdTe QDs. and the solar cell efficiency augmented from 0.58 to 1.10%. The creation of Semiconductor Quantum Dots (QDs) utilizing the pulsed Laser ablation approach from a solid target in a liquid media is simple, rapid, and has a lower environmental effect than other methods. The synthesis of sodium dodecyl sulfate (SDS) capped Cadmium telluride (CdTe) The morphological and optical characteristics of the prepared CdTe QDs were investigated by X-ray diffraction, UV-Vis spectra, Fourier Transform infrared spectroscopy; and transmission electron microscopy. QDs ranging in size from 3 nm to 12 nm were seen to develop. The log normal distribution is used to describe the distribution of particle diameter. The short-circuit current density rose by 20% in the dye sensitized solar cell (DSSC) with and without SDS capped CdTe QDs. and the solar cell</Abstract>
		<ObjectList>
			<Object Type="keyword">
			<Param Name="value">Dye-sensitized solar cell</Param>
			</Object>
			<Object Type="keyword">
			<Param Name="value">laser ablation</Param>
			</Object>
			<Object Type="keyword">
			<Param Name="value">SDS capped CdTe QDs</Param>
			</Object>
		</ObjectList>
<ArchiveCopySource DocType="pdf">https://jns.kashanu.ac.ir/article_114211_874df7877f5c4c3e395de4627885b074.pdf</ArchiveCopySource>
</Article>
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