We report on the transport properties of a system composed of single-wall carbon nanotubes (SWNTs) noncovalently linked to a new electrically conducting dendrimer poly(amidoamine) modified with a substituted naphthalenediimide (PAMAMC). SEM images show how the adsorption of the conducting dendrimer on SWNTs leads to the unroping of the bundles. The adsorption of PAMAMC molecules on SWNTs has been also investigated by electrical transport measurements. The electrical conductance of SWNTs drastically increases upon adsorption of conducting dendrimer. UV-Vis spectroscopy indicates that there was a modification in the electronic structure of the dendrimer as consequence of nanotube introduction while the appearance of new bands on the Raman spectra may suggest that metallic nanotubes are selectively functionalized.

Selective interaction of single-walled carbon nanotubes with conducting dendrimer / L. Valentini, I. Armentano, L. Ricco, J. Alongi, G. Pennelli, A. Mariani, S. Russo, J.M. Kenny. - In: DIAMOND AND RELATED MATERIALS. - ISSN 0925-9635. - 15:1(2006 Jan), pp. 95-99. [10.1016/j.diamond.2005.07.003]

Selective interaction of single-walled carbon nanotubes with conducting dendrimer

J. Alongi;
2006

Abstract

We report on the transport properties of a system composed of single-wall carbon nanotubes (SWNTs) noncovalently linked to a new electrically conducting dendrimer poly(amidoamine) modified with a substituted naphthalenediimide (PAMAMC). SEM images show how the adsorption of the conducting dendrimer on SWNTs leads to the unroping of the bundles. The adsorption of PAMAMC molecules on SWNTs has been also investigated by electrical transport measurements. The electrical conductance of SWNTs drastically increases upon adsorption of conducting dendrimer. UV-Vis spectroscopy indicates that there was a modification in the electronic structure of the dendrimer as consequence of nanotube introduction while the appearance of new bands on the Raman spectra may suggest that metallic nanotubes are selectively functionalized.
Composites; Electrical properties; Nanotubes; Materials Chemistry; Surfaces, Coatings and Films; Surfaces and Interfaces
Settore CHIM/04 - Chimica Industriale
gen-2006
1-ago-2005
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/464813
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