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High-Toughness Poly(lactic Acid)/Starch Blends Prepared through Reactive Blending Plasticization and Compatibilization

机译:通过反应性混合塑化和增容制备的高韧性聚(乳酸)/淀粉共混物

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摘要

In this study, poly(lactic acid) (PLA)/starch blends were prepared through reactive melt blending by using PLA and starch as raw materials and vegetable oil polyols, polyethylene glycol (PEG), and citric acid (CA) as additives. The effects of CA and PEG on the toughness of PLA/starch blends were analyzed using a mechanical performance test, scanning electron microscope analysis, differential scanning calorimetry, Fourier-transform infrared spectroscopy, X-ray diffraction, rheological analysis, and hydrophilicity test. Results showed that the elongation at break and impact strength of the PLA/premixed starch (PSt)/PEG/CA blend were 140.51% and 3.56 kJ·m−2, which were 13.4 and 1.8 times higher than those of pure PLA, respectively. The essence of the improvement in the toughness of the PLA/PSt/PEG/CA blend was the esterification reaction among CA, PEG, and starch. During the melt-blending process, the CA with abundant carboxyl groups reacted in the amorphous region of the starch. The shape and crystal form of the starch did not change, but the surface activity of the starch improved and consequently increased the adhesion between starch and PLA. As a plasticizer for PLA and starch, PEG effectively enhanced the mobility of the molecular chains. After PEG was dispersed, it participated in the esterification reaction of CA and starch at the interface and formed a branched/crosslinked copolymer that was embedded in the interface of PLA and starch. This copolymer further improved the compatibility of the PLA/starch blends. PEGs with small molecules and CA were used as compatibilizers to reduce the effect on PLA biodegradability. The esterification reaction on the starch surface improved the compatibilization and toughness of the PLA/starch blend materials and broadens their application prospects in the fields of medicine and high-fill packaging.
机译:在该研究中,通过使用PLA和淀粉作为原料和植物油多元醇,聚乙二醇(PEG)和柠檬酸(CA)作为添加剂来制备聚(乳酸)/淀粉共混物。使用机械性能测试,扫描电子显微镜分析,差动扫描量热法,傅立叶变换红外光谱,X射线衍射,流变性分析和亲水性试验,分析了Ca和PEG对PLA /淀粉混合物的韧性的效果。结果表明,PLA /预混淀粉(PST)/ PEG / CA混合物的断裂和冲击强度的伸长率为140.51%和3.56 kJ·M-2,分别比纯PLA高13.4%和1.8倍。 PLA / PST / PEG / PEG / CA混合物韧性改善的本质是Ca,PEG和淀粉之间的酯化反应。在熔融混合过程中,具有丰富的羧基的Ca在淀粉的无定形区域中反应。淀粉的形状和晶形不改变,但淀粉的表面活性改善并因此增加了淀粉和PLA之间的粘附性。作为PLA和淀粉的增塑剂,PEG有效地增强了分子链的迁移率。在分散PEG之后,它参与了界面的Ca和淀粉的酯化反应,并形成了嵌入PLA和淀粉的界面中的支链/交联共聚物。该共聚物进一步改善了PLA /淀粉共混物的相容性。用小分子和Ca的PEG用作增容剂,以减少对PLA生物降解性的影响。淀粉表面上的酯化反应改善了PLA /淀粉共混物材料的相容性和韧性,并在医学领域和高填充包装领域的应用前景。

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