Han Xing-Wang, Zhang Xun, Zhou Youyun, Maimaitiming Aizezi, Sun Xiu-Li, Gao Yanshan, Li Peizhi, Zhu Boyu, Chen Eugene Y-X, Kuang Xiaokang, Tang Yong
Shenzhen Grubbs Institute, Southern University of Science and Technology, Shenzhen, 518055, China.
State Key Laboratory of Organometallic Chemistry, Shanghai Institute of Organic Chemistry, Chinese Academy of Sciences, Shanghai, 200032, China.
Nat Commun. 2024 Feb 17;15(1):1462. doi: 10.1038/s41467-024-45219-w.
Ethylene/α-olefin copolymers are produced in huge scale and widely used, but their after-use disposal has caused plastic pollution problems. Their chemical inertness made chemical re/upcycling difficult. Ideally, PE materials should be made de novo to have a circular closed-loop lifecycle. However, synthesis of circular ethylene/α-olefin copolymers, including high-volume, linear low-density PE as well as high-value olefin elastomers and block copolymers, presents a particular challenge due to difficulties in introducing branches while simultaneously installing chemical recyclability and directly using industrial ethylene and α-olefin feedstocks. Here we show that coupling of industrial coordination copolymerization of ethylene and α-olefins with a designed functionalized chain-transfer agent, followed by modular assembly of the resulting AB telechelic polyolefin building blocks by polycondensation, affords a series of ester-linked PE-based copolymers. These new materials not only retain thermomechanical properties of PE-based materials but also exhibit full chemical circularity via simple transesterification and markedly enhanced adhesion to polar surfaces.
乙烯/α-烯烃共聚物的生产规模巨大且应用广泛,但其使用后的处置引发了塑料污染问题。它们的化学惰性使得化学再循环/升级循环变得困难。理想情况下,聚乙烯材料应重新制造以实现循环闭环生命周期。然而,合成环状乙烯/α-烯烃共聚物,包括大量的线性低密度聚乙烯以及高价值的烯烃弹性体和嵌段共聚物,由于在引入支链的同时安装化学可回收性以及直接使用工业乙烯和α-烯烃原料存在困难,因此面临着特殊的挑战。在此我们表明,将乙烯和α-烯烃的工业配位共聚与设计的官能化链转移剂相结合,然后通过缩聚对所得的AB型遥爪聚烯烃结构单元进行模块化组装,可得到一系列酯键连接的聚乙烯基共聚物。这些新材料不仅保留了聚乙烯基材料的热机械性能,还通过简单的酯交换反应展现出完全的化学循环性,并显著增强了对极性表面的粘附力。