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首页> 外文期刊>Materials & design >Improvement in melt flow property and flexibility of poly(L-lactide)-b- poly(ethylene glycol)-b-poly(L-lactide) by chain extension reaction for potential use as flexible bioplastics
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Improvement in melt flow property and flexibility of poly(L-lactide)-b- poly(ethylene glycol)-b-poly(L-lactide) by chain extension reaction for potential use as flexible bioplastics

机译:通过扩链反应提高聚(L-丙交酯)-b-聚(乙二醇)-b-聚(L-丙交酯)的熔体流动性和柔韧性,可潜在用作柔性生物塑料

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摘要

Poly(L-lactide) (PLLA) is a biodegradable bioplastic that has been widely investigated for use instead of petroleum-based plastics. However, its practical applications have been limited by its brittleness. Herein, a high molecular weight triblock copolymer of poly(L-lactide)-b-poly(ethylene glycol)-b-poly(L-lactide) (PLLA-PEG-PLLA) was synthesized by ring-opening polymerization of L-lactide using stannous octoate and PEG as the initiating system. The effect of an epoxy-based chain extender on the thermal properties, melt flow index (MFI), phase morphology and tensile properties of the PLLA-PEG-PLLA were investigated and compared to PLLA homopolymer. Chain-extended PLLA-PEG-PLLA and its films were prepared by reactive melt blending and compression molding, respectively. The flexible PEG blocks significantly improved both crystallization of PLLA blocks and strain at break of PLLA-PEG-PLLA films. The chain extension can decrease MFI of both the PLLA and PLLA-PEG-PLLA but their crystallizabilities were suppressed. All the PLLA-PEG-PLLA films with and without chain extension had no phase separation. The tensile properties of PLLA-PEG-PLLA films increased by the chain extension. The results showed that the chain-extended PLLA-PEG-PLLA have potential for use as highly flexible bioplastics. (c) 2018 Elsevier Ltd. All rights reserved.
机译:聚(L-丙交酯)(PLLA)是一种可生物降解的生物塑料,已广泛研究替代石油基塑料。但是,其实际应用受到其脆性的限制。在此,通过L-丙交酯的开环聚合,合成了聚(L-丙交酯)-b-聚(乙二醇)-b-聚L-丙交酯(PLLA-PEG-PLLA)的高分子量三嵌段共聚物。使用辛酸亚锡和PEG作为起始体系。研究了环氧基扩链剂对PLLA-PEG-PLLA的热性能,熔体流动指数(MFI),相形态和拉伸性能的影响,并将其与PLLA均聚物进行了比较。扩链的PLLA-PEG-PLLA及其薄膜分别通过反应性熔融共混和压缩成型制备。柔性PEG嵌段显着改善了PLLA嵌段的结晶和PLLA-PEG-PLLA膜断裂时的应变。扩链可以降低PLLA和PLLA-PEG-PLLA的MFI,但是它们的结晶性受到抑制。所有具有和不具有链扩展的PLLA-PEG-PLLA薄膜都没有相分离。 PLLA-PEG-PLLA薄膜的拉伸性能因扩链而增加。结果表明,扩链的PLLA-PEG-PLLA具有用作高柔性生物塑料的潜力。 (c)2018 Elsevier Ltd.保留所有权利。

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