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Exploring transamidation and chemical recycling of β-amino amide-derived covalent adaptable networks

作者:Loc Tan Nguyen, Adithya Tharayil, Nezha Badi, Johan M. Winne, Filip Du Prez · 发表于:Polymer Chemistry · 年份:2025 · DOI:10.1039/d5py00959f · 被引用次数:6 · 研究领域:Polymer composites and self-healing、Hydrogels: synthesis, properties, applications、Carbon dioxide utilization in catalysis

The growing environmental challenge of non-recyclable thermosets underscores the urgent need for sustainable alternatives. Covalent adaptable networks (CANs) containing dynamic β-amino amide moieties have emerged as promising reprocessable polymer networks, combining mechanical robustness with recyclability. In this work, we elucidate the exchange kinetics of both the well-established (retro)-aza-Michael addition and a newly identified transamidation pathway that is operative in β-amino amides. Systematic catalyst screening reveals that acidic catalysts significantly enhance viscoelastic control, thereby improving (re)processing efficiency. Furthermore, we introduce a chemical recycling protocol that enables the recovery of the original amino building blocks with up to 86% purity, demonstrating their direct use as feedstock in material (re)synthesis. These insights advance the fundamental understanding of dynamic bond exchange in β-amino amide based CANs and establish a viable route towards circular thermoset materials for numerous applications.