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      Chitin Nanofibrils in Poly(Lactic Acid) (PLA) Nanocomposites: Dispersion and Thermo-Mechanical Properties

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          Abstract

          Chitin-nanofibrils are obtained in water suspension at low concentration, as nanoparticles normally are, to avoid their aggregation. The addition of the fibrils in molten PLA during extrusion is thus difficult and disadvantageous. In the present paper, the use of poly(ethylene glycol) (PEG) is proposed to prepare a solid pre-composite by water evaporation. The pre-composite is then added to PLA in the extruder to obtain transparent nanocomposites. The amount of PEG and chitin nanofibrils was varied in the nanocomposites to compare the reinforcement due to nanofibrils and plasticization due to the presence of PEG, as well as for extrapolating, where possible, the properties of reinforcement due to chitin nanofibrils exclusively. Thermal and morphological properties of nanocomposites were also investigated. This study concluded that chitin nanofibrils, added as reinforcing filler up to 12% by weight, do not alter the properties of the PLA based material; hence, this additive can be used in bioplastic items mainly exploiting its intrinsic anti-microbial and skin regenerating properties.

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          Polymer nanotechnology: Nanocomposites

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            Steric Stabilization of a Cellulose Microcrystal Suspension by Poly(ethylene glycol) Grafting

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              Mechanical properties of cellulose nanofiber (CNF) reinforced polylactic acid (PLA) prepared by twin screw extrusion

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                Author and article information

                Journal
                Int J Mol Sci
                Int J Mol Sci
                ijms
                International Journal of Molecular Sciences
                MDPI
                1422-0067
                24 January 2019
                February 2019
                : 20
                : 3
                : 504
                Affiliations
                [1 ]Department of Civil and Industrial Engineering, University of Pisa, Via Diotisalvi 2, 56122 Pisa, Italy; patrizia.cinelli@ 123456unipi.it (P.C.); vito.gigante@ 123456dici.unipi.it (V.G.); laura.aliotta@ 123456dici.unipi.it (L.A.); luca.panariello@ 123456ing.unipi.it (L.P.)
                [2 ]National InterUniversity Consortium of Materials Science and Technology (INSTM), Via Giusti 9, 50121 Florence, Italy
                [3 ]Skin Pharmacology and Dermatology Unit, Campania University “Luigi Vanvitelli”, 80100 Naples, Italy; pierfrancesco.morganti@ 123456mavicosmetics.it
                [4 ]MAVI SUD, Aprilia (LT), 04011 Aprilia, Italy
                Author notes
                [* ]Correspondence: maria.beatrice.coltelli@ 123456unipi.it (M.-B.C.); andrea.lazzeri@ 123456unipi.it (A.L.); Tel.: +39-050-2217-856 (M.-B.C.)
                Author information
                https://orcid.org/0000-0002-0418-8974
                https://orcid.org/0000-0003-1876-5995
                https://orcid.org/0000-0002-9463-1502
                Article
                ijms-20-00504
                10.3390/ijms20030504
                6386964
                30682847
                7e3b824b-22e4-4f82-9f00-ee85d38ebef0
                © 2019 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
                : 14 December 2018
                : 18 January 2019
                Categories
                Article

                Molecular biology
                chitin nanofibrils,poly(lactic acid),nanocomposites
                Molecular biology
                chitin nanofibrils, poly(lactic acid), nanocomposites

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