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Broadband Dielectric Spectroscopy Study of Biobased Poly(alkylene 2,5-furanoate)s’ Molecular Dynamics

Poly(2,5-alkylene furanoate)s are bio-based, smart, and innovative polymers that are considered the most promising materials to replace oil-based plastics. These polymers can be synthesized using ecofriendly approaches, starting from renewable sources, and result into final products with properties...

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Autores principales: Soccio, Michelina, Martínez-Tong, Daniel E., Guidotti, Giulia, Robles-Hernández, Beatriz, Munari, Andrea, Lotti, Nadia, Alegria, Angel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7361705/
https://www.ncbi.nlm.nih.gov/pubmed/32560215
http://dx.doi.org/10.3390/polym12061355
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author Soccio, Michelina
Martínez-Tong, Daniel E.
Guidotti, Giulia
Robles-Hernández, Beatriz
Munari, Andrea
Lotti, Nadia
Alegria, Angel
author_facet Soccio, Michelina
Martínez-Tong, Daniel E.
Guidotti, Giulia
Robles-Hernández, Beatriz
Munari, Andrea
Lotti, Nadia
Alegria, Angel
author_sort Soccio, Michelina
collection PubMed
description Poly(2,5-alkylene furanoate)s are bio-based, smart, and innovative polymers that are considered the most promising materials to replace oil-based plastics. These polymers can be synthesized using ecofriendly approaches, starting from renewable sources, and result into final products with properties comparable and even better than those presented by their terephthalic counterparts. In this work, we present the molecular dynamics of four 100% bio-based poly(alkylene 2,5-furanoate)s, using broadband dielectric spectroscopy measurements that covered a wide temperature and frequency range. We unveiled complex local relaxations, characterized by the simultaneous presence of two components, which were dependent on thermal treatment. The segmental relaxation showed relaxation times and strengths depending on the glycolic subunit length, which were furthermore confirmed by high-frequency experiments in the molten region of the polymers. Our results allowed determining structure–property relations that are able to provide further understanding about the excellent barrier properties of poly(alkylene 2,5-furanoate)s. In addition, we provide results of high industrial interest during polymer processing for possible industrial applications of poly(alkylene furanoate)s.
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spelling pubmed-73617052020-07-21 Broadband Dielectric Spectroscopy Study of Biobased Poly(alkylene 2,5-furanoate)s’ Molecular Dynamics Soccio, Michelina Martínez-Tong, Daniel E. Guidotti, Giulia Robles-Hernández, Beatriz Munari, Andrea Lotti, Nadia Alegria, Angel Polymers (Basel) Article Poly(2,5-alkylene furanoate)s are bio-based, smart, and innovative polymers that are considered the most promising materials to replace oil-based plastics. These polymers can be synthesized using ecofriendly approaches, starting from renewable sources, and result into final products with properties comparable and even better than those presented by their terephthalic counterparts. In this work, we present the molecular dynamics of four 100% bio-based poly(alkylene 2,5-furanoate)s, using broadband dielectric spectroscopy measurements that covered a wide temperature and frequency range. We unveiled complex local relaxations, characterized by the simultaneous presence of two components, which were dependent on thermal treatment. The segmental relaxation showed relaxation times and strengths depending on the glycolic subunit length, which were furthermore confirmed by high-frequency experiments in the molten region of the polymers. Our results allowed determining structure–property relations that are able to provide further understanding about the excellent barrier properties of poly(alkylene 2,5-furanoate)s. In addition, we provide results of high industrial interest during polymer processing for possible industrial applications of poly(alkylene furanoate)s. MDPI 2020-06-16 /pmc/articles/PMC7361705/ /pubmed/32560215 http://dx.doi.org/10.3390/polym12061355 Text en © 2020 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/).
spellingShingle Article
Soccio, Michelina
Martínez-Tong, Daniel E.
Guidotti, Giulia
Robles-Hernández, Beatriz
Munari, Andrea
Lotti, Nadia
Alegria, Angel
Broadband Dielectric Spectroscopy Study of Biobased Poly(alkylene 2,5-furanoate)s’ Molecular Dynamics
title Broadband Dielectric Spectroscopy Study of Biobased Poly(alkylene 2,5-furanoate)s’ Molecular Dynamics
title_full Broadband Dielectric Spectroscopy Study of Biobased Poly(alkylene 2,5-furanoate)s’ Molecular Dynamics
title_fullStr Broadband Dielectric Spectroscopy Study of Biobased Poly(alkylene 2,5-furanoate)s’ Molecular Dynamics
title_full_unstemmed Broadband Dielectric Spectroscopy Study of Biobased Poly(alkylene 2,5-furanoate)s’ Molecular Dynamics
title_short Broadband Dielectric Spectroscopy Study of Biobased Poly(alkylene 2,5-furanoate)s’ Molecular Dynamics
title_sort broadband dielectric spectroscopy study of biobased poly(alkylene 2,5-furanoate)s’ molecular dynamics
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7361705/
https://www.ncbi.nlm.nih.gov/pubmed/32560215
http://dx.doi.org/10.3390/polym12061355
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