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Enzymatic Synthesis and Chemical Recycling of Novel Polyester-Type Thermoplastic Elastomers

机译:新型聚酯型热塑性弹性体的酶促合成和化学回收

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Novel polyester-type thermoplastic elastomers based on poly(alkylene succinate)s were synthesized by the lipase-catalyzed copolymerization of cyclic diol/succinate oligomer and cyclic diol/alkylthiosuccinate oligomer. These copolymers exhibited biodegradabilities by activated sludge and a wide range of thermal and mechanical properties that were dependent on the molecular structure and the content of side alkylthio groups. The degree of crystallinity of the copolymer decreased with increasing content of alkylthio groups, which were introduced into the polymer chain as a soft segment. Furthermore, lipase-catalyzed depolymerization of these copolymers into cyclic oligomers and repolymerization of the oligomers was carried out. A repolymerized copolymer having the same Mw and monomer composition as the initial copolymer was obtained, indicating the chemical recyclability of the copolymer.
机译:通过脂肪酶催化环二醇/琥珀酸酯低聚物和环状二醇/烷基硫代琥珀酸酯低聚物的共聚反应,合成了基于聚(亚烷基琥珀酸酯)的新型聚酯型热塑性弹性体。这些共聚物表现出活性污泥的生物降解性和广泛的热和机械性能,这些性能取决于分子结构和侧链烷硫基的含量。共聚物的结晶度随着烷硫基含量的增加而降低,烷硫基作为软链段引入聚合物链中。此外,进行了这些共聚物的脂肪酶催化的解聚为环状低聚物并进行了低聚物的再聚合。得到具有与初始共聚物相同的Mw和单体组成的再聚合共聚物,表明该共聚物的化学可循环性。

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