共聚物
邻苯二甲酸酐
单体
异丁烯
聚酯纤维
苯乙烯
聚苯乙烯
高分子化学
异构化
有机化学
热塑性弹性体
化学
材料科学
烯烃纤维
微乳液
聚烯烃
极限抗拉强度
松香
聚合
环氧化物
无根根霉
热塑性塑料
硫化
聚合物
预聚物
间苯二甲酸
化学改性
产量(工程)
作者
Zhenbiao Xie,Ziheng Yang,Chenyang Hu,Mingxin Niu,Yulu Zhang,Te Yang,Xuan Pang,Xuesi Chen
标识
DOI:10.1038/s41467-026-69201-w
摘要
Developing low-cost, high-performance, and chemically recyclable alternatives to bulk polyolefin commodities is critical. Aromatic polyesters synthesized via ring-opening copolymerization (ROCOP) of phthalic anhydride (PA) and olefin-derived epoxides are promising candidates. However, achieving high molecular weight (MW) and chemical recyclability to monomers remain key challenges, especially for epoxides with high isomerization tendency including styrene oxide, 2-vinyloxirane, and isobutylene oxide. Here, we report an organic acid-base pair-mediated strategy for the ROCOP of PA and these bulk-olefin-derived epoxides to produce high-MW (Mn = 105.1–163.3 kDa) polyesters. This strategy effectively suppressed acidic impurities-triggered, PA-mediated self-catalytic isomerization of these acid-sensitive epoxides. The produced high-MW polyesters showed superior mechanical and processing properties comparable to commodity polystyrene as well as high tensile strength (53.1–58.9 MPa) and Young’s modulus (2.16–3.02 GPa). Furthermore, these materials can be chemically recycled into PA and aldehyde monomers under mild conditions, enabling the end-of-life recycling options for ROCOP-derived polyesters. Polyesters from cyclic anhydrides and epoxides provide a recyclable alterative to polyolefins. Here, the authors report high molecular polyesters from phthalic anhydride and acid sensitive epoxies, such as styrene oxide, from which only low molecular weights were previously achieved.
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