College of Biotechnology and Pharmaceutical Engineering, Nanjing Tech University, Nanjing, Jiangsu 211800, China.
State Key Laboratory of Materials-Oriented Chemical Engineering, Nanjing Tech University, Nanjing, Jiangsu 211800, China.
ACS Macro Lett. 2021 Feb 16;10(2):284-296. doi: 10.1021/acsmacrolett.0c00813. Epub 2021 Feb 3.
The discovery and prosperous growth of synthetic polymers have presented both significant advantages and daunting challenges in the last century. To address the issues of environmental pollution and fossil consumption, recyclable, degradable, and/or biobased polymers have been given much attention in the polymer science community. This viewpoint focuses on the emerging fully chemical recyclable poly(γ-butyrolactone)-based polymers. The breakthrough from nonpolymerizable to efficient polymerization is highlighted by the benefits of the development of a series of catalysis for ring-opening polymerization of γ-butyrolactone. Subsequently, the design of γ-butyrolactone derivatives and synthesis of more recyclable polymers are summarized together with the discussions about the structure and property relationship. Finally, the remaining challenges and promising opportunities are suggested in order to provide insights into the further direction for sustainable polymers.
上个世纪,合成聚合物的发现和蓬勃发展带来了巨大的优势和严峻的挑战。为了解决环境污染和化石资源消耗的问题,可回收、可降解和/或生物基聚合物受到了聚合物科学界的广泛关注。本文观点主要关注新兴的完全可化学回收的基于聚(γ-丁内酯)的聚合物。通过一系列开环聚合γ-丁内酯的催化发展,实现了从不聚合到高效聚合的突破,突出了这一突破的意义。随后,本文总结了γ-丁内酯衍生物的设计和更具可回收性聚合物的合成,并讨论了它们的结构与性能关系。最后,本文提出了剩余的挑战和有前景的机遇,以期为可持续聚合物的进一步发展方向提供思路。