A Thermally Self-healing and Recyclable Polyurethane by Incorporating Halloysite Nanotubes via In Situ Polymerization
Author:
Funder
national key research and development plan
natural science foundation of zhejiang province
Publisher
Springer Science and Business Media LLC
Subject
Ceramics and Composites
Link
https://link.springer.com/content/pdf/10.1007/s10443-021-09989-6.pdf
Reference44 articles.
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3. Xu, Z., Liang, Y., Ma, X., Chen, S., Yu, C., Wang, Y., Miao, M.: Recyclable thermoset hyperbranched polymers containing reversible hexahydro-s-triazine. Nat. Sustain. 3(1), 29–34 (2020)
4. Ocando, C., Ecochard, Y., Decostanzi, M., Caillol, S., Avérous, L.: Dynamic network based on eugenol-derived epoxy as promising sustainable thermoset materials. Eur. Polym. J. 135: 109860 (2020)
5. Lin, C.H., Ge, H., Wang, T.L., Huang, M., Ying, P.Y., Zhang, P., Levchenko, V.: A self-healing and recyclable polyurethane/halloysite nanocomposite based on thermoreversible Diels-Alder reaction. Polymer 206: 122894 (2020)
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