Chemical upcycling of commodity thermoset polyurethane foams towards high-performance 3D photo-printing resins.

Nat Chem

State Key Laboratory of Chemical Engineering, College of Chemical and Biological Engineering, Zhejiang University, Hangzhou, China.

Published: December 2023

AI Article Synopsis

  • Polyurethane thermosets, commonly used in modern applications, pose significant environmental challenges due to poor recycling methods and low-quality recycled products.
  • A new chemical strategy has been developed to effectively upcycle polyurethane foams, breaking them down into a dissolvable mixture that allows for higher-value end products.
  • This process enables the creation of high-performance, three-dimensional printable resins with customizable mechanical properties, making it a viable and economically attractive solution for recycling these materials.

Article Abstract

Polyurethane thermosets are indispensable to modern life, but their widespread use has become an increasingly pressing environmental burden. Current recycling approaches are economically unattractive and/or lead to recycled products of inferior properties, making their large-scale implementation unviable. Here we report a highly efficient chemical strategy for upcycling thermoset polyurethane foams that yields products of much higher economic values than the original material. Starting from a commodity foam, we show that the polyurethane network is chemically fragmented into a dissolvable mixture under mild conditions. We demonstrate that three-dimensional photo-printable resins with tunable material mechanical properties-which are superior to commercial high-performance counterparts-can be formulated with the addition of various network reforming additives. Our direct upcycling of commodity foams is economically attractive and can be implemented with ease, and the principle can be expanded to other commodity thermosets.

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Source
http://dx.doi.org/10.1038/s41557-023-01308-9DOI Listing

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