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Title Kinetic, thermal, structural and degradation studies on the effect of meta-substituted aromatic-aliphatic polyesters built through ring-opening polymerisation
ID_Doc 18032
Authors Makwana, VA; Larrañaga, A; Vilas, JL; Lizundia, E
Title Kinetic, thermal, structural and degradation studies on the effect of meta-substituted aromatic-aliphatic polyesters built through ring-opening polymerisation
Year 2019
Published
DOI 10.1016/j.polymdegradstab.2019.108984
Abstract Here we synthesise and characterise novel aromatic-aliphatic polyesters based on poly(2-(2-hydroxyethoxy)benzoate) (P2HEB). The polyesters were a product of the ring-opening polymerisation of their respective substituted benzodioxepinones catalysed by an aluminium salen catalyst. The electronic effects of the substituents on the polymerisation and thermal behaviour were investigated. The polymerisation and depolymerisation kinetics showed faster rates for electron withdrawing groups with selective depolymerisation back to their cyclic monomers in 10 min at 110 degrees C. The thermal characterisation showed varying glass transition temperatures from 29.7 degrees C to 60.7 degrees C with electron withdrawing groups exhibiting higher values. An increase in the melting temperatures and the thermal degradation activation energies of the polyesters were also observed. The crystal structures of the polyesters corresponded to semi-crystalline polyesters. The polymerisation and thermal behaviour of these novel aromatic-aliphatic polyesters can be tuned through manipulation of the meta-positioned R group, thus expanding the scope of catalytically degradable, functionalized aromatic-aliphatic polyesters that are accessible through ring-opening polymerisation. (C) 2019 Elsevier Ltd. All rights reserved.
Author Keywords Benzodioxepinones; Polyesters; Ring-opening polymerisation (ROP); Thermal degradation; Crystalline structure; Biodegradation
Index Keywords Index Keywords
Document Type Other
Open Access Open Access
Source Science Citation Index Expanded (SCI-EXPANDED)
EID WOS:000501397500006
WoS Category Polymer Science
Research Area Polymer Science
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