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      Homocomposites of Polylactide (PLA) with Induced Interfacial Stereocomplex Crystallites

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          Abstract

          The demand for “green” degradable composite materials increases with growing environmental awareness. The key challenge is achieving the preferred physical properties and maintaining their eco-attributes in terms of the degradability of the matrix and the filler. Herein, we have designed a series of “green” homocomposites materials based purely on polylactide (PLA) polymers with different structures. Film-extruded homocomposites were prepared by melt-blending PLA matrixes (which had different degrees of crystallinity) with PLLA and PLA stereocomplex (SC) particles. The PLLA and SC particles were spherical and with 300–500 nm size. Interfacial crystalline structures in the form of stereocomplexes were obtained for certain particulate-homocomposite formulations. These SC crystallites were found at the particle/matrix interface when adding PLLA particles to a PLA matrix with d-lactide units, as confirmed by XRD and DSC data analyses. For all homocomposites, the PLLA and SC particles acted as nucleating agents and enhanced the crystallization of the PLA matrixes. The SC particles were more rigid and had a higher Young’s modulus compared with the PLLA particles. The mechanical properties of the homocomposites varied with particle size, rigidity, and the interfacial adhesion between the particles and the matrix. An improved tensile strength in the homocomposites was achieved from the interfacial stereocomplex formation. Hereafter, homocomposites with tunable crystalline arrangements and subsequently physical properties, are promising alternatives in strive for eco-composites and by this, creating materials that are completely degradable and sustainable.

          Abstract

          “Green” homocomposites based purely on polylactide (PLA) polymers with different structures are promising alternatives in strive for eco-composites that are completely degradable and sustainable.

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          Most cited references52

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          Effect of contact deformations on the adhesion of particles

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            Effects of particle size, particle/matrix interface adhesion and particle loading on mechanical properties of particulate–polymer composites

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              Stereocomplex formation between enantiomeric poly(lactides)

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                Author and article information

                Journal
                ACS Sustain Chem Eng
                ACS Sustain Chem Eng
                sc
                ascecg
                ACS Sustainable Chemistry & Engineering
                American Chemical Society
                2168-0485
                29 July 2015
                08 September 2015
                : 3
                : 9
                : 2220-2231
                Affiliations
                [1]Department of Fibre and Polymer Technology, KTH Royal Institute of Technology , SE-100 44 Stockholm, Sweden
                Author notes
                [* ]A.-C. Albertsson. E-mail: aila@ 123456polymer.kth.se . Tel.: +46-8-790 82 74. Fax: +46-8-20 84 77.
                Article
                10.1021/acssuschemeng.5b00498
                4613739
                95c10ea7-a76f-4e4b-b393-88c1e888130c
                Copyright © 2015 American Chemical Society

                This is an open access article published under an ACS AuthorChoice License, which permits copying and redistribution of the article or any adaptations for non-commercial purposes.

                History
                : 08 June 2015
                : 28 July 2015
                Categories
                Research Article
                Custom metadata
                sc5b00498
                sc-2015-004985

                composites,biodegradable,morphology,particles,stereocomplexation,interface

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