Reprocessable Polyurethane Foams Using Acetoacetyl-Formed Amides

Like any other thermosetting material, polyurethane foams (PUFs) contain permanent cross-links that hinder their reprocessability and make their recyclability a tedious and environmentally unfriendly process. Herein, we introduce acetoacetyl-formed amides, formed by the reaction of isocyanates with...

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Veröffentlicht in:ACS applied materials & interfaces 2023-11, Vol.15 (45), p.52953-52960
Hauptverfasser: Kassem, Hiba, Imbernon, Lucie, Stricker, Lucas, Jonckheere, Laura, Du Prez, Filip E.
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container_end_page 52960
container_issue 45
container_start_page 52953
container_title ACS applied materials & interfaces
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creator Kassem, Hiba
Imbernon, Lucie
Stricker, Lucas
Jonckheere, Laura
Du Prez, Filip E.
description Like any other thermosetting material, polyurethane foams (PUFs) contain permanent cross-links that hinder their reprocessability and make their recyclability a tedious and environmentally unfriendly process. Herein, we introduce acetoacetyl-formed amides, formed by the reaction of isocyanates with acetoacetate groups, as dynamic units in the backbone of PUFs. By extensive variation of the foam composition, optimum parameters have been found to produce malleable foams above temperatures of 130 °C, without the requirement of any solvent during the foaming process. The PU cross-linked material can be compression-molded at least three times, giving rise to PU elastomers and thus maintaining a cross-linked network structure. Characterization of the original foams shows comparable properties to standard PUFs, for example, having a density of 32 kg/m3, while they show similar chemical and thermal properties upon reprocessing to strong PU elastomers, exhibiting T g ranging from −42 to −48 °C. This research provides a straightforward method to produce thermally reprocessable PUFs as a promising pathway to address the recycling issues of end-of-life foams.
doi_str_mv 10.1021/acsami.3c12132
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title Reprocessable Polyurethane Foams Using Acetoacetyl-Formed Amides
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