Recyclable, Malleable, and Strong Thermosets Enabled by Knoevenagel Adducts

Plastic recycling is critical for waste management and achieving a circular economy, but it entails difficult trade-offs between performance and recyclability. Here, we report a thermoset, poly­(α-cyanocinnamate) (PCC), synthesized using Knoevenagel condensation between terephthalaldehyde (TPA) and...

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Veröffentlicht in:Journal of the American Chemical Society 2024-04, Vol.146 (14), p.9920-9927
Hauptverfasser: Wang, Sheng, Feng, Hongzhi, Lim, Jason Y. C., Li, Ke, Li, Bofan, Mah, Justin J. Q., Xing, Zhenxiang, Zhu, Jin, Loh, Xian Jun, Li, Zibiao
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Sprache:eng
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Zusammenfassung:Plastic recycling is critical for waste management and achieving a circular economy, but it entails difficult trade-offs between performance and recyclability. Here, we report a thermoset, poly­(α-cyanocinnamate) (PCC), synthesized using Knoevenagel condensation between terephthalaldehyde (TPA) and a triarm cyanoacetate star, that tackles this difficulty by harnessing its intrinsically conjugated and dynamic chemical characteristics. PCCs exhibit extraordinary thermal and mechanical properties with a typical T g of ∼178 °C, Young’s modulus of 3.8 GPa, and tensile strength of 102 MPa, along with remarkable flexibility and dimensional and chemical stabilities. Furthermore, end-of-life PCCs can be selectively degraded and partially recycled back into one starting monomer TPA for a new production cycle or reprocessed through dynamic exchange aided by cyanoacetate chain-ends. This study lays the scientific groundwork for the design of robust and recyclable thermosets, with transformative potential in plastic engineering.
ISSN:0002-7863
1520-5126
1520-5126
DOI:10.1021/jacs.4c00043