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ACS Applied Polymer Materials· 2026Q1

Structure-Guided Upcycling of Polyamide 6 Waste into Ultra-Strong Adhesives

Ji Lan, Xiao-Liang Peng, Cong Ying Deng, Ze-Yong Zhao et al.

Short summary

A novel strategy upcycles polyamide 6 (PA6) waste into high-performance adhesives by partial depolymerization and molecular reconstruction, achieving lap-shear strengths over 15 MPa on metals, with a peak of 22.9 MPa on iron.

AI-generated from the title and abstract; the full text is not read.

Key points

  • Polyamide 6 (PA6) waste is upcycled into adhesives via glycolysis and molecular reconstruction.
  • Incorporation of aromatic and polyether segments enhances adhesive strength and substrate interaction.
  • Adhesives achieve lap-shear strengths over 15 MPa on metals, with a maximum of 22.9 MPa on iron.
  • The developed adhesives exhibit transparency, solubility, reusability, and aqueous stability.

AI-generated from the title and abstract; the full text is not read.

Abstract

Abstract Upcycling polymer waste, especially polyamide 6 (PA6), remains challenging because it is difficult to simultaneously exploit its intrinsic structural advantages and meet the performance requirements of high-value applications. Herein, we propose a structure-guided upcycling strategy for the fabrication of high-performance adhesives through the partial depolymerization of PA6 via glycolysis followed by directed molecular reconstruction. By incorporating rigid aromatic moieties and flexible polyether soft segments into the reconstructed polymer network, a compatible and controllable polymerization system for PA6 glycolysates was established. This structural design not only preserved high cohesive strength within the adhesive matrix but also enhanced interfacial interactions with diverse substrates, thereby enabling excellent bonding performance. The resulting adhesives exhibited outstanding adhesion strength toward various materials. In particular, the lap-shear strength toward different metals exceeded 15 MPa, with the highest value of 22.9 MPa achieved on iron substrates. In addition, the adhesive displayed desirable practical features, including transparency, solubility, reusability, and stability under various aqueous conditions. Overall, the adhesive performance and multifunctionality of the obtained adhesives compare favorably with those of previously reported polyamide-based adhesives. This work provides a practical and efficient route for the high-value upcycling of polyamide waste.

The authors' abstract, as published at the source. ACS Applied Polymer Materials, 2026 · DOI ↗

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Field: Organic Chemistry

Organic ChemistryChemistry