瓶刷聚合物的可拉伸性来源。图片来源:Sci. Adv.
“在传统认知中,刚性与可拉伸性往往难以兼得,工程师们不得不在两者之间取舍,牺牲一种以换取另一种”,Baiqiang Huang(论文一作)说,“我们的团队发现,通过设计一种可折叠的瓶刷状聚合物,可以在其自身结构中储存额外的长度,从而在保持刚度的同时大幅提升材料的可拉伸性。这种创新的微观设计为我们提供了新的思路,使材料能够在强度与可拉伸性之间达到理想的平衡”[3]。 原文(扫描或长按二维码,识别后直达原文页面):A universal strategy for decoupling stiffness and extensibility of polymer networksBaiqiang Huang, Shifeng Nian, Li-Heng CaiSci. Adv. 2024, 10, eadq3080. DOI: 10.1126/sciadv.adq3080 参考文献:[1] C. Stephens, A brief history of the development and use of vulcanised rubber in dentistry. Br. Dent. J. 2023, 234, 607-610. DOI: 10.1038/s41415-023-5735-7[2] S. Nian, et al. Unexpected Folding of Bottlebrush Polymers in Melts. Macromolecules2023, 56, 2551-2559.[3] In Major Materials Breakthrough, UVA Team Solves a Nearly 200-Year-Old Challenge in Polymershttps://engineering.virginia.edu/news-events/news/major-materials-breakthrough-uva-team-solves-nearly-200-year-old-challenge-polymers (本文由小希供稿)