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      Digital Light Processing 3D Printing of Isosorbide- and Vanillin-Based Ester and Ester–Imine Thermosets: Structure–Property Recyclability Relationships

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          Abstract

          Four isosorbide-based photocurable resins were designed to reveal correlations between the composition and chemical structure, digital light processing (DLP) three-dimensional (3D) printability, thermoset properties, and recyclability. Especially, the role of functional groups, i.e., the concentration of ester groups vs the combination of ester and imine functionalities, in the recyclability of the resins was investigated. The resins consisted of methacrylated isosorbide alone or in combination with methacrylated vanillin or a flexible methacrylated vanillin Schiff-base. The composition of the resins significantly affected their 3D printability as well as the physical and chemical properties of the resulting thermosets. The results indicated the potential of methacrylated isosorbide to confer rigidity to thermosets with some negative effects on the printing quality and solvent-resistance properties. An increase in the methacrylated vanillin concentration in the resin enabled us to overcome these drawbacks, leading, however, to thermosets with lower thermal stability. The replacement of methacrylated vanillin with the methacrylated Schiff-base resin decreased the rigidity of the networks, ensuring, on the other hand, improved solvent-resistance properties. The results highlighted an almost complete preservation of the elastic modulus after the reprocessing or chemical recycling of the ester–imine thermosets, thanks to the presence of two distinct dynamic covalent bonds in the network; however, the concentration of the ester functions in the ester thermosets played a significant role in the success of the chemical recycling procedure.

          Abstract

          Four isosorbide- and vanillin-based resins and thermosets revealed the relationships between their structure, printability, properties, thermal processability, and chemical recyclability.

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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
                19 September 2023
                02 October 2023
                : 11
                : 39
                : 14601-14613
                Affiliations
                []Department of Fibre and Polymer Technology, KTH Royal Institute of Technology , Teknikringen 58, 100 44 Stockholm, Sweden
                []Department of Applied Science and Technology, Politecnico di Torino , Corso Duca degli Abruzzi 24, 10129 Torino, Italy
                Author notes
                Author information
                https://orcid.org/0000-0002-0504-3654
                https://orcid.org/0000-0002-8630-1802
                https://orcid.org/0000-0002-7790-8987
                Article
                10.1021/acssuschemeng.3c04362
                10548585
                37799818
                e572b210-3f65-44bb-b139-553936633c85
                © 2023 The Authors. Published by American Chemical Society

                Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained ( https://creativecommons.org/licenses/by/4.0/).

                History
                : 15 July 2023
                : 21 August 2023
                Funding
                Funded by: HORIZON EUROPE Marie Sklodowska-Curie Actions, doi 10.13039/100018694;
                Award ID: 101021859
                Funded by: HORIZON EUROPE Marie Sklodowska-Curie Actions, doi 10.13039/100018694;
                Award ID: 101085759
                Categories
                Research Article
                Custom metadata
                sc3c04362
                sc3c04362

                biobased thermosets,polyester–imines,recycling,digital light processing,3d printing,photopolymerization

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