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<titleInfo><title>Morphology evolution of Cu2−xS nanoparticles: from spheres to dodecahedrons</title></titleInfo>


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<name type="personal">
  <namePart type="given">Wenhua</namePart>
  <namePart type="family">Li</namePart>
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  <namePart type="given">Alexey</namePart>
  <namePart type="family">Shavel</namePart>
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<name type="personal">
  <namePart type="given">Roger</namePart>
  <namePart type="family">Guzman</namePart>
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<name type="personal">
  <namePart type="given">Javier</namePart>
  <namePart type="family">Rubio Garcia</namePart>
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<name type="personal">
  <namePart type="given">Cristina</namePart>
  <namePart type="family">Flox</namePart>
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<name type="personal">
  <namePart type="given">Jiandong</namePart>
  <namePart type="family">Fan</namePart>
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<name type="personal">
  <namePart type="given">Doris</namePart>
  <namePart type="family">Cadavid</namePart>
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  <namePart type="given">Maria</namePart>
  <namePart type="family">Ibáñez</namePart>
  <role><roleTerm type="text">author</roleTerm> </role><identifier type="local">43C61214-F248-11E8-B48F-1D18A9856A87</identifier><description xsi:type="identifierDefinition" type="orcid">0000-0001-5013-2843</description></name>
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  <namePart type="given">Jordi</namePart>
  <namePart type="family">Arbiol</namePart>
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  <namePart type="given">Joan</namePart>
  <namePart type="family">Morante</namePart>
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<abstract lang="eng">An oriented attachment and growth mechanism allows an accurate control of the size and morphology of Cu2-xS nanocrystals, from spheres and disks to tetradecahedrons and dodecahedrons. The synthesis conditions and the growth mechanism are detailed here.</abstract>

<originInfo><publisher>Royal Society of Chemistry (RSC) </publisher><dateIssued encoding="w3cdtf">2011</dateIssued>
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<language><languageTerm authority="iso639-2b" type="code">eng</languageTerm>
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<relatedItem type="host"><titleInfo><title>Chemical Communications</title></titleInfo><identifier type="doi">10.1039/c1cc13803k</identifier>
<part><detail type="volume"><number>47</number></detail><detail type="issue"><number>37</number></detail><extent unit="pages">10332 - 10334</extent>
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<chicago>Li, Wenhua, Alexey Shavel, Roger Guzman, Javier Rubio Garcia, Cristina Flox, Jiandong Fan, Doris Cadavid, et al. “Morphology Evolution of Cu2−xS Nanoparticles: From Spheres to Dodecahedrons.” &lt;i&gt;Chemical Communications&lt;/i&gt;. Royal Society of Chemistry (RSC) , 2011. &lt;a href=&quot;https://doi.org/10.1039/c1cc13803k&quot;&gt;https://doi.org/10.1039/c1cc13803k&lt;/a&gt;.</chicago>
<mla>Li, Wenhua, et al. “Morphology Evolution of Cu2−xS Nanoparticles: From Spheres to Dodecahedrons.” &lt;i&gt;Chemical Communications&lt;/i&gt;, vol. 47, no. 37, Royal Society of Chemistry (RSC) , 2011, pp. 10332–34, doi:&lt;a href=&quot;https://doi.org/10.1039/c1cc13803k&quot;&gt;10.1039/c1cc13803k&lt;/a&gt;.</mla>
<ista>Li W, Shavel A, Guzman R, Rubio Garcia J, Flox C, Fan J, Cadavid D, Ibáñez M, Arbiol J, Morante J, Cabot A. 2011. Morphology evolution of Cu2−xS nanoparticles: from spheres to dodecahedrons. Chemical Communications. 47(37), 10332–10334.</ista>
<ieee>W. Li &lt;i&gt;et al.&lt;/i&gt;, “Morphology evolution of Cu2−xS nanoparticles: from spheres to dodecahedrons,” &lt;i&gt;Chemical Communications&lt;/i&gt;, vol. 47, no. 37. Royal Society of Chemistry (RSC) , pp. 10332–10334, 2011.</ieee>
<ama>Li W, Shavel A, Guzman R, et al. Morphology evolution of Cu2−xS nanoparticles: from spheres to dodecahedrons. &lt;i&gt;Chemical Communications&lt;/i&gt;. 2011;47(37):10332-10334. doi:&lt;a href=&quot;https://doi.org/10.1039/c1cc13803k&quot;&gt;10.1039/c1cc13803k&lt;/a&gt;</ama>
<apa>Li, W., Shavel, A., Guzman, R., Rubio Garcia, J., Flox, C., Fan, J., … Cabot, A. (2011). Morphology evolution of Cu2−xS nanoparticles: from spheres to dodecahedrons. &lt;i&gt;Chemical Communications&lt;/i&gt;. Royal Society of Chemistry (RSC) . &lt;a href=&quot;https://doi.org/10.1039/c1cc13803k&quot;&gt;https://doi.org/10.1039/c1cc13803k&lt;/a&gt;</apa>
<short>W. Li, A. Shavel, R. Guzman, J. Rubio Garcia, C. Flox, J. Fan, D. Cadavid, M. Ibáñez, J. Arbiol, J. Morante, A. Cabot, Chemical Communications 47 (2011) 10332–10334.</short>
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