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Updated: Sep 13, 2025

Depolymerizable Olefinic Polymers Based on Fused-Ring Cyclooctene Monomers
Published on: December 16, 2022
Supertough and Multirecyclable Cross-Linked Polyurethane Enabled by Supramolecular Chain Extenders and Noncovalent
Weiheng Lai1, Bo Qin2, Xiao Cao3
1Key Laboratory of Organic Optoelectronics and Molecular Engineering, Department of Chemistry, Tsinghua University, Beijing 100084, China.
Abstract:
Cross-linked polyurethane is widely used as a high-performance elastomer, owing to its excellent mechanical properties and superior durability. However, a critical challenge remains in integrating its in-use stability with dynamic behavior during recycling. Herein, supertough and multirecyclable cross-linked polyurethanes were developed through the cooperation of supramolecular chain extenders and noncovalent cross-linkers. This strategy, leveraging both a robust covalent network and a high-density hydrogen-bonded network, achieves enhanced mechanical strength and solvent resistance for in-use stability. The rapid and reversible dynamic exchange of the high-density hydrogen-bonded network endows polyurethane with excellent processability and recovery, exhibiting a distinct macroscopic flow at an elevated processing temperature. The resulting material exhibits a remarkable tensile stress of 50 MPa, an exceptional toughness of 300 MJ/m3, and maintains above 96% recycling efficiency after six recycling cycles, significantly outperforming conventional polyurethanes. Therefore, the integration of in-use durability and dynamic recyclability in cross-linked polyurethanes is successfully achieved, providing a promising pathway toward sustainability goals for cross-linked polymers with tailor-made mechanical properties.
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