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Carbon Nanotube-Based Stretchable Hybrid Material Film for Electronic Devices and Applications

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To meet the increasing demand, for stretchable conductive materials in a wide range of applications, innovative conductors based on single wall carbon nanotubes (SWCNT) self-grafted on different polymer films, are assembled. Aiming at a simple technology for flexible and stretchable electronic devices, and contrary to what commonly reported for carbon nanotubes (CNT), no chemical functionalization of SWCNT is necessary for stable grafting onto several polymeric surfaces. The novelty and functionality of our composite materials stand in the synergy among the intrinsic biocompatibility of CNT, a fully inert material, their electrical conductivity, and the stretchable-viscoelastic properties of the polymer-nanotube bundles composites. Electrical characterization of both unstretched and strongly stretched planar film conductors is provided, demonstrating the use of this new composite material for technological application. Also, an insight into the mechanisms of strong adhesion to the polymer is obtained by scanning electron microscopy (SEM) of the surface composite. As an example of technological application of such stretchable circuitry, the electrical functionality of a carbon nanotube-based six-sensor (electrode) grid is used to record subdural electrocorticograms in freely-moving laboratory rats over approximately three months.

Keywords: Bio-Sensing Application; Electronic Devices; SWCNT; Stretchable Conductors

Document Type: Research Article

Affiliations: 1: University of Rome Tor Vergata, Center NAST c/o Physics Department, Via della Ricerca Scientifica 1, 00133 Rome 2: Enea Research Center (Casaccia), Via Anguillarese, 301 - 00123 S.Maria di Galeria, (Roma) 3: Neuromed Research Center, Via dell’Elettronica, 86077 Pozzilli, (IS) 4: Physics Department of Università degli Studi di Roma “Tor Vergata”, Via della Ricerca Scientifica 1, 00133 Rome

Publication date: 01 July 2020

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  • Journal for Nanoscience and Nanotechnology (JNN) is an international and multidisciplinary peer-reviewed journal with a wide-ranging coverage, consolidating research activities in all areas of nanoscience and nanotechnology into a single and unique reference source. JNN is the first cross-disciplinary journal to publish original full research articles, rapid communications of important new scientific and technological findings, timely state-of-the-art reviews with author's photo and short biography, and current research news encompassing the fundamental and applied research in all disciplines of science, engineering and medicine.
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