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Organocatalytic Ring-Opening Copolymerization of Trimethylene Carbonate and Dithiolane Trimethylene Carbonate: Impact of Organocatalysts on Copolymerization Kinetics and Copolymer Microstructures

机译:三亚碳酸亚乙酯和二硫醇三甲基碳酸酯的有机催化开环共聚:有机催化剂对共聚动力学和共聚物微观结构的影响

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The ring opening copolymerization of trimethylene carbonate (TMC) and dithiolane trimethylene carbonate (DTC) using acidic and basic organocatalysts, i.e., diphenyl phosphate (DPP) and triazabicyclo[4.4.0]elec-5-ene (TBD), was systemically investigated. Interestingly, DPP and TBD gave rise to completely different polymerization kinetics and copolymer sequences. The copolymerization of TMC and DTC using methoxy poly(ethylene glycol) (mPEG OH) as an initiator and DPP as a catalyst proceeded in a first-order manner and to near completion in 72 h for both monomers, yielding well-controlled copolymers with random sequences, predictable molar mass, and low dispersity (M-w/M-n = 1.09-1.19). By contrast, TBD brought about much faster copolymerization of TMC and DTC under similar conditions (high monomer conversion achieved in 2-4 h), to furnish copolymers with controlled molar mass and moderate dispersity (M-w/M-n = 1.27-1.80). Moreover, polymerization kinetics revealed that DTC was preferentially polymerized followed by first-order polymerization of TMC, leading to blocky copolymers. These results signify that type of organocatalysts has a critical influence on polymerization kinetics of cyclic carbonates, copolymer sequence, and molar mass control.
机译:使用酸性和碱性有机催化剂,即二苯基(DPP)和三氮杂环(TBD)的酸性和碱性有机催化剂,即二苯基(DPP)和三氮杂环(TBD)的环碳酸亚甲酯(TMC)和二硫醇三甲基碳酸酯(DTC)的开环共聚。有趣的是,DPP和TBD产生了完全不同的聚合动力学和共聚物序列。使用甲氧基聚(乙二醇)(MPEG OH)作为引发剂和DPP作为催化剂的TMC和DTC的共聚以一定顺序的方式进行,并在72小时内完成,对于两种单体,产生良好控制的共聚物序列,可预测的摩尔质量和低分散度(MW / MN = 1.09-19)。相比之下,TBD在类似条件下促进了TMC和DTC的更快的共聚(在2-4小时内实现的高单体转化),以配给具有受控摩尔质量和中等分散性的共聚物(M-W / M-N = 1.27-1.80)。此外,聚合动力学显示DTC优先聚合,然后通过TMC的一级聚合,导致嵌体共聚物。这些结果表示,有机催化剂类型对环碳酸酯,共聚物序列和摩尔质量对照的聚合动力学具有关键影响。

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