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<dc:title>Multifunctional Free-Standing Single-Walled Carbon Nanotube Films</dc:title>
<dc:creator>Nasibulin, Albert G.</dc:creator>
<dc:creator>Kaskela, Antti</dc:creator>
<dc:creator>Mustonen, Kimmo</dc:creator>
<dc:creator>Anisimov, Anton S.</dc:creator>
<dc:creator>Ruiz Fernández, Virginia</dc:creator>
<dc:creator>Kivistö, Samuli</dc:creator>
<dc:creator>Rackauskas, Simas</dc:creator>
<dc:creator>Timmermans, Marina Y.</dc:creator>
<dc:creator>Pudas, Marko</dc:creator>
<dc:creator>Aitchison, Brad</dc:creator>
<dc:creator>Kauppinen, Marko</dc:creator>
<dc:creator>Brown, David P.</dc:creator>
<dc:creator>Okhotnikov, Oleg G.</dc:creator>
<dc:creator>Kauppinen, Esko I.</dc:creator>
<dc:subject>Aerosol filter</dc:subject>
<dc:subject>Transparent and conductive electrodes</dc:subject>
<dc:subject>Electrochemical sensors</dc:subject>
<dc:subject>Saturable absorbers</dc:subject>
<dc:subject>Applications</dc:subject>
<dc:subject>Electroquímica</dc:subject>
<dc:subject>Electrotecnia</dc:subject>
<dc:subject>Electrochemistry</dc:subject>
<dc:subject>Electrical engineering</dc:subject>
<dc:description>We report a simple and rapid method to prepare multifunctional free-standingsingle-walled carbon nanotube (SWCNT) ﬁlms with variable thicknesses ranging from a submono-layer to a few micrometers having outstanding properties for a broad range of exceptionallyperforming devices. We have fabricated state-of-the-art key components from the same singlecomponent multifunctional SWCNT material for several high-impact application areas: higheﬃciency nanoparticle ﬁlters with a ﬁgure of merit of 147 Pa-1, transparent and conductiveelectrodes with a sheet resistance of 84 Ω/0 and a transmittance of 90%, electrochemical sensorswith extremely low detection limits below 100 nM, and polymer-free saturable absorbers forultrafast femtosecond lasers. Furthermore, the ﬁlms are demonstrated as the main components ingas ﬂowmeters, gas heaters, and transparent thermoacoustic loudspeakers.</dc:description>
<dc:description>This work was supported by the Academy of Finland(Project Numbers 128445, 128495, and 130533), TEKES (ProjectNumbers 40371/06 and 402701/08), and Aalto Universitythrough the Multidisciplinary Institute of Digitalization andEnergy (CNB-E project) programme, and by the Spanish Ministryof Science and Innovation (Programme Ramón y Cajal).</dc:description>
<dc:date>2025-03-11T07:54:34Z</dc:date>
<dc:date>2025-03-11T07:54:34Z</dc:date>
<dc:date>2011-04</dc:date>
<dc:type>info:eu-repo/semantics/article</dc:type>
<dc:type>info:eu-repo/semantics/acceptedVersion</dc:type>
<dc:identifier>1936-0851</dc:identifier>
<dc:identifier>http://hdl.handle.net/10259/10301</dc:identifier>
<dc:identifier>10.1021/nn200338r</dc:identifier>
<dc:identifier>1936-086X</dc:identifier>
<dc:language>eng</dc:language>
<dc:relation>ACS Nano. 2011, V. 5, n. 4, p. 3214-3221</dc:relation>
<dc:relation>https://doi.org/10.1021/nn200338r</dc:relation>
<dc:rights>info:eu-repo/semantics/openAccess</dc:rights>
<dc:format>application/pdf</dc:format>
<dc:publisher>American Chemical Society</dc:publisher>
<europeana:object>https://riubu.ubu.es/bitstream/10259/10301/3/Nasibulin-ASCNano_2011.pdf.jpg</europeana:object>
<europeana:provider>Hispana</europeana:provider>
<europeana:type>TEXT</europeana:type>
<europeana:rights>http://rightsstatements.org/vocab/CNE/1.0/</europeana:rights>
<europeana:dataProvider>RIUBU. Repositorio Institucional de la Universidad de Burgos</europeana:dataProvider>
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