A novel microfluidic enzyme-organocatalysis combination strategy for ring-opening copolymerizations of lactone, lactide and cyclic carbonate

微型反应器 有机催化 化学 开环聚合 共聚物 单体 聚合 丙交酯 碳酸三甲烯 催化作用 高分子化学 可生物降解聚合物 有机化学 聚合物 组合化学 对映选择合成
作者
Weijun Huang,Ning Zhu,Yihuan Liu,Jian Wang,Jun Zhong,Qin Sun,Tao Sun,Xin Hu,Zheng Fang,Kai Guo
出处
期刊:Chemical Engineering Journal [Elsevier BV]
卷期号:356: 592-597 被引量:32
标识
DOI:10.1016/j.cej.2018.09.033
摘要

A novel microreactor-based enzyme-organocatalysis combination strategy was developed for ring-opening copolymerizations of varied types of cyclic monomers. Commercial Novozyme 435 (N435) and 1,5,7-triazabicyclo [4.4.0] dec-5-ene (TBD) were chosen as the model enzyme and organocatalyst for evaluating the polymerizations of ε-caprolactone (CL), δ-valerolactone (VL), l-lactide (LLA) and trimethylene carbonate (TMC) in the batch and microreactor respectively. Due to the catalytic selectivity, enzymatic polymerization cannot yield block copolymers containing PLA segment and organocatalysis showed poor activity toward CL polymerization. To address these challenges, enzyme and organocatalysis were combined based on microflow technology. In the assembled tandem microreactor system, series of well-defined triblock copolymers, such as PCL-b-PTMC-b-PVL, PCL-b-PTMC-b-PLLA and PTMC-b-PCL-b-PLLA, were efficiently prepared in the flow mode. The convenience of handling the copolymerization conditions and processes, reduced overall reaction time, well-controlled molecular weights and distributions were achieved by employing this microfluidic enzyme-organocatalysis combination strategy.
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