Wang Shuo, Tian Zi-You, Lu Hua
Beijing National Laboratory for Molecular Sciences, Center for Soft Matter Science and Engineering, Key Laboratory of Polymer Chemistry and Physics of Ministry of Education, College of Chemistry and Molecular Engineering, Peking University, Beijing, 100871, China.
Angew Chem Int Ed Engl. 2024 Nov 4;63(45):e202411630. doi: 10.1002/anie.202411630. Epub 2024 Sep 13.
Polythioesters (PTEs) are emerging sustainable polymers for their degradability and recyclability. However, low polymerizability of monomers and extensive side reactions often hampered the polymerization process. Moreover, copolymers containing both thioester and other types of functional groups in the backbone are highly desirable but rarely accomplished owing to several synthetic challenges. Here, we report the ring-opening cascade polymerization (ROCAP) of N-(2-(acetylthio)ethyl)-glycine N-carboxyanhydrides (TE-NCA) to afford recyclable PTEs and unprecedented poly(thioester-co-peptoid)s (P(TE-co-PP)s) in a controlled manner. By developing appropriated carboxylic acid-tertiary amine dual catalysts, intramolecular S-to-N acyl shift is coupled into the ROCAP process of TE-NCA to yield products with dispersity below 1.10, molecular weight (M) up to 84.5 kDa, and precisely controlled ratio of thioester to peptoids. Random copolymerization of sarcosine NCA (Sar-NCA) and TE-NCA gives thioester-embedded polysarcosine with facile backbone degradation while maintaining the water solubility. This work represents a paradigm shift for the ROP of NCAs, enriches the realm of cascade polymerizations, and provides a powerful synthetic approach to functional PTEs and P(TE-co-PP)s that are otherwise difficult or impossible to make.
聚硫酯(PTEs)因其可降解性和可回收性而成为新兴的可持续聚合物。然而,单体的低聚合性和广泛的副反应常常阻碍聚合过程。此外,主链中同时含有硫酯和其他类型官能团的共聚物非常理想,但由于存在一些合成挑战,很少能够实现。在此,我们报道了N-(2-(乙酰硫基)乙基)-甘氨酸N-羧酸酐(TE-NCA)的开环级联聚合(ROCAP),以可控方式制备可回收的PTEs和前所未有的聚(硫酯-共-类肽)(P(TE-共-PP)s)。通过开发合适的羧酸-叔胺双催化剂,分子内S到N的酰基转移被引入到TE-NCA的ROCAP过程中,得到分散度低于1.10、分子量(M)高达84.5 kDa且硫酯与类肽比例精确可控的产物。肌氨酸NCA(Sar-NCA)和TE-NCA的无规共聚得到了嵌入硫酯的聚肌氨酸,其主链易于降解,同时保持了水溶性。这项工作代表了NCA开环聚合的范式转变,丰富了级联聚合的领域,并为功能性PTEs和P(TE-共-PP)s提供了一种强大的合成方法,否则这些聚合物很难或无法制备。