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Patterning of light-emitting conjugated polymer nanofibres

TitoloPatterning of light-emitting conjugated polymer nanofibres
Tipo di pubblicazioneArticolo su Rivista peer-reviewed
Anno di Pubblicazione2008
AutoriDi Benedetto, Francesca, Camposeo A., Pagliara S., Mele E., Persano L., Stabile R., Cingolani R., and Pisignano D.
RivistaNature Nanotechnology
Volume3
Paginazione614-619
ISSN17483387
Parole chiavearticle, Crystallization, Electrochemistry, electromagnetic field, light, light emitting diode, Luminescence, Luminescent Measurements, nanofiber, Nanomaterial, nanotechnology, Nanotubes, Optics and Photonics, Photochemistry, polymer, Polymers, priority journal, Radiation, Room temperature, Scattering, Semiconductors, Static Electricity
Abstract

Organic materials have revolutionized optoelectronics by their processability, flexibility and low cost, with application to light-emitting devices for full-colour screens, solar cells and lasers. Some low-dimensional organic semiconductor structures exhibit properties resembling those of inorganics, such as polarized emission and enhanced electroluminescence. One-dimensional metallic, III-V and II-VI nanostructures have also been the subject of intense investigation as building blocks for nanoelectronics and photonics. Given that one-dimensional polymer nanostructures, such as polymer nanofibres, are compatible with sub-micrometre patterning capability and electromagnetic confinement within subwavelength volumes, they can offer the benefits of organic light sources to nanoscale optics. Here we report on the optical properties of fully conjugated, electrospun polymer nanofibres. We assess their waveguiding performance and emission tuneability in the whole visible range. We demonstrate the enhancement of the fibre forward emission through imprinting periodic nanostructures using room-temperature nanoimprint lithography, and investigate the angular dispersion of differently polarized emitted light. © 2008 Macmillan Publishers Limited. All rights reserved.

Note

cited By 116

URLhttps://www.scopus.com/inward/record.uri?eid=2-s2.0-53549120490&doi=10.1038%2fnnano.2008.232&partnerID=40&md5=3ff09290d19587f20b8bb687ad95d1ba
DOI10.1038/nnano.2008.232
Citation KeyDiBenedetto2008614