Thermally Self-Healing Polymeric Materials: The Next Step to Recycling Thermoset Polymers?

We developed thermally self-healing polymeric materials on the basis of furan-functionalized, alternating thermosetting polyketones (PK-furan) and bis-maleimide by using the Diels−Alder (DA) and Retro-Diels−Alder (RDA) reaction sequence. PK-furan can be easily obtained under mild conditions by the P...

Ausführliche Beschreibung

Gespeichert in:
Bibliographische Detailangaben
Veröffentlicht in:Macromolecules 2009-03, Vol.42 (6), p.1906-1912
Hauptverfasser: Zhang, Youchun, Broekhuis, Antonius A, Picchioni, Francesco
Format: Artikel
Sprache:eng
Schlagworte:
Online-Zugang:Volltext
Tags: Tag hinzufügen
Keine Tags, Fügen Sie den ersten Tag hinzu!
Beschreibung
Zusammenfassung:We developed thermally self-healing polymeric materials on the basis of furan-functionalized, alternating thermosetting polyketones (PK-furan) and bis-maleimide by using the Diels−Alder (DA) and Retro-Diels−Alder (RDA) reaction sequence. PK-furan can be easily obtained under mild conditions by the Paal−Knorr reaction of the polyketones with furfurylamine. The highly cross-linked polymers can be thermally remended to complete recovery in fracture loading, whereas the remending process can be repeated multiple times without any loss in mechanical properties. It is found that the achieved self-healing ability of this easily accessible system provides full recyclability and reworkability, which often is perceived to be difficult or impossible for thermosetting polymers. The simplicity of the synthesis, the broad range of available polyketone precursors, and the striking healing ability (kinetics and efficiency of mechanical properties recovery) of this system could expand the scientific understanding of self-healing materials and introduce the cradle-to-cradle concept for thermoset-based plastics and composites.
ISSN:0024-9297
1520-5835
DOI:10.1021/ma8027672