Journal of Applied Polymer Science· 2026Q2
Recyclable and Degradable Covalent Adaptable Polymer Networks ( CANs ) Based on Dynamic Thiol–Yne Reactions
- 0citations
- Q2SCImago
- 2026year
Short summary
New recyclable and degradable polymer networks (CANs) were created using dynamic thiol-yne reactions, successfully recycled mechanically up to three times.
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Key points
- Developed recyclable and degradable Covalent Adaptable Networks (CANs) using dynamic thiol-yne reactions.
- Successfully achieved mechanical recycling of all CAN samples over three cycles.
- Demonstrated chemical recycling success for CANs based on aromatic alkynones.
- Characterized material properties using TGA, DSC, Raman spectroscopy, and DMTA.
AI-generated from the title and abstract; the full text is not read.
Abstract
ABSTRACT Covalent adaptable networks (CANs) have been introduced as an alternative to classical thermosets. The presence of dynamic covalent bonds can be utilized to enable (re‐)processability and, consequently, the recyclability of these polymer networks. Within this context, we have utilized reversible covalent bonds based on activated alkynes and multifunctional thiols as reversible cross‐linkers. Three differently substituted alkynes were crosslinked using a trithiol and a tetrathiol, respectively, resulting in different CANs. The materials were characterized by thermogravimetric analysis, differential scanning calorimetry (DSC), Raman spectroscopy and dynamic mechanical thermal analysis (DMTA). Two different recycling strategies have been utilized for these polymer networks: (i) mechanical recycling and (ii) chemical recycling. The mechanical and thermal properties of the recycled polymers were characterized in detail. In case of mechanical recycling, all samples were successfully recycled over three times, whereas for the chemical recycling only three samples based on aromatic alkynones could successfully be recycled.
The authors' abstract, as published at the source. Journal of Applied Polymer Science, 2026 · DOI ↗
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Field: Polymers and Plastics
Polymers and PlasticsMaterials Science