聚合
聚合物
化学
异构化
聚乙烯
戒指(化学)
原子经济
纳米技术
有机化学
材料科学
催化作用
作者
Pengjun Yuan,Yangyang Sun,Xiaowei Xu,Yi Luo,Miao Hong
出处
期刊:Nature Chemistry
[Nature Portfolio]
日期:2021-11-25
卷期号:14 (3): 294-303
被引量:124
标识
DOI:10.1038/s41557-021-00817-9
摘要
The development of sustainable polymers that possess useful material properties competitive with existing petroleum-derived polymers is a crucial goal but remains a formidable challenge for polymer science. Here we demonstrate that irreversible ring-opening polymerization (IROP) of biomass-derived five-membered thionolactones is an effective and robust strategy for the polymerization of non-strained five-membered rings-these polymerizations are commonly thermodynamically forbidden under ambient conditions, at industrially relevant temperatures of 80-100 °C. Computational studies reveal that the selective IROP of these thionolactones is thermodynamically driven by S/O isomerization during the ring-opening process. IROP of γ-thionobutyrolactone, a representative non-strained thionolactone, affords a sustainable polymer from renewable resources that possesses external-stimuli-triggered degradability. This poly(thiolactone) also exhibits high performance, with its key thermal and mechanical properties comparing well to those of commercial petroleum-based low-density polyethylene. This IROP strategy will enable conversion of five-membered lactones, generally unachievable by other polymerization methods, into sustainable polymers with a range of potential applications.
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