Please use this identifier to cite or link to this item: http://hdl.handle.net/10773/9575
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dc.contributor.authorRodrigues, J.pt
dc.contributor.authorMata, D.pt
dc.contributor.authorFernandes, A. J. S.pt
dc.contributor.authorNeto, M. A.pt
dc.contributor.authorSilva, R. F.pt
dc.contributor.authorMonteiro, T.pt
dc.contributor.authorCosta, F. M.pt
dc.date.accessioned2013-01-23T17:29:36Z-
dc.date.issued2012-
dc.identifier.issn1359-6454pt
dc.identifier.urihttp://hdl.handle.net/10773/9575-
dc.description.abstractNanoscale junctions between conductive and semiconductor materials, by promoting a large interfacial area, are crucial to maximizing structural and electronic interactions, which are essential for energy conversion and storage technologies. Hierarchically structured hybrids of ZnO with carbon nanotubes (CNTs) are an example of this co-operative behavior. ZnO is characterized by a wide band gap and large exciton binding energy and CNTs ensure very high electrical conductivity. In the present work, a 3-D construction based on an array of 1-D vertically aligned (VA) CNTs constitute the conductive substrate for the growth of ZnO semiconductor nanoparticles using a laser-assisted flow deposition method. The functional interaction at the nanoscale between both materials is demonstrated by the enhancement of the high resolved near band edge recombination which accounts for an almost three orders of magnitude increase when compared with the green spectral band. A rectifying behavior was found for the ZnO/VACNT system.pt
dc.language.isoengpt
dc.publisherElsevierpt
dc.relationFCT - PEst-C/CTM/LA0025/2011pt
dc.relationFCT - SFRH/BD/76300/2011pt
dc.relationFCT - SFRH/BD/36273/2007pt
dc.relationFCT - SFRH/BPD/45610/2008pt
dc.rightsrestrictedAccesspor
dc.subjectZnOpt
dc.subjectVACNTspt
dc.subjectSEMpt
dc.subjectPhotoluminescencept
dc.subjectElectrical propertiespt
dc.titleZnO nanostructures grown on vertically aligned carbon nanotubes by laser-assisted flow depositionpt
dc.typearticlept
dc.peerreviewedyespt
ua.distributioninternationalpt
degois.publication.firstPage5143pt
degois.publication.issue13-14pt
degois.publication.lastPage5150pt
degois.publication.titleActa Materialiapt
degois.publication.volume60pt
dc.date.embargo10000-01-01-
dc.identifier.doi10.1016/j.actamat.2012.06.005pt
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