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<ArticleSet>
<Article>
<Journal>
				<PublisherName>Iranian Nanotechnology Society</PublisherName>
				<JournalTitle>International Journal of Nanoscience and Nanotechnology</JournalTitle>
				<Issn>1735-7004</Issn>
				<Volume>16</Volume>
				<Issue>3</Issue>
				<PubDate PubStatus="epublish">
					<Year>2020</Year>
					<Month>08</Month>
					<Day>01</Day>
				</PubDate>
			</Journal>
<ArticleTitle>Effect of Seed Layer on the Morphology of ‎Zinc Oxide Nanorods as an Electron ‎Transport Layer in Polymer Solar Cells ‎</ArticleTitle>
<VernacularTitle></VernacularTitle>
			<FirstPage>201</FirstPage>
			<LastPage>208</LastPage>
			<ELocationID EIdType="pii">44571</ELocationID>
			
			
			<Language>EN</Language>
<AuthorList>
<Author>
					<FirstName>M.</FirstName>
					<LastName>Shirvani</LastName>
<Affiliation>Department of Chemistry, Amirkabir University of Technology, Tehran, Iran.‎</Affiliation>

</Author>
<Author>
					<FirstName>L.</FirstName>
					<LastName>Naji</LastName>
<Affiliation>Department of Chemistry, Amirkabir University of Technology, Tehran, Iran.‎</Affiliation>

</Author>
</AuthorList>
				<PublicationType>Journal Article</PublicationType>
			<History>
				<PubDate PubStatus="received">
					<Year>2019</Year>
					<Month>05</Month>
					<Day>20</Day>
				</PubDate>
			</History>
		<Abstract>&lt;em&gt;   Zinc oxide has been considered as a promising semiconductor material for fabrication of transparent conductive oxides (TCOs), electronic devices, optoelectronics, and solar cells.&lt;/em&gt; &lt;em&gt;Among the various morphologies of zinc oxide, nanorods are more widely used because of the ease of synthesis and providing a direct path for the transport of charge carriers. The electrochemical deposition method (ECD), due to its simplicity, low cost, and production of nanostructures with fewer defects is a more suitable method for producing zinc oxide nanorods.&lt;/em&gt; &lt;em&gt;Heretofore, the effect of different parameters such as the temperature of growth solution, the concentration of precursors and pH &lt;/em&gt;&lt;em&gt;on the morphology of the final product were studied&lt;/em&gt;&lt;em&gt;.&lt;/em&gt; &lt;em&gt;In this paper, the effect of the seed layer number on morphology, absorption, and electrical conductivity of zinc oxide nanorods was investigated using SEM images, UV-Vis spectroscopy, and four-point probe. The results showed that increasing the number of seed layers from 0 to 5 lead to the production of vertical, uniform, regular, and high-density nanorods.&lt;/em&gt; &lt;em&gt;Also, the use of high-density zinc oxide nanorods, in the structure of polymer solar cells increased the performance of polymer solar cells by 68%.&lt;/em&gt; &lt;em&gt;The polymer solar cell with zinc oxide nanorods as the electron transport layer showed short-circuit current, open-circuit voltage, and the power conversion efficiency of equal to 9.04&lt;/em&gt; mA/cm&lt;sup&gt;2&lt;/sup&gt;&lt;em&gt;, 0.53V, and 2.51%, respectively.&lt;/em&gt;</Abstract>
		<ObjectList>
			<Object Type="keyword">
			<Param Name="value">Zinc oxide</Param>
			</Object>
			<Object Type="keyword">
			<Param Name="value">Seed layer</Param>
			</Object>
			<Object Type="keyword">
			<Param Name="value">Zinc oxide nanorods</Param>
			</Object>
			<Object Type="keyword">
			<Param Name="value">Polymer solar cells.‎</Param>
			</Object>
		</ObjectList>
<ArchiveCopySource DocType="pdf">https://www.ijnnonline.net/article_44571_750305e543ca0cb39baf8098c3a8e5ff.pdf</ArchiveCopySource>
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