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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>
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		<dc:publisher>The Royal Society of Chemistry</dc:publisher>
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		<dc:rights>Copyright (c) 2010 The Royal Society of Chemistry</dc:rights>
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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=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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		<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;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>
	</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, DOI: 10.1039/b9nr00213h&lt;br/&gt;
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&lt;br/&gt;&lt;a href='http://obofoundry.org/' target="'_BLANK'"&gt;Ontology Terms:&lt;/a&gt;
	metal cation; oxide; nanoparticle; protecting group; reflectance spectrum; deposition; electrochemical deposition; evaporation-induced self-assembly; grinding; infiltration; sol--gel method; scanning electron micrograph; oxidation; field-emission scanning electron micrograph; purification; auxiliary electrode; electrode; indicator electrode; reference electrode; poly(styrene); colloidal crystal templating; saturated mercury sulfate electrode
	&lt;br/&gt;&lt;a href='http://www.projectprospect.org' target="'_BLANK'"&gt;Primary Compounds:&lt;/a&gt;
  		
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  		&lt;p&gt;&lt;img src='http://www.rsc.org/delivery/_ArticleLinking/img.asp?id=1181' border='0' alt=''/&gt;&lt;/p&gt;
  		
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		&lt;/div&gt;
&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, 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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	<item rdf:about="http://xlink.rsc.org/?DOI=b9nr00214f&amp;RSS=1"><title>Ab initio modeling of TiO2 nanotubes</title>
		<link>http://xlink.rsc.org/?DOI=b9nr00214f&amp;RSS=1</link>
		<description>TiO2 nanotubes constructed from a lepidocrocite-like TiO2 layer were investigated with ab initio methods employing the periodic CRYSTAL code. The dependence of strain energies, structural and electronic properties on the tube diameter was investigated in the 18-57 A range.</description><content:encoded>&lt;p&gt;&lt;img align="center" src="http://www.rsc.org/ejga/NR/2010/b9nr00214f-ga.gif"/&gt;
	&lt;/p&gt;Denes Szieberth, Anna Maria Ferrari, Yves Noel, Matteo Ferrabone &lt;br/&gt;
(Paper from Nanoscale)&lt;br/&gt;
Denes Szieberth, Nanoscale, 2010, DOI: 10.1039/b9nr00214f&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>Ab initio modeling of TiO2 nanotubes</dc:title>
		<dc:creator>Denes Szieberth</dc:creator>
		<dc:creator>Anna Maria Ferrari </dc:creator><dc:creator>Yves Noel </dc:creator><dc:creator>Matteo Ferrabone </dc:creator><dc:identifier>10.1039/b9nr00214f</dc:identifier>
		<dc:source>Nanoscale, 2010, DOI: 10.1039/b9nr00214f</dc:source>
		<dc:format>html/pdf</dc:format>
		<dc:date>2009-11-11</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/b9nr00214f</dc:identifier>
	</item>
	<item rdf:about="http://xlink.rsc.org/?DOI=b9nr00158a&amp;RSS=1"><title>Bacterial cellulose/TiO2 hybrid nanofibers prepared by the surface hydrolysis method with molecular precision</title>
		<link>http://xlink.rsc.org/?DOI=b9nr00158a&amp;RSS=1</link>
		<description>Bacterial cellulose nanofibers were biosynthesized by Acetobacter xylinum NUST5.2, and displayed a remarkable capability for orienting TiO2 nanoparticle arrays. </description><content:encoded>&lt;p&gt;&lt;img align="center" src="http://www.rsc.org/ejga/NR/2010/b9nr00158a-ga.gif"/&gt;
	&lt;/p&gt;Dongping Sun, Jiazhi Yang, Xin Wang &lt;br/&gt;
(Paper from Nanoscale)&lt;br/&gt;
Dongping Sun, Nanoscale, 2010, DOI: 10.1039/b9nr00158a&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>Bacterial cellulose/TiO2 hybrid nanofibers prepared by the surface hydrolysis method with molecular precision</dc:title>
		<dc:creator>Dongping Sun</dc:creator>
		<dc:creator>Jiazhi Yang </dc:creator><dc:creator>Xin Wang </dc:creator><dc:identifier>10.1039/b9nr00158a</dc:identifier>
		<dc:source>Nanoscale, 2010, DOI: 10.1039/b9nr00158a</dc:source>
		<dc:format>html/pdf</dc:format>
		<dc:date>2009-11-11</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/b9nr00158a</dc:identifier>
	</item>
	<item rdf:about="http://xlink.rsc.org/?DOI=b9nr00226j&amp;RSS=1"><title>Probing diameter-selective solubilisation of carbon nanotubes by reversible cyclic peptides using molecular dynamics simulations</title>
		<link>http://xlink.rsc.org/?DOI=b9nr00226j&amp;RSS=1</link>
		<description>Molecular dynamics simulations are used to explore the encapsulation behaviour of reversible cyclic peptides when adsorbed onto single-walled carbon nanotubes (CNTs) in aqueous solution. Our findings suggest that CNT encapsulation via cyclisation of a single peptide chain is relatively less likely, compared with encapsulation via two-chain complexes.</description><content:encoded>&lt;p&gt;&lt;img align="center" src="http://www.rsc.org/ejga/NR/2010/b9nr00226j-ga.gif"/&gt;
	&lt;/p&gt;S. R. Friling, R. Notman, T. R. Walsh &lt;br/&gt;
(Paper from Nanoscale)&lt;br/&gt;
S. R. Friling, Nanoscale, 2010, DOI: 10.1039/b9nr00226j&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>Probing diameter-selective solubilisation of carbon nanotubes by reversible cyclic peptides using molecular dynamics simulations</dc:title>
		<dc:creator>S. R. Friling</dc:creator>
		<dc:creator>R. Notman </dc:creator><dc:creator>T. R. Walsh </dc:creator><dc:identifier>10.1039/b9nr00226j</dc:identifier>
		<dc:source>Nanoscale, 2010, DOI: 10.1039/b9nr00226j</dc:source>
		<dc:format>html/pdf</dc:format>
		<dc:date>2009-11-06</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/b9nr00226j</dc:identifier>
	</item>
	<item rdf:about="http://xlink.rsc.org/?DOI=b9nr00185a&amp;RSS=1"><title>A new class of boron nitride fibers with tunable properties by combining an electrospinning process and the polymer-derived ceramics route</title>
		<link>http://xlink.rsc.org/?DOI=b9nr00185a&amp;RSS=1</link>
		<description>Novel boron nitride nanofibers have been developed by the thermal conversion of as-electrospun fibers from polyacrylonitrile and poly[B-(methylamino)borazine] blend solutions.</description><content:encoded>&lt;p&gt;&lt;img align="center" src="http://www.rsc.org/ejga/NR/2010/b9nr00185a-ga.gif"/&gt;
	&lt;/p&gt;Vincent Salles, Samuel Bernard, Arnaud Brioude, David Cornu, Philippe Miele &lt;br/&gt;
(Communication from Nanoscale)&lt;br/&gt;
Vincent Salles, Nanoscale, 2010, DOI: 10.1039/b9nr00185a&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>A new class of boron nitride fibers with tunable properties by combining an electrospinning process and the polymer-derived ceramics route</dc:title>
		<dc:creator>Vincent Salles</dc:creator>
		<dc:creator>Samuel Bernard </dc:creator><dc:creator>Arnaud Brioude </dc:creator><dc:creator>David Cornu </dc:creator><dc:creator>Philippe Miele </dc:creator><dc:identifier>10.1039/b9nr00185a</dc:identifier>
		<dc:source>Nanoscale, 2010, DOI: 10.1039/b9nr00185a</dc:source>
		<dc:format>html/pdf</dc:format>
		<dc:date>2009-11-05</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/b9nr00185a</dc:identifier>
	</item>
	<item rdf:about="http://xlink.rsc.org/?DOI=b9nr00211a&amp;RSS=1"><title>Mixed metal nanoparticle assembly and the effect on surface-enhanced Raman scattering</title>
		<link>http://xlink.rsc.org/?DOI=b9nr00211a&amp;RSS=1</link>
		<description>Here, we report the oligonucleotide-templated assembly of a hetero-metal DNA duplex that is monitored by generation of a surface-enhanced Raman scattering signal.</description><content:encoded>&lt;p&gt;&lt;img align="center" src="http://www.rsc.org/ejga/NR/2009/b9nr00211a-ga.gif"/&gt;
	&lt;/p&gt;Fiona McKenzie, Karen Faulds, Duncan Graham &lt;br/&gt;
(Communication from Nanoscale)&lt;br/&gt;
Fiona McKenzie, Nanoscale, 2009, DOI: 10.1039/b9nr00211a&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>Mixed metal nanoparticle assembly and the effect on surface-enhanced Raman scattering</dc:title>
		<dc:creator>Fiona McKenzie</dc:creator>
		<dc:creator>Karen Faulds </dc:creator><dc:creator>Duncan Graham </dc:creator><dc:identifier>10.1039/b9nr00211a</dc:identifier>
		<dc:source>Nanoscale, 2009, DOI: 10.1039/b9nr00211a</dc:source>
		<dc:format>html/pdf</dc:format>
		<dc:date>2009-11-05</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/b9nr00211a</dc:identifier>
	</item>
	<item rdf:about="http://xlink.rsc.org/?DOI=b9nr00125e&amp;RSS=1"><title>Preparation, characterization and applications of low-molecular-weight alginate-oligochitosan nanocapsules</title>
		<link>http://xlink.rsc.org/?DOI=b9nr00125e&amp;RSS=1</link>
		<description>In this work, nanocapsules are made from a type of W/O microemulsion system with low-molecular-weight alginate and oligochitosan. The particles possess excellent biocompatibility and good biodegradability.</description><content:encoded>&lt;p&gt;&lt;img align="center" src="http://www.rsc.org/ejga/NR/2010/b9nr00125e-ga.gif"/&gt;
	&lt;/p&gt;Ting Wang, Nongyue He &lt;br/&gt;
(Paper from Nanoscale)&lt;br/&gt;
Ting Wang, Nanoscale, 2010, DOI: 10.1039/b9nr00125e&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>Preparation, characterization and applications of low-molecular-weight alginate-oligochitosan nanocapsules</dc:title>
		<dc:creator>Ting Wang</dc:creator>
		<dc:creator>Nongyue He </dc:creator><dc:identifier>10.1039/b9nr00125e</dc:identifier>
		<dc:source>Nanoscale, 2010, DOI: 10.1039/b9nr00125e</dc:source>
		<dc:format>html/pdf</dc:format>
		<dc:date>2009-11-04</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/b9nr00125e</dc:identifier>
	</item>
	<item rdf:about="http://xlink.rsc.org/?DOI=b9nr00058e&amp;RSS=1"><title>Ambient spark generation to synthesize carbon-encapsulated metal nanoparticles in continuous aerosol manner</title>
		<link>http://xlink.rsc.org/?DOI=b9nr00058e&amp;RSS=1</link>
		<description>We report the use of spark generation in an inert gas atmosphere to synthesize carbon-encapsulated metal nanoparticles (CEMNs) in a continuous aerosol manner using a metal (nickel, cobalt, iron)-graphite carbon electrode configuration without the use of a vacuum.</description><content:encoded>&lt;p&gt;&lt;img align="center" src="http://www.rsc.org/ejga/NR/2010/b9nr00058e-ga.gif"/&gt;
	&lt;/p&gt;Jeong Hoon Byeon, Jae Hong Park, Ki Young Yoon, Jungho Hwang &lt;br/&gt;
(Communication from Nanoscale)&lt;br/&gt;
Jeong Hoon Byeon, Nanoscale, 2010, DOI: 10.1039/b9nr00058e&lt;br/&gt;
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&lt;br/&gt;&lt;a href='http://obofoundry.org/' target="'_BLANK'"&gt;Ontology Terms:&lt;/a&gt;
	noble gas; hexagonal graphite; graphite; carbon nanotube; multi-walled carbon nanotube; nanoparticle; nanostructure; nanotube; Raman spectroscopy; transmission electron microscopy; transmission high energy electron diffraction; X-ray diffraction; energy-dispersive X-ray emission spectroscopy; inductively-coupled plasma atomic emission spectroscopy; Raman spectrum; X-ray diffraction data; transmission high-energy electron diffraction data; transmission electron microscope; transmission electron microscopy selected area electron diffraction; deposition; evaporation; spark plasma sintering; transmission electron micrograph; micrograph; gas antisolvent technique; energy-dispersive X-ray spectrum; purification; arc-discharge method; electrode; poly(amide); carbon electrode; graphite electrode; scanning mobility particle sizer
&lt;br/&gt;The content of this RSS Feed (c) The Royal Society of Chemistry</content:encoded>
		<dc:title>Ambient spark generation to synthesize carbon-encapsulated metal nanoparticles in continuous aerosol manner</dc:title>
		<dc:creator>Jeong Hoon Byeon</dc:creator>
		<dc:creator>Jae Hong Park </dc:creator><dc:creator>Ki Young Yoon </dc:creator><dc:creator>Jungho Hwang </dc:creator><dc:identifier>10.1039/b9nr00058e</dc:identifier>
		<dc:source>Nanoscale, 2010, DOI: 10.1039/b9nr00058e</dc:source>
		<dc:format>html/pdf</dc:format>
		<dc:date>2009-11-03</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/b9nr00058e</dc:identifier>
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	<item rdf:about="http://xlink.rsc.org/?DOI=b9nr00194h&amp;RSS=1"><title>Metal sulfide nanoparticles synthesized via enzyme treatment of biopolymer stabilized nanosuspensions</title>
		<link>http://xlink.rsc.org/?DOI=b9nr00194h&amp;RSS=1</link>
		<description>Nanoparticles of photonic Cu, Ag and Cd sulfides were synthesized by a general novel green synthetic route using the biopolymer dextran at high molecular weight or as crosslinked beads. The enzyme dextranase released the nanoparticles, resulting materials ranged in size from 9-50 nm depending on conditions. UV-vis showed excellent absorption characteristics and the possible mechanisms of this novel biopolymer stabilisation of metal sulfides are discussed.</description><content:encoded>&lt;p&gt;&lt;img align="center" src="http://www.rsc.org/ejga/NR/2010/b9nr00194h-ga.gif"/&gt;
	&lt;/p&gt;Yi-Yeoun Kim, Dominic Walsh &lt;br/&gt;
(Paper from Nanoscale)&lt;br/&gt;
Yi-Yeoun Kim, Nanoscale, 2010, DOI: 10.1039/b9nr00194h&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>Metal sulfide nanoparticles synthesized via enzyme treatment of biopolymer stabilized nanosuspensions</dc:title>
		<dc:creator>Yi-Yeoun Kim</dc:creator>
		<dc:creator>Dominic Walsh </dc:creator><dc:identifier>10.1039/b9nr00194h</dc:identifier>
		<dc:source>Nanoscale, 2010, DOI: 10.1039/b9nr00194h</dc:source>
		<dc:format>html/pdf</dc:format>
		<dc:date>2009-11-02</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/b9nr00194h</dc:identifier>
	</item>
</rdf:RDF>
