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      Acid Free Oxidation and Simple Dispersion Method of MWCNT for High-Performance CFRP

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          Abstract

          Carbon nanotubes (CNT) provide an outstanding property spectrum which can be used to improve a wide range of materials. However, the transfer of properties from the nanoscale to a macroscopic material is a limiting factor. Different approaches of functionalizing the surface of a CNT can improve the interaction with the surrounding matrix but is connected to difficult and expensive treatments, which are usually inconvenient for industrial applications. Here, a simple and eco-friendly method is presented for the oxidation of CNT, where hydrogen peroxide (H 2O 2) is the only chemical needed and no toxic emissions are released. Also, the extensive step of the incorporation of CNT to an epoxy matrix is simplified to an ultrasonic dispersion in the liquid hardener component. The effectiveness is proven by mechanical tests of produced CNT/CFRP and compared to a conventional processing route. The combination of those simple and cost efficient strategies can be utilized to produce multiscale composites with improved mechanical performance in an ecological and economical way.

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          Exceptionally high Young's modulus observed for individual carbon nanotubes

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            Small but strong: A review of the mechanical properties of carbon nanotube–polymer composites

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                Author and article information

                Journal
                Nanomaterials (Basel)
                Nanomaterials (Basel)
                nanomaterials
                Nanomaterials
                MDPI
                2079-4991
                06 November 2018
                November 2018
                : 8
                : 11
                : 912
                Affiliations
                [1 ]Institute of Physics and Materials Science, University of Natural Resources and Life Sciences Vienna, Peter-Jordan-Straße 82, 1190 Vienna, Austria; gerald.singer@ 123456boku.ac.at (G.S.); philipp.siedlaczek@ 123456boku.ac.at (P.S.); gerhard.sinn@ 123456boku.ac.at (G.S.); harald.rennhofer@ 123456boku.ac.at (H.R.)
                [2 ]Slovak Academy of Sciences, Polymer Institute, Dúbravská cesta 9, 845 41 Bratislava 45, Slovak Republic; upolmmic@ 123456savba.sk (M.M.); upolmaom@ 123456savba.sk (M.O.)
                [3 ]Institute of Materials Chemistry, Technische Universität Wien, Getreidemarkt 9/165, 1060 Vienna, Austria; miriam.unterlass@ 123456tuwien.ac.at (M.M.U.); josef.wendrinsky@ 123456aon.at (J.W.)
                [4 ]Institute of Applied Synthetic Chemistry, Technische Universität Wien, Getreidemarkt 9/163, 1060 Vienna, Austria
                [5 ]Electronic Properties of Materials, Universität Wien, Boltzmanngasse 5, 1090 Vienna, Austria; valeria.milotti@ 123456univie.ac.at (V.M.); filippo.fedi@ 123456univie.ac.at (F.F.); thomas.pichler@ 123456univie.ac.at (T.P.)
                Author notes
                [* ]Correspondence: helga.lichtenegger@ 123456boku.ac.at ; Tel.: +43-147-654-89211
                Author information
                https://orcid.org/0000-0003-0210-5861
                https://orcid.org/0000-0003-0494-7384
                https://orcid.org/0000-0002-6624-1419
                Article
                nanomaterials-08-00912
                10.3390/nano8110912
                6266042
                30404184
                b3e9a71e-a72a-4bf6-9dfe-88e83fb0575d
                © 2018 by the authors.

                Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license ( http://creativecommons.org/licenses/by/4.0/).

                History
                : 21 October 2018
                : 01 November 2018
                Categories
                Article

                oxidation,functionalization,eco-friendly,dispersion,carbon fiber reinforced polymer (cfrp),mechanical properties

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