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	<channel rdf:about="http://xlink.rsc.org/jumptojournal.cfm?journal_code=NR"><title>RSC - Nanoscale latest articles</title>
		<description>RSC - Nanoscale latest articles</description>
		<link>http://xlink.rsc.org/jumptojournal.cfm?journal_code=NR</link>
		<dc:publisher>The Royal Society of Chemistry</dc:publisher>
		<dc:language>en-gb</dc:language>
		<dc:rights>Copyright (c) 2010 The Royal Society of Chemistry</dc:rights>
		<prism:publicationName>Nanoscale</prism:publicationName>
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		<prism:issn>2040-3364</prism:issn><prism:eIssn>2040-3372</prism:eIssn><prism:publisher>The Royal Society of Chemistry</prism:publisher>
		<dc:creator>The Royal Society of Chemistry</dc:creator>
		<dc:description>Royal Society of Chemistry - Nanoscale latest articles</dc:description>
		<dc:title>RSC - Nanoscale latest articles </dc:title>
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	<item rdf:about="http://xlink.rsc.org/?DOI=b9nr00231f&amp;RSS=1"><title>Nanoneedle: A multifunctional tool for biological studies in living cells</title>
		<link>http://xlink.rsc.org/?DOI=b9nr00231f&amp;RSS=1</link>
		<description>Nanoneedle technology is shown to be a powerful and multifunctional tool, offering numerous new ways to explore biological processes and biophysical properties of living cells.</description><content:encoded>&lt;p&gt;&lt;img align="center" src="http://www.rsc.org/ejga/NR/2010/b9nr00231f-ga.gif"/&gt;
	&lt;/p&gt;Kyungsuk Yum, Ning Wang, Min-Feng Yu &lt;br/&gt;
(Feature Article from Nanoscale)&lt;br/&gt;
Kyungsuk Yum, Nanoscale, 2010, DOI: 10.1039/b9nr00231f&lt;br/&gt;
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&lt;br/&gt;The content of this RSS Feed (c) The Royal Society of Chemistry</content:encoded>
		<dc:title>Nanoneedle: A multifunctional tool for biological studies in living cells</dc:title>
		<dc:creator>Kyungsuk Yum</dc:creator>
		<dc:creator>Ning Wang </dc:creator><dc:creator>Min-Feng Yu </dc:creator><dc:identifier>10.1039/b9nr00231f</dc:identifier>
		<dc:source>Nanoscale, 2010, DOI: 10.1039/b9nr00231f</dc:source>
		<dc:format>html/pdf</dc:format>
		<dc:date>2009-12-09</dc:date>
		<dc:publisher>The Royal Society of Chemistry</dc:publisher>
		<dc:rights>Copyright (c) 2010 The Royal Society of Chemistry</dc:rights>
		<dc:identifier>DOI 10.1039/b9nr00231f</dc:identifier>
	</item>
	<item rdf:about="http://xlink.rsc.org/?DOI=b9nr00251k&amp;RSS=1"><title>Bright-field electron tomography of individual inorganic fullerene-like structures</title>
		<link>http://xlink.rsc.org/?DOI=b9nr00251k&amp;RSS=1</link>
		<description>High-resolution transmission electron tomography of closed-cage inorganic fullerene-like WS2 particles and nanotubes reveals their internal structures.</description><content:encoded>&lt;p&gt;&lt;img align="center" src="http://www.rsc.org/ejga/NR/2010/b9nr00251k-ga.gif"/&gt;
	&lt;/p&gt;Maya Bar Sadan, Sharon G. Wolf, Lothar Houben &lt;br/&gt;
(Paper from Nanoscale)&lt;br/&gt;
Maya Bar Sadan, Nanoscale, 2010, DOI: 10.1039/b9nr00251k&lt;br/&gt;
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		<dc:title>Bright-field electron tomography of individual inorganic fullerene-like structures</dc:title>
		<dc:creator>Maya Bar Sadan</dc:creator>
		<dc:creator>Sharon G. Wolf </dc:creator><dc:creator>Lothar Houben </dc:creator><dc:identifier>10.1039/b9nr00251k</dc:identifier>
		<dc:source>Nanoscale, 2010, DOI: 10.1039/b9nr00251k</dc:source>
		<dc:format>html/pdf</dc:format>
		<dc:date>2009-12-08</dc:date>
		<dc:publisher>The Royal Society of Chemistry</dc:publisher>
		<dc:rights>Copyright (c) 2010 The Royal Society of Chemistry</dc:rights>
		<dc:identifier>DOI 10.1039/b9nr00251k</dc:identifier>
	</item>
	<item rdf:about="http://xlink.rsc.org/?DOI=b9nr00257j&amp;RSS=1"><title>Recyclable and electrically conducting carbon nanotube composite films</title>
		<link>http://xlink.rsc.org/?DOI=b9nr00257j&amp;RSS=1</link>
		<description>We employ a benign water-soluble polymer, polyethyleneimine, to disperse CNTs and a general spin-coating process to prepare homogeneous water-soluble, recyclable CNT composite films.</description><content:encoded>&lt;p&gt;&lt;img align="center" src="http://www.rsc.org/ejga/NR/2010/b9nr00257j-ga.gif"/&gt;
	&lt;/p&gt;Guifu Zou, Menka Jain, Hao Yang, Yingying Zhang, Darrick Williams, Quanxi Jia &lt;br/&gt;
(Paper from Nanoscale)&lt;br/&gt;
Guifu Zou, Nanoscale, 2010, DOI: 10.1039/b9nr00257j&lt;br/&gt;
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		<dc:title>Recyclable and electrically conducting carbon nanotube composite films</dc:title>
		<dc:creator>Guifu Zou</dc:creator>
		<dc:creator>Menka Jain </dc:creator><dc:creator>Hao Yang </dc:creator><dc:creator>Yingying Zhang </dc:creator><dc:creator>Darrick Williams </dc:creator><dc:creator>Quanxi Jia </dc:creator><dc:identifier>10.1039/b9nr00257j</dc:identifier>
		<dc:source>Nanoscale, 2010, DOI: 10.1039/b9nr00257j</dc:source>
		<dc:format>html/pdf</dc:format>
		<dc:date>2009-12-08</dc:date>
		<dc:publisher>The Royal Society of Chemistry</dc:publisher>
		<dc:rights>Copyright (c) 2010 The Royal Society of Chemistry</dc:rights>
		<dc:identifier>DOI 10.1039/b9nr00257j</dc:identifier>
	</item>
	<item rdf:about="http://xlink.rsc.org/?DOI=b9nr00320g&amp;RSS=1"><title>Synthesis of nanometre-thick MoO3 sheets</title>
		<link>http://xlink.rsc.org/?DOI=b9nr00320g&amp;RSS=1</link>
		<description>Forming nanometre-thick MoO3 sheets by mechanically exfoliating thermally evaporated [small alpha]-MoO3.</description><content:encoded>&lt;p&gt;&lt;img align="center" src="http://www.rsc.org/ejga/NR/2010/b9nr00320g-ga.gif"/&gt;
	&lt;/p&gt;Kourosh Kalantar-zadeh, Jianshi Tang, Minsheng Wang, Kang L. Wang, Alexandros Shailos, Kosmas Galatsis, Robert Kojima, Veronica Strong, Andrew Lech, Wojtek Wlodarski, Richard B. Kaner &lt;br/&gt;
(Paper from Nanoscale)&lt;br/&gt;
Kourosh Kalantar-zadeh, Nanoscale, 2010, DOI: 10.1039/b9nr00320g&lt;br/&gt;
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&lt;br/&gt;The content of this RSS Feed (c) The Royal Society of Chemistry</content:encoded>
		<dc:title>Synthesis of nanometre-thick MoO3 sheets</dc:title>
		<dc:creator>Kourosh Kalantar-zadeh</dc:creator>
		<dc:creator>Jianshi Tang </dc:creator><dc:creator>Minsheng Wang </dc:creator><dc:creator>Kang L. Wang </dc:creator><dc:creator>Alexandros Shailos </dc:creator><dc:creator>Kosmas Galatsis </dc:creator><dc:creator>Robert Kojima </dc:creator><dc:creator>Veronica Strong </dc:creator><dc:creator>Andrew Lech </dc:creator><dc:creator>Wojtek Wlodarski </dc:creator><dc:creator>Richard B. Kaner </dc:creator><dc:identifier>10.1039/b9nr00320g</dc:identifier>
		<dc:source>Nanoscale, 2010, DOI: 10.1039/b9nr00320g</dc:source>
		<dc:format>html/pdf</dc:format>
		<dc:date>2009-12-08</dc:date>
		<dc:publisher>The Royal Society of Chemistry</dc:publisher>
		<dc:rights>Copyright (c) 2010 The Royal Society of Chemistry</dc:rights>
		<dc:identifier>DOI 10.1039/b9nr00320g</dc:identifier>
	</item>
	<item rdf:about="http://xlink.rsc.org/?DOI=b9nr00160c&amp;RSS=1"><title>Quantum sized, thiolate-protected gold nanoclusters</title>
		<link>http://xlink.rsc.org/?DOI=b9nr00160c&amp;RSS=1</link>
		<description>This review will focus on a special type of ultra-small (&lt;2 nm) yet robust gold nanoparticles that are protected by thiolates, so-called gold thiolate nanoclusters.</description><content:encoded>&lt;p&gt;&lt;img align="center" src="http://www.rsc.org/ejga/NR/2010/b9nr00160c-ga.gif"/&gt;
	&lt;/p&gt;Rongchao Jin &lt;br/&gt;
(Review from Nanoscale)&lt;br/&gt;
Rongchao Jin, Nanoscale, 2010, DOI: 10.1039/b9nr00160c&lt;br/&gt;
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		<dc:title>Quantum sized, thiolate-protected gold nanoclusters</dc:title>
		<dc:creator>Rongchao Jin</dc:creator>
		<dc:identifier>10.1039/b9nr00160c</dc:identifier>
		<dc:source>Nanoscale, 2010, DOI: 10.1039/b9nr00160c</dc:source>
		<dc:format>html/pdf</dc:format>
		<dc:date>2009-12-08</dc:date>
		<dc:publisher>The Royal Society of Chemistry</dc:publisher>
		<dc:rights>Copyright (c) 2010 The Royal Society of Chemistry</dc:rights>
		<dc:identifier>DOI 10.1039/b9nr00160c</dc:identifier>
	</item>
	<item rdf:about="http://xlink.rsc.org/?DOI=b9nr00287a&amp;RSS=1"><title>Nanoparticle stability from the nano to the meso interval</title>
		<link>http://xlink.rsc.org/?DOI=b9nr00287a&amp;RSS=1</link>
		<description>In this paper we review a number of the mechanisms proposed in the literature that allow the stabilization of nanoparticles.</description><content:encoded>&lt;p&gt;&lt;img align="center" src="http://www.rsc.org/ejga/NR/2010/b9nr00287a-ga.gif"/&gt;
	&lt;/p&gt;Alvaro Mayoral, Hector Barron, Ruben Estrada-Salas, Alma Vazquez-Duran, Miguel Jose-Yacaman &lt;br/&gt;
(Review from Nanoscale)&lt;br/&gt;
Alvaro Mayoral, Nanoscale, 2010, DOI: 10.1039/b9nr00287a&lt;br/&gt;
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		<dc:title>Nanoparticle stability from the nano to the meso interval</dc:title>
		<dc:creator>Alvaro Mayoral</dc:creator>
		<dc:creator>Hector Barron </dc:creator><dc:creator>Ruben Estrada-Salas </dc:creator><dc:creator>Alma Vazquez-Duran </dc:creator><dc:creator>Miguel Jose-Yacaman </dc:creator><dc:identifier>10.1039/b9nr00287a</dc:identifier>
		<dc:source>Nanoscale, 2010, DOI: 10.1039/b9nr00287a</dc:source>
		<dc:format>html/pdf</dc:format>
		<dc:date>2009-12-07</dc:date>
		<dc:publisher>The Royal Society of Chemistry</dc:publisher>
		<dc:rights>Copyright (c) 2010 The Royal Society of Chemistry</dc:rights>
		<dc:identifier>DOI 10.1039/b9nr00287a</dc:identifier>
	</item>
	<item rdf:about="http://xlink.rsc.org/?DOI=b9nr00248k&amp;RSS=1"><title>Controlled ionic condensation at the surface of a native extremophile membrane</title>
		<link>http://xlink.rsc.org/?DOI=b9nr00248k&amp;RSS=1</link>
		<description>We investigate ionic effects at the surface of a highly charged extremophile membrane assembled into a 2D crystal. Using amplitude-modulation atomic force microscopy in solution, we obtained sub-molecular resolution images of ion-induced surface restructuring of the membrane.</description><content:encoded>&lt;p&gt;&lt;img align="center" src="http://www.rsc.org/ejga/NR/2010/b9nr00248k-ga.gif"/&gt;
	&lt;/p&gt;Sonia Antoranz Contera, Kislon Voitchovsky, John F. Ryan &lt;br/&gt;
(Paper from Nanoscale)&lt;br/&gt;
Sonia Antoranz Contera, Nanoscale, 2010, DOI: 10.1039/b9nr00248k&lt;br/&gt;
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		<dc:title>Controlled ionic condensation at the surface of a native extremophile membrane</dc:title>
		<dc:creator>Sonia Antoranz Contera</dc:creator>
		<dc:creator>Kislon Voitchovsky </dc:creator><dc:creator>John F. Ryan </dc:creator><dc:identifier>10.1039/b9nr00248k</dc:identifier>
		<dc:source>Nanoscale, 2010, DOI: 10.1039/b9nr00248k</dc:source>
		<dc:format>html/pdf</dc:format>
		<dc:date>2009-12-04</dc:date>
		<dc:publisher>The Royal Society of Chemistry</dc:publisher>
		<dc:rights>Copyright (c) 2010 The Royal Society of Chemistry</dc:rights>
		<dc:identifier>DOI 10.1039/b9nr00248k</dc:identifier>
	</item>
	<item rdf:about="http://xlink.rsc.org/?DOI=b9nr00131j&amp;RSS=1"><title>TiO2 nanotubes and their application in dye-sensitized solar cells</title>
		<link>http://xlink.rsc.org/?DOI=b9nr00131j&amp;RSS=1</link>
		<description>The present article reviews the current status of using TiO2 nanotubes in Gratzel-type, dye-sensitized solar cells and extends the overview with the latest results and findings.</description><content:encoded>&lt;p&gt;&lt;img align="center" src="http://www.rsc.org/ejga/NR/2010/b9nr00131j-ga.gif"/&gt;
	&lt;/p&gt;Poulomi Roy, Doohun Kim, Kiyoung Lee, Erdmann Spiecker, Patrik Schmuki &lt;br/&gt;
(Feature Article from Nanoscale)&lt;br/&gt;
Poulomi Roy, Nanoscale, 2010, DOI: 10.1039/b9nr00131j&lt;br/&gt;
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		<dc:title>TiO2 nanotubes and their application in dye-sensitized solar cells</dc:title>
		<dc:creator>Poulomi Roy</dc:creator>
		<dc:creator>Doohun Kim </dc:creator><dc:creator>Kiyoung Lee </dc:creator><dc:creator>Erdmann Spiecker </dc:creator><dc:creator>Patrik Schmuki </dc:creator><dc:identifier>10.1039/b9nr00131j</dc:identifier>
		<dc:source>Nanoscale, 2010, DOI: 10.1039/b9nr00131j</dc:source>
		<dc:format>html/pdf</dc:format>
		<dc:date>2009-12-04</dc:date>
		<dc:publisher>The Royal Society of Chemistry</dc:publisher>
		<dc:rights>Copyright (c) 2010 The Royal Society of Chemistry</dc:rights>
		<dc:identifier>DOI 10.1039/b9nr00131j</dc:identifier>
	</item>
	<item rdf:about="http://xlink.rsc.org/?DOI=b9nr00326f&amp;RSS=1"><title>Local structure relaxation, quantum trap depression, and valence charge polarization induced by the shorter-and-stronger bonds between under-coordinated atoms in gold nanostructures</title>
		<link>http://xlink.rsc.org/?DOI=b9nr00326f&amp;RSS=1</link>
		<description>Atomic under-coordination has a revolutionary impact on the local bond length, bond energy, interatomic potential, bonding charge quantum trapping and non-bonding electron polarization, and is responsible for the catalytic enhancement, conductor-insulator transition, magnetic presence etc.</description><content:encoded>&lt;p&gt;&lt;img align="center" src="http://www.rsc.org/ejga/NR/2010/b9nr00326f-ga.gif"/&gt;
	&lt;/p&gt;Xi Zhang, Jer-lai Kuo, Mingxia Gu, Xiaofeng Fan, Ping Bai, Qing-Gong Song, Chang Q. Sun &lt;br/&gt;
(Paper from Nanoscale)&lt;br/&gt;
Xi Zhang, Nanoscale, 2010, DOI: 10.1039/b9nr00326f&lt;br/&gt;
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&lt;br/&gt;The content of this RSS Feed (c) The Royal Society of Chemistry</content:encoded>
		<dc:title>Local structure relaxation, quantum trap depression, and valence charge polarization induced by the shorter-and-stronger bonds between under-coordinated atoms in gold nanostructures</dc:title>
		<dc:creator>Xi Zhang</dc:creator>
		<dc:creator>Jer-lai Kuo </dc:creator><dc:creator>Mingxia Gu </dc:creator><dc:creator>Xiaofeng Fan </dc:creator><dc:creator>Ping Bai </dc:creator><dc:creator>Qing-Gong Song </dc:creator><dc:creator>Chang Q. Sun </dc:creator><dc:identifier>10.1039/b9nr00326f</dc:identifier>
		<dc:source>Nanoscale, 2010, DOI: 10.1039/b9nr00326f</dc:source>
		<dc:format>html/pdf</dc:format>
		<dc:date>2009-12-02</dc:date>
		<dc:publisher>The Royal Society of Chemistry</dc:publisher>
		<dc:rights>Copyright (c) 2010 The Royal Society of Chemistry</dc:rights>
		<dc:identifier>DOI 10.1039/b9nr00326f</dc:identifier>
	</item>
	<item rdf:about="http://xlink.rsc.org/?DOI=b9nr00192a&amp;RSS=1"><title>Small organic molecule templating synthesis of organic-inorganic hybrid materials: their nanostructures and properties</title>
		<link>http://xlink.rsc.org/?DOI=b9nr00192a&amp;RSS=1</link>
		<description>In this review, we highlight recent advances in using small organic molecules as the templates for the synthesis of organic-inorganic hybrid nanomaterials with interesting properties. Specifically, according to the size and scale of the inorganic building blocks, these organic-inorganic hybrid materials can be divided into molecular scale and nanoscale hybrid materials.</description><content:encoded>&lt;p&gt;&lt;img align="center" src="http://www.rsc.org/ejga/NR/2010/b9nr00192a-ga.gif"/&gt;
	&lt;/p&gt;Hong-Bin Yao, Min-Rui Gao, Shu-Hong Yu &lt;br/&gt;
(Review from Nanoscale)&lt;br/&gt;
Hong-Bin Yao, Nanoscale, 2010, DOI: 10.1039/b9nr00192a&lt;br/&gt;
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		<dc:title>Small organic molecule templating synthesis of organic-inorganic hybrid materials: their nanostructures and properties</dc:title>
		<dc:creator>Hong-Bin Yao</dc:creator>
		<dc:creator>Min-Rui Gao </dc:creator><dc:creator>Shu-Hong Yu </dc:creator><dc:identifier>10.1039/b9nr00192a</dc:identifier>
		<dc:source>Nanoscale, 2010, DOI: 10.1039/b9nr00192a</dc:source>
		<dc:format>html/pdf</dc:format>
		<dc:date>2009-12-01</dc:date>
		<dc:publisher>The Royal Society of Chemistry</dc:publisher>
		<dc:rights>Copyright (c) 2010 The Royal Society of Chemistry</dc:rights>
		<dc:identifier>DOI 10.1039/b9nr00192a</dc:identifier>
	</item>
	<item rdf:about="http://xlink.rsc.org/?DOI=b9nr00212j&amp;RSS=1"><title>Arranging junctions for nanofibers</title>
		<link>http://xlink.rsc.org/?DOI=b9nr00212j&amp;RSS=1</link>
		<description>A simple yet effective method that uses epoxy as an additive was developed to arrange junctions between nanofibers.</description><content:encoded>&lt;p&gt;&lt;img align="center" src="http://www.rsc.org/ejga/NR/2010/b9nr00212j-ga.gif"/&gt;
	&lt;/p&gt;Mengmeng Li, Dayong Yang, Yunze Long, Hongwei Ma &lt;br/&gt;
(Communication from Nanoscale)&lt;br/&gt;
Mengmeng Li, Nanoscale, 2010, DOI: 10.1039/b9nr00212j&lt;br/&gt;
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		<dc:title>Arranging junctions for nanofibers</dc:title>
		<dc:creator>Mengmeng Li</dc:creator>
		<dc:creator>Dayong Yang </dc:creator><dc:creator>Yunze Long </dc:creator><dc:creator>Hongwei Ma </dc:creator><dc:identifier>10.1039/b9nr00212j</dc:identifier>
		<dc:source>Nanoscale, 2010, DOI: 10.1039/b9nr00212j</dc:source>
		<dc:format>html/pdf</dc:format>
		<dc:date>2009-11-25</dc:date>
		<dc:publisher>The Royal Society of Chemistry</dc:publisher>
		<dc:rights>Copyright (c) 2010 The Royal Society of Chemistry</dc:rights>
		<dc:identifier>DOI 10.1039/b9nr00212j</dc:identifier>
	</item>
	<item rdf:about="http://xlink.rsc.org/?DOI=b9nr00268e&amp;RSS=1"><title>Wall-to-wall stress induced in (6,5) semiconducting nanotubes by encapsulation in metallic outer tubes of different diameters: A resonance Raman study of individual C60-derived double-wall carbon nanotubes</title>
		<link>http://xlink.rsc.org/?DOI=b9nr00268e&amp;RSS=1</link>
		<description>We measure the Raman spectra of the inner and outer tubes of eleven individual C60-derived DWNTs and investigate the effects of decreasing wall-to-wall distances.</description><content:encoded>&lt;p&gt;&lt;img align="center" src="http://www.rsc.org/ejga/NR/2010/b9nr00268e-ga.gif"/&gt;
	&lt;/p&gt;Federico Villalpando-Paez, Hiroyuki Muramatsu, Yoong Ahm Kim, Hootan Farhat, Morinobu Endo, Mauricio Terrones, Mildred S. Dresselhaus &lt;br/&gt;
(Paper from Nanoscale)&lt;br/&gt;
Federico Villalpando-Paez, Nanoscale, 2010, DOI: 10.1039/b9nr00268e&lt;br/&gt;
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&lt;br/&gt;The content of this RSS Feed (c) The Royal Society of Chemistry</content:encoded>
		<dc:title>Wall-to-wall stress induced in (6,5) semiconducting nanotubes by encapsulation in metallic outer tubes of different diameters: A resonance Raman study of individual C60-derived double-wall carbon nanotubes</dc:title>
		<dc:creator>Federico Villalpando-Paez</dc:creator>
		<dc:creator>Hiroyuki Muramatsu </dc:creator><dc:creator>Yoong Ahm Kim </dc:creator><dc:creator>Hootan Farhat </dc:creator><dc:creator>Morinobu Endo </dc:creator><dc:creator>Mauricio Terrones </dc:creator><dc:creator>Mildred S. Dresselhaus </dc:creator><dc:identifier>10.1039/b9nr00268e</dc:identifier>
		<dc:source>Nanoscale, 2010, DOI: 10.1039/b9nr00268e</dc:source>
		<dc:format>html/pdf</dc:format>
		<dc:date>2009-11-24</dc:date>
		<dc:publisher>The Royal Society of Chemistry</dc:publisher>
		<dc:rights>Copyright (c) 2010 The Royal Society of Chemistry</dc:rights>
		<dc:identifier>DOI 10.1039/b9nr00268e</dc:identifier>
	</item>
	<item rdf:about="http://xlink.rsc.org/?DOI=b9nr00246d&amp;RSS=1"><title>DNA origami: Fold, stick, and beyond</title>
		<link>http://xlink.rsc.org/?DOI=b9nr00246d&amp;RSS=1</link>
		<description>In this review, we briefly look through the basic designs and applications of DNA origami and discuss the future of this technique.</description><content:encoded>&lt;p&gt;&lt;img align="center" src="http://www.rsc.org/ejga/NR/2010/b9nr00246d-ga.gif"/&gt;
	&lt;/p&gt;Akinori Kuzuya, Makoto Komiyama &lt;br/&gt;
(Review from Nanoscale)&lt;br/&gt;
Akinori Kuzuya, Nanoscale, 2010, DOI: 10.1039/b9nr00246d&lt;br/&gt;
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&lt;br/&gt;The content of this RSS Feed (c) The Royal Society of Chemistry</content:encoded>
		<dc:title>DNA origami: Fold, stick, and beyond</dc:title>
		<dc:creator>Akinori Kuzuya</dc:creator>
		<dc:creator>Makoto Komiyama </dc:creator><dc:identifier>10.1039/b9nr00246d</dc:identifier>
		<dc:source>Nanoscale, 2010, DOI: 10.1039/b9nr00246d</dc:source>
		<dc:format>html/pdf</dc:format>
		<dc:date>2009-11-24</dc:date>
		<dc:publisher>The Royal Society of Chemistry</dc:publisher>
		<dc:rights>Copyright (c) 2010 The Royal Society of Chemistry</dc:rights>
		<dc:identifier>DOI 10.1039/b9nr00246d</dc:identifier>
	</item>
	<item rdf:about="http://xlink.rsc.org/?DOI=b9nr00222g&amp;RSS=1"><title>Surface-initiated graft polymerization on multiwalled carbon nanotubes pretreated by corona discharge at atmospheric pressure</title>
		<link>http://xlink.rsc.org/?DOI=b9nr00222g&amp;RSS=1</link>
		<description>A novel method for grafting polymers onto multi-walled carbon nanotubes is reported. Peroxide is attached to the surface of the nanotubes after treatment with a corona discharge at atmospheric pressure and exposure in air.</description><content:encoded>&lt;p&gt;&lt;img align="center" src="http://www.rsc.org/ejga/NR/2010/b9nr00222g-ga.gif"/&gt;
	&lt;/p&gt;Lihua Xu, Zhengping Fang, Ping'an Song, Mao Peng &lt;br/&gt;
(Communication from Nanoscale)&lt;br/&gt;
Lihua Xu, Nanoscale, 2010, DOI: 10.1039/b9nr00222g&lt;br/&gt;
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&lt;br/&gt;The content of this RSS Feed (c) The Royal Society of Chemistry</content:encoded>
		<dc:title>Surface-initiated graft polymerization on multiwalled carbon nanotubes pretreated by corona discharge at atmospheric pressure</dc:title>
		<dc:creator>Lihua Xu</dc:creator>
		<dc:creator>Zhengping Fang </dc:creator><dc:creator>Ping'an Song </dc:creator><dc:creator>Mao Peng </dc:creator><dc:identifier>10.1039/b9nr00222g</dc:identifier>
		<dc:source>Nanoscale, 2010, DOI: 10.1039/b9nr00222g</dc:source>
		<dc:format>html/pdf</dc:format>
		<dc:date>2009-11-24</dc:date>
		<dc:publisher>The Royal Society of Chemistry</dc:publisher>
		<dc:rights>Copyright (c) 2010 The Royal Society of Chemistry</dc:rights>
		<dc:identifier>DOI 10.1039/b9nr00222g</dc:identifier>
	</item>
	<item rdf:about="http://xlink.rsc.org/?DOI=b9nr00245f&amp;RSS=1"><title>Biocidal properties of metal oxide nanoparticles and their halogen adducts</title>
		<link>http://xlink.rsc.org/?DOI=b9nr00245f&amp;RSS=1</link>
		<description>Nanosized metal oxide halogen adducts have been used as reactive materials against vegetative cells, such as Escherichia coli as well as bacterial endospores, including Bacillus subtilis and Bacillus anthracis.</description><content:encoded>&lt;p&gt;&lt;img align="center" src="http://www.rsc.org/ejga/NR/2010/b9nr00245f-ga.gif"/&gt;
	&lt;/p&gt;Johanna A. Haggstrom, Kenneth J. Klabunde, George L. Marchin &lt;br/&gt;
(Paper from Nanoscale)&lt;br/&gt;
Johanna A. Haggstrom, Nanoscale, 2010, DOI: 10.1039/b9nr00245f&lt;br/&gt;
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&lt;br/&gt;The content of this RSS Feed (c) The Royal Society of Chemistry</content:encoded>
		<dc:title>Biocidal properties of metal oxide nanoparticles and their halogen adducts</dc:title>
		<dc:creator>Johanna A. Haggstrom</dc:creator>
		<dc:creator>Kenneth J. Klabunde </dc:creator><dc:creator>George L. Marchin </dc:creator><dc:identifier>10.1039/b9nr00245f</dc:identifier>
		<dc:source>Nanoscale, 2010, DOI: 10.1039/b9nr00245f</dc:source>
		<dc:format>html/pdf</dc:format>
		<dc:date>2009-11-20</dc:date>
		<dc:publisher>The Royal Society of Chemistry</dc:publisher>
		<dc:rights>Copyright (c) 2010 The Royal Society of Chemistry</dc:rights>
		<dc:identifier>DOI 10.1039/b9nr00245f</dc:identifier>
	</item>
	<item rdf:about="http://xlink.rsc.org/?DOI=b9nr00306a&amp;RSS=1"><title>Structural and electronic properties of carbon nanotube-reinforced epoxy resins</title>
		<link>http://xlink.rsc.org/?DOI=b9nr00306a&amp;RSS=1</link>
		<description>Nanocomposites of cured epoxy resin reinforced by single-walled carbon nanotubes exhibit a plethora of interesting behaviors at the molecular level.</description><content:encoded>&lt;p&gt;&lt;img align="center" src="http://www.rsc.org/ejga/NR/2010/b9nr00306a-ga.gif"/&gt;
	&lt;/p&gt;Kelvin Suggs, Xiao-Qian Wang &lt;br/&gt;
(Communication from Nanoscale)&lt;br/&gt;
Kelvin Suggs, Nanoscale, 2010, DOI: 10.1039/b9nr00306a&lt;br/&gt;
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&lt;br/&gt;The content of this RSS Feed (c) The Royal Society of Chemistry</content:encoded>
		<dc:title>Structural and electronic properties of carbon nanotube-reinforced epoxy resins</dc:title>
		<dc:creator>Kelvin Suggs</dc:creator>
		<dc:creator>Xiao-Qian Wang </dc:creator><dc:identifier>10.1039/b9nr00306a</dc:identifier>
		<dc:source>Nanoscale, 2010, DOI: 10.1039/b9nr00306a</dc:source>
		<dc:format>html/pdf</dc:format>
		<dc:date>2009-11-20</dc:date>
		<dc:publisher>The Royal Society of Chemistry</dc:publisher>
		<dc:rights>Copyright (c) 2010 The Royal Society of Chemistry</dc:rights>
		<dc:identifier>DOI 10.1039/b9nr00306a</dc:identifier>
	</item>
	<item rdf:about="http://xlink.rsc.org/?DOI=b9nr00225a&amp;RSS=1"><title>The effects of substitution of Cr for Mo on the mechanical properties of nanocrystalline Mo5Si3 films</title>
		<link>http://xlink.rsc.org/?DOI=b9nr00225a&amp;RSS=1</link>
		<description>A series of nanocrystalline (MoxCr1-x)5Si3 films has been prepared on Ti-6A1-4V alloy substrates, and the effect of substitution of Cr for Mo on their hardness, elastic modulus and plastic deformability was investigated.</description><content:encoded>&lt;p&gt;&lt;img align="center" src="http://www.rsc.org/ejga/NR/2010/b9nr00225a-ga.gif"/&gt;
	&lt;/p&gt;Jiang Xu, Yue Wang, Shuyun Jiang &lt;br/&gt;
(Paper from Nanoscale)&lt;br/&gt;
Jiang Xu, Nanoscale, 2010, DOI: 10.1039/b9nr00225a&lt;br/&gt;
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&lt;br/&gt;The content of this RSS Feed (c) The Royal Society of Chemistry</content:encoded>
		<dc:title>The effects of substitution of Cr for Mo on the mechanical properties of nanocrystalline Mo5Si3 films</dc:title>
		<dc:creator>Jiang Xu</dc:creator>
		<dc:creator>Yue Wang </dc:creator><dc:creator>Shuyun Jiang </dc:creator><dc:identifier>10.1039/b9nr00225a</dc:identifier>
		<dc:source>Nanoscale, 2010, DOI: 10.1039/b9nr00225a</dc:source>
		<dc:format>html/pdf</dc:format>
		<dc:date>2009-11-19</dc:date>
		<dc:publisher>The Royal Society of Chemistry</dc:publisher>
		<dc:rights>Copyright (c) 2010 The Royal Society of Chemistry</dc:rights>
		<dc:identifier>DOI 10.1039/b9nr00225a</dc:identifier>
	</item>
	<item rdf:about="http://xlink.rsc.org/?DOI=b9nr00236g&amp;RSS=1"><title>Intracellular imaging of HeLa cells by non-functionalized NaYF4:Er3+, Yb3+ upconverting nanoparticles</title>
		<link>http://xlink.rsc.org/?DOI=b9nr00236g&amp;RSS=1</link>
		<description>We report on the efficient incorporation of non-functionalized NaYF4:Er3+, Yb3+ nanoparticles inside HeLa live cancer cells by direct endocytosis.</description><content:encoded>&lt;p&gt;&lt;img align="center" src="http://www.rsc.org/ejga/NR/2010/b9nr00236g-ga.gif"/&gt;
	&lt;/p&gt;Fiorenzo Vetrone, Rafik Naccache, Angeles Juarranz de la Fuente, Francisco Sanz-Rodriguez, Alfonso Blazquez-Castro, Emma Martin Rodriguez, Daniel Jaque, Jose Garcia Sole, John A. Capobianco &lt;br/&gt;
(Communication from Nanoscale)&lt;br/&gt;
Fiorenzo Vetrone, Nanoscale, 2010, DOI: 10.1039/b9nr00236g&lt;br/&gt;
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&lt;br/&gt;The content of this RSS Feed (c) The Royal Society of Chemistry</content:encoded>
		<dc:title>Intracellular imaging of HeLa cells by non-functionalized NaYF4:Er3+, Yb3+ upconverting nanoparticles</dc:title>
		<dc:creator>Fiorenzo Vetrone</dc:creator>
		<dc:creator>Rafik Naccache </dc:creator><dc:creator>Angeles Juarranz de la Fuente </dc:creator><dc:creator>Francisco Sanz-Rodriguez </dc:creator><dc:creator>Alfonso Blazquez-Castro </dc:creator><dc:creator>Emma Martin Rodriguez </dc:creator><dc:creator>Daniel Jaque </dc:creator><dc:creator>Jose Garcia Sole </dc:creator><dc:creator>John A. Capobianco </dc:creator><dc:identifier>10.1039/b9nr00236g</dc:identifier>
		<dc:source>Nanoscale, 2010, DOI: 10.1039/b9nr00236g</dc:source>
		<dc:format>html/pdf</dc:format>
		<dc:date>2009-11-17</dc:date>
		<dc:publisher>The Royal Society of Chemistry</dc:publisher>
		<dc:rights>Copyright (c) 2010 The Royal Society of Chemistry</dc:rights>
		<dc:identifier>DOI 10.1039/b9nr00236g</dc:identifier>
	</item>
	<item rdf:about="http://xlink.rsc.org/?DOI=b9nr00240e&amp;RSS=1"><title>Ag nanoparticle sheet as a marker of lateral remote photocatalytic reactions</title>
		<link>http://xlink.rsc.org/?DOI=b9nr00240e&amp;RSS=1</link>
		<description>The lateral remote photocatalytic activity of TiO2 nanotubes fabricated by anodic oxidation, was characterized by use of a 'silver nanosheet' as a marker.</description><content:encoded>&lt;p&gt;&lt;img align="center" src="http://www.rsc.org/ejga/NR/2010/b9nr00240e-ga.gif"/&gt;
	&lt;/p&gt;Takeshi Nagahiro, Kenichi Ishibashi, Yasuo Kimura, Michio Niwano, Tomohiro Hayashi, Yasuhiro Ikezoe, Masahiko Hara, Tetsu Tatsuma, Kaoru Tamada &lt;br/&gt;
(Paper from Nanoscale)&lt;br/&gt;
Takeshi Nagahiro, Nanoscale, 2010, DOI: 10.1039/b9nr00240e&lt;br/&gt;
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&lt;br/&gt;The content of this RSS Feed (c) The Royal Society of Chemistry</content:encoded>
		<dc:title>Ag nanoparticle sheet as a marker of lateral remote photocatalytic reactions</dc:title>
		<dc:creator>Takeshi Nagahiro</dc:creator>
		<dc:creator>Kenichi Ishibashi </dc:creator><dc:creator>Yasuo Kimura </dc:creator><dc:creator>Michio Niwano </dc:creator><dc:creator>Tomohiro Hayashi </dc:creator><dc:creator>Yasuhiro Ikezoe </dc:creator><dc:creator>Masahiko Hara </dc:creator><dc:creator>Tetsu Tatsuma </dc:creator><dc:creator>Kaoru Tamada </dc:creator><dc:identifier>10.1039/b9nr00240e</dc:identifier>
		<dc:source>Nanoscale, 2010, DOI: 10.1039/b9nr00240e</dc:source>
		<dc:format>html/pdf</dc:format>
		<dc:date>2009-11-17</dc:date>
		<dc:publisher>The Royal Society of Chemistry</dc:publisher>
		<dc:rights>Copyright (c) 2010 The Royal Society of Chemistry</dc:rights>
		<dc:identifier>DOI 10.1039/b9nr00240e</dc:identifier>
	</item>
	<item rdf:about="http://xlink.rsc.org/?DOI=b9nr00172g&amp;RSS=1"><title>Rapid detection of trace amounts of surfactants using nanoparticles in fluorometric assays</title>
		<link>http://xlink.rsc.org/?DOI=b9nr00172g&amp;RSS=1</link>
		<description>Rapid microtiter assays utilizing the time-resolved fluorescence resonance energy transfer or quenching of dye-labeled proteins adsorbed onto polystyrene or maghemite nanoparticles have been developed for the detection of surfactants.</description><content:encoded>&lt;p&gt;&lt;img align="center" src="http://www.rsc.org/ejga/NR/2010/b9nr00172g-ga.gif"/&gt;
	&lt;/p&gt;Harri Harma, Susana Laakso, Sari Pihlasalo, Pekka Hanninen, Bertrand Faure, Subhasis Rana, Lennart Bergstrom &lt;br/&gt;
(Communication from Nanoscale)&lt;br/&gt;
Harri Harma, Nanoscale, 2010, DOI: 10.1039/b9nr00172g&lt;br/&gt;
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&lt;br/&gt;&lt;a href='http://obofoundry.org/' target="'_BLANK'"&gt;Ontology Terms:&lt;/a&gt;
	sulfates; hydroxy group; surfactant; buffer; detergent; nonionic surfactant; dye; protein; carboxy group; nanoparticle; pharmaceutical; capillary electrophoresis; gas chromatography; high-performance liquid chromatography; leaching; phosphate buffer; scanning electron micrograph; transmission electron micrograph; iron oxide; fluorescence detection; fluorescence resonance energy transfer; nanocrystal; electrode; emulsion polymerisation; poly(styrene); Triton X-100
	&lt;br/&gt;&lt;a href='http://www.projectprospect.org' target="'_BLANK'"&gt;Primary Compounds:&lt;/a&gt;
  		
		&lt;div style='border-width: 1px;'&gt;
  		&lt;p&gt;&lt;img src='http://www.rsc.org/delivery/_ArticleLinking/img.asp?id=33520' border='0' alt=''/&gt;&lt;/p&gt;
  		
		&lt;/div&gt;
&lt;br/&gt;The content of this RSS Feed (c) The Royal Society of Chemistry</content:encoded>
		<dc:title>Rapid detection of trace amounts of surfactants using nanoparticles in fluorometric assays</dc:title>
		<dc:creator>Harri Harma</dc:creator>
		<dc:creator>Susana Laakso </dc:creator><dc:creator>Sari Pihlasalo </dc:creator><dc:creator>Pekka Hanninen </dc:creator><dc:creator>Bertrand Faure </dc:creator><dc:creator>Subhasis Rana </dc:creator><dc:creator>Lennart Bergstrom </dc:creator><dc:identifier>10.1039/b9nr00172g</dc:identifier>
		<dc:source>Nanoscale, 2010, DOI: 10.1039/b9nr00172g</dc:source>
		<dc:format>html/pdf</dc:format>
		<dc:date>2009-11-16</dc:date>
		<dc:publisher>The Royal Society of Chemistry</dc:publisher>
		<dc:rights>Copyright (c) 2010 The Royal Society of Chemistry</dc:rights>
		<dc:identifier>DOI 10.1039/b9nr00172g</dc:identifier>
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				<rdf:li><content:item rdf:about="http://purl.org/obo/owl/CHEBI#CHEBI_52529"/>
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				<rdf:li><content:item rdf:about="http://www.rsc.org/ontologies/CMO_OWL.owl#CMO_0002344"/>
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				<rdf:li><content:item rdf:about="http://www.rsc.org/ontologies/CMO_OWL.owl#CMO_0002550"/>
				</rdf:li>
				<rdf:li><content:item rdf:about="http://purl.org/obo/owl/CHEBI#CHEBI_53276"/>
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				<rdf:li><content:item rdf:about="http://purl.org/obo/owl/CHEBI#CHEBI_9750"/>
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	</item>
	<item rdf:about="http://xlink.rsc.org/?DOI=b9nr00213h&amp;RSS=1"><title>Controlling the electrodeposition of mesoporous metals for nanoplasmonics</title>
		<link>http://xlink.rsc.org/?DOI=b9nr00213h&amp;RSS=1</link>
		<description>We have investigated the mechanism for formation of large-scale ordered structures of copper and silver by direct electrodeposition through colloidal crystal templates.</description><content:encoded>&lt;p&gt;&lt;img align="center" src="http://www.rsc.org/ejga/NR/2009/b9nr00213h-ga.gif"/&gt;
	&lt;/p&gt;Rong Zhu, Martyn McLachlan, Steve Reyntjens, Farid Tariq, Mary P. Ryan, David W. McComb &lt;br/&gt;
(Paper from Nanoscale)&lt;br/&gt;
Rong Zhu, Nanoscale, 2009, 1, 355 &lt;br/&gt;DOI: 10.1039/b9nr00213h
&lt;br/&gt;&lt;a href='http://obofoundry.org/' target="'_BLANK'"&gt;Ontology Terms:&lt;/a&gt;
	nanoparticle; scanning electron micrograph; auxiliary electrode; electrode; indicator electrode; reference electrode; poly(styrene); metal cation; oxide; saturated mercury sulfate electrode; colloidal crystal templating; protecting group; reflectance spectrum; deposition; electrochemical deposition; evaporation-induced self-assembly; grinding; infiltration; sol--gel method; oxidation; field-emission scanning electron micrograph; purification
	&lt;br/&gt;&lt;a href='http://www.projectprospect.org' target="'_BLANK'"&gt;Primary Compounds:&lt;/a&gt;
  		
		&lt;div style='border-width: 1px;'&gt;
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&lt;br/&gt;The content of this RSS Feed (c) The Royal Society of Chemistry</content:encoded>
		<dc:title>Controlling the electrodeposition of mesoporous metals for nanoplasmonics</dc:title>
		<dc:creator>Rong Zhu</dc:creator>
		<dc:creator>Martyn McLachlan </dc:creator><dc:creator>Steve Reyntjens </dc:creator><dc:creator>Farid Tariq </dc:creator><dc:creator>Mary P. Ryan </dc:creator><dc:creator>David W. McComb </dc:creator><dc:identifier>10.1039/b9nr00213h</dc:identifier>
		<dc:source>Nanoscale, 2009, 1, 355 DOI: 10.1039/b9nr00213h</dc:source>
		<dc:format>html/pdf</dc:format>
		<dc:date>2009-11-13</dc:date>
		<dc:publisher>The Royal Society of Chemistry</dc:publisher>
		<dc:rights>Copyright (c) 2010 The Royal Society of Chemistry</dc:rights>
		<dc:identifier>DOI 10.1039/b9nr00213h</dc:identifier>
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