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Title Modulating the Crystallinity of a Circular Plastic towards Packaging Material with Outstanding Barrier Properties
ID_Doc 7387
Authors Sangroniz, A; Zhu, JB; Etxeberria, A; Chen, EYX; Sardon, H
Title Modulating the Crystallinity of a Circular Plastic towards Packaging Material with Outstanding Barrier Properties
Year 2022
Published Macromolecular Rapid Communications, 43, 13
DOI 10.1002/marc.202200008
Abstract Chemically recyclable polymers have attracted increasing attention since they are promising materials in a circular economy, but such polymers appropriate for packaging applications are scarce. Here a combined thermal, mechanical, and transport (permeability and sorption) study is presented of a circular polymer system based on biobased trans-hexahydrophthalide which, upon polymerization, can lead to amorphous, homochiral crystalline, and nanocrystalline stereocomplex materials. This study uncovers their largely different transport properties of the same polymer but with different stereochemical arrangements and synergistic or conflicting effects of crystallinity on transport properties versus thermal and mechanical properties. Overall, the homocrystalline chiral polymer shows the best performance with an outstanding barrier character to gases and vapors, outperforming commercial poly(ethylene terephthalate) and polyethylene. The results presented herein show that it is possible to modify the crystalline structure of the same polymer to tune the mechanical and transport properties and generate multiple materials of different barrier characters.
Author Keywords chemically recyclable polymers; circular plastics; packaging; transport properties
Index Keywords Index Keywords
Document Type Other
Open Access Open Access
Source Science Citation Index Expanded (SCI-EXPANDED)
EID WOS:000765153200001
WoS Category Polymer Science
Research Area Polymer Science
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