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◇ EPub Bayreuth (University of Bayreuth)2026-07-31· Copolymer

Compostable and Recyclable Baroplastic Triblock Copolymers Enable Low-Energy Polymer Processing

Chengzhang Xu, Chengwei Yi, Emilia Fulajtar, Anja Ramsperger, Julian Brehm, Christian Laforsch, Holger Schmalz, Sabine Rosenfeldt, Ulrich Mansfeld, Holger Kress, Andreas Möglich, Andreas Greiner, Seema Agarwal

原始摘要(英文原文)· Original abstract
Baroplastic polymers enable low-energy processing at low temperatures under mild pressure preserving polymer integrity and supporting end-of-life pathways that reduce the formation of persistent microplastic residues. Poly(L-lactide)-block-poly(ethylene glycol)-block-poly(L-lactide) (PLLA-b-PEG-b-PLLA) triblock copolymers demonstrate baroplasticity, enabling ambient temperature processing under moderate pressure. Here, we synthesized and characterized PLLA-b-PEG-b-PLLA with specific block lengths, showing rapid degradation within 2 months under industrial composting conditions and effective chemical and physical recyclability. Low-temperature baroplastic processing preserves the activity of encapsulated heat-sensitive proteins, expanding its application potential. These findings suggest that PLLA-b-PEG-b-PLLA combines sustainable processing, compostability, and recyclability, offering a promising platform for environmentally friendly polymer technologies in packaging, agriculture, and beyond.
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Compostable and Recyclable Baroplastic Triblock Copolymers Enable Low-Energy Polymer Processing — 科研速览 Science Skim