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    <title><![CDATA[CuInSe<sub>2</sub> (CIS) as A light Absorption Layer of Photovoltaic Solar-Cells]]></title>
    <link>https://thescipub/abstract/ajnsp.2016.13.19</link>
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        <![CDATA[<p>Current Research in Nanotechnology, Published online: 29 February 2016; <a href="https://thescipub.com/abstract/ajnsp.2016.13.19">doi:10.3844/ajnsp.2016.13.19</a></p>Arrested precipitation methode used to synthesize CuInSe2 (CIS) nanocrystals were added to a hot solvent with organic capping ligands to control nanocrystal formation and growth. CIS thin films deposi...]]></content:encoded>
    <dc:title><![CDATA[CuInSe<sub>2</sub> (CIS) as A light Absorption Layer of Photovoltaic Solar-Cells]]></dc:title><dc:creator>Omar Abdulsada Ali</dc:creator><dc:identifier>doi:10.3844/ajnsp.2016.13.19</dc:identifier>
    <dc:source>Current Research in Nanotechnology, Published online: 2016-02-29; | doi:10.3844/ajnsp.2016.13.19</dc:source>
    <dc:date>2016-02-29</dc:date>
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    <prism:doi>10.3844/ajnsp.2016.13.19</prism:doi>
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    </item><item rdf:about="https://thescipub/abstract/ajnsp.2016.1.12">
    <title><![CDATA[Behaviour of Rheology of Nanofluid During Convection in Pipe]]></title>
    <link>https://thescipub/abstract/ajnsp.2016.1.12</link>
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        <![CDATA[<p>Current Research in Nanotechnology, Published online: 4 January 2016; <a href="https://thescipub.com/abstract/ajnsp.2016.1.12">doi:10.3844/ajnsp.2016.1.12</a></p>In this article, the simulation of nanofluid flow in pipe and the behavior of different variables on nanofluid flow are presented. Al2O3-water of volume fraction of Al2O3 2 to 8% was considered as nan...]]></content:encoded>
    <dc:title><![CDATA[Behaviour of Rheology of Nanofluid During Convection in Pipe]]></dc:title><dc:creator>Gajanand  Yadav</dc:creator><dc:creator>Subrata Kumar Majumder</dc:creator><dc:identifier>doi:10.3844/ajnsp.2016.1.12</dc:identifier>
    <dc:source>Current Research in Nanotechnology, Published online: 2016-01-04; | doi:10.3844/ajnsp.2016.1.12</dc:source>
    <dc:date>2016-01-04</dc:date>
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    <prism:doi>10.3844/ajnsp.2016.1.12</prism:doi>
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    </item><item rdf:about="https://thescipub/abstract/ajnsp.2015.23.30">
    <title><![CDATA[New Opportunities for Fullerenes and for Graphene]]></title>
    <link>https://thescipub/abstract/ajnsp.2015.23.30</link>
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        <![CDATA[<p>Current Research in Nanotechnology, Published online: 1 January 2016; <a href="https://thescipub.com/abstract/ajnsp.2015.23.30">doi:10.3844/ajnsp.2015.23.30</a></p>This is a conjecture which defines a new class of electrically conducting polymer that chemically confines metals, ions or clusters within an electric potential constraining them to react in ways nove...]]></content:encoded>
    <dc:title><![CDATA[New Opportunities for Fullerenes and for Graphene]]></dc:title><dc:creator>Clive  Delmonte</dc:creator><dc:identifier>doi:10.3844/ajnsp.2015.23.30</dc:identifier>
    <dc:source>Current Research in Nanotechnology, Published online: 2016-01-01; | doi:10.3844/ajnsp.2015.23.30</dc:source>
    <dc:date>2016-01-01</dc:date>
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    <prism:doi>10.3844/ajnsp.2015.23.30</prism:doi>
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    </item><item rdf:about="https://thescipub/abstract/ajnsp.2015.31.39">
    <title><![CDATA[Green Synthesized Silver Nanoparticles Prepared from the Antimicrobial Crude Extracts of two Brown Seaweeds Against Plant Pathogens]]></title>
    <link>https://thescipub/abstract/ajnsp.2015.31.39</link>
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        <![CDATA[<p>Current Research in Nanotechnology, Published online: 5 November 2015; <a href="https://thescipub.com/abstract/ajnsp.2015.31.39">doi:10.3844/ajnsp.2015.31.39</a></p>This study aimed for green synthesis of silver nanoparticles (Ag-NPs) from the antimicrobial crude extracted in chloroform: methanol(1:1 v/v) from the two brown seaweeds Spatoglossum asperum and Hedop...]]></content:encoded>
    <dc:title><![CDATA[Green Synthesized Silver Nanoparticles Prepared from the Antimicrobial Crude Extracts of two Brown Seaweeds Against Plant Pathogens]]></dc:title><dc:creator>Annakodi  Jothirethinam</dc:creator><dc:creator>Sivanantham  Prathiba</dc:creator><dc:creator>Nagarajan  Shanthi</dc:creator><dc:creator>Kulanthaiyesu  Arunkumar</dc:creator><dc:identifier>doi:10.3844/ajnsp.2015.31.39</dc:identifier>
    <dc:source>Current Research in Nanotechnology, Published online: 2015-11-05; | doi:10.3844/ajnsp.2015.31.39</dc:source>
    <dc:date>2015-11-05</dc:date>
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    <prism:doi>10.3844/ajnsp.2015.31.39</prism:doi>
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    <title><![CDATA[Extending the Repertoire of Structures in DNA Nanotechnology]]></title>
    <link>https://thescipub/abstract/ajnsp.2015.16.22</link>
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        <![CDATA[<p>Current Research in Nanotechnology, Published online: 7 October 2015; <a href="https://thescipub.com/abstract/ajnsp.2015.16.22">doi:10.3844/ajnsp.2015.16.22</a></p>DNA nanotechnology remains an active area of research and advances have been reviewed recently. DNA nanotechnology seeks to deploy molecules at an atomic level and on a small molecule scale. Other tec...]]></content:encoded>
    <dc:title><![CDATA[Extending the Repertoire of Structures in DNA Nanotechnology]]></dc:title><dc:creator>Clive  Delmonte</dc:creator><dc:identifier>doi:10.3844/ajnsp.2015.16.22</dc:identifier>
    <dc:source>Current Research in Nanotechnology, Published online: 2015-10-07; | doi:10.3844/ajnsp.2015.16.22</dc:source>
    <dc:date>2015-10-07</dc:date>
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    <prism:doi>10.3844/ajnsp.2015.16.22</prism:doi>
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