Zhu Jianglin, Luo Xiaoming, Li Xin
Southern Marine Science and Engineering Guangdong Laboratory (Zhanjiang), Zhanjiang 524000, China.
Polymers (Basel). 2023 Jan 31;15(3):720. doi: 10.3390/polym15030720.
Aliphatic polycarbonate (APC) compounds are an important class of biodegradable materials with excellent biocompatibility, good biodegradability, and low toxicity, and the study of these compounds and their modification products aims to obtain biodegradable materials with better performance. In this context, the ring-opening polymerization (ROP) of trimethylene carbonate (TMC) from a low nucleophilic organic superbase of phosphazene (-BuP) as a catalyst and benzyl alcohol (BnOH) as an initiator at room temperature was carefully studied to prepare poly(trimethylene carbonate) (PTMC) which is one of the most studied APC. H NMR and SEC measurements clearly demonstrate the presence of a benzyloxy group at the -terminus of the obtained PTMC homopolymers while investigation of the polymerization kinetics confirms the controlled/living nature of -BuP-catalyzed ROP of TMC. On the basis of this, the block copolymerization of TMC and -valerolactone (VL)/-caprolactone (CL) was successfully carried out to give PTMC--PCL and PTMC--PVL copolymers. Furthermore, PTMC with terminal functionality was also prepared with the organocatalytic ROP of TMC through functional initiators. We believe that the present ROP system is a robust, highly efficient, and practical strategy for producing excellent biocompatible and biodegradable PTMC-based materials.
脂肪族聚碳酸酯(APC)化合物是一类重要的可生物降解材料,具有优异的生物相容性、良好的生物降解性和低毒性,对这些化合物及其改性产物的研究旨在获得性能更优的可生物降解材料。在此背景下,对以磷腈类低亲核有机超强碱(-BuP)为催化剂、苄醇(BnOH)为引发剂,在室温下由碳酸三亚甲酯(TMC)进行的开环聚合(ROP)反应进行了细致研究,以制备聚碳酸三亚甲酯(PTMC),它是研究最多的APC之一。1H NMR和SEC测量清楚地表明,在所获得的PTMC均聚物的末端存在苄氧基,而对聚合动力学的研究证实了 -BuP催化的TMC的ROP具有可控/活性聚合的性质。在此基础上,成功地进行了TMC与ε-戊内酯(VL)/ε-己内酯(CL)的嵌段共聚反应,得到了PTMC-b-PCL和PTMC-b-PVL共聚物。此外,还通过官能引发剂利用TMC的有机催化ROP制备了具有末端官能团的PTMC。我们认为,目前的ROP体系是一种用于生产具有优异生物相容性和生物降解性的基于PTMC的材料的强大、高效且实用的策略。