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Polypropylene glycol and poly(propylene glycol-ethylene glycol) copolymer as biodegradable plasticizers for polylactic acid.

机译:聚丙二醇和聚(丙二醇-乙二醇)共聚物可作为聚乳酸的可生物降解增塑剂。

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摘要

Four new plasticizers for polylactic acid (PLA) were studied. The low molecular weight polypropylene glycol (PPG) and polypropylene glycol end-capped with epoxy groups (PPG-epoxy) were found to be miscible with polylactic acid. The improved mechanical properties of the plasticized PLA remained stable for over a one-year period. The biodegradation tests showed that PPG was biodegradable but PPG-epoxy remained stable during the period of biotesting. No reactions were detected between PLA and PPG-epoxy as determined by GPC and NMR experiments.; The higher molecular weight plasticizers of the poly(propylene glycol-ethylene glycol) block copolymers increased the flexibility and elongation at break of PLA and remained stable for a period of two months. Copolymers were selected to increase the molecular weight of the plasticizer because polypropylene glycol with a molecular weight that is higher than 2000 was found to be immiscible with polylactic acid.; Thermal and dynamic tests revealed that PPG and PPG copolymers were compatible and miscible with PLA. The PEG block in the PPG-PEG copolymers was determined to increase the miscibility of the plasticizers with polylactic acid.
机译:研究了四种新型聚乳酸增塑剂(PLA)。发现低分子量的聚丙二醇(PPG)和末端带有环氧基的聚丙二醇(PPG-环氧)可与聚乳酸混溶。增塑的PLA改善的机械性能在一年内保持稳定。生物降解测试表明PPG是可生物降解的,但PPG-环氧在生物测试期间保持稳定。通过GPC和NMR实验确定,在PLA和PPG-环氧树脂之间未检测到反应。聚(丙二醇-乙二醇)嵌段共聚物的高分子量增塑剂增加了PLA的柔韧性和断裂伸长率,并在两个月内保持稳定。选择共聚物以增加增塑剂的分子量,因为发现分子量大于2000的聚丙二醇与聚乳酸不混溶。热和动态测试表明,PPG和PPG共聚物与PLA相容且互溶。确定PPG-PEG共聚物中的PEG嵌段以增加增塑剂与聚乳酸的混溶性。

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