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Toward Sustainable Poly(lactic acid)/Poly(propylene carbonate) Blend Films with Balanced Mechanical Properties High Optical Transmittance and Gas Barrier Performance via Reactive Compatibilization and Biaxial Stretching

机译:通过反应相容和双轴拉伸实现具有平衡机械性能、高透光率和气体阻隔性能的可持续聚乳酸/聚碳酸丙烯酯共混薄膜

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摘要

Sustainable poly(lactic acid) (PLA)/poly(propylene carbonate) (PPC) blends were compatibilized by the environmentally friendly epoxidized soybean oil (ESO) through the chemical reaction of epoxy functional groups on ESO with the terminated carboxyl and hydroxyl groups of PLA/PPC. The compatibilization effect of ESO was confirmed by Fourier transform infrared spectroscopy, rheological property testing, differential scanning calorimetry, and morphological observations. It was revealed that the molecular chain entanglement between PLA and PPC was significantly enhanced and the dispersed PPC phase size was decreased, which endowed the blend with high viscosity modulus, low tan δ, and great stretchability, especially for the blend containing 1.0 wt % ESO. The compatibilization effect dramatically reinforced the toughening modification of PPC on PLA, resulting in a great ductility with a fracture strain up to 187.3%, more than 20 times that of the pristine PLA, while maintaining a high strength of 44.5 MPa. Compared to the neat PLA and the PLA/PPC blend, the compatibilized blend showed a much larger draw ratio of up to 6.5 × 6.5 during biaxial stretching, producing a uniform film with balanced mechanical properties, high optical transparency, and good oxygen barrier performance. This work will be of vital importance for guiding the preparation of PLA-based films with superior comprehensive properties.
机译:可持续的聚乳酸 (PLA)/聚碳酸丙烯酯 (PPC) 混合物通过 ESO 上的环氧官能团与 PLA/PPC 的末端羧基和羟基发生化学反应,与环保型环氧大豆油 (ESO) 相容。通过傅里叶变换红外光谱、流变学特性测试、差示扫描量热法和形态学观察证实了 ESO 的相容效应。结果表明,PLA 和 PPC 之间的分子链纠缠显著增强,分散的 PPC 相尺寸减小,这使混合物具有高粘度模量、低 tan δ和出色的拉伸性,尤其是对于含有 1.0 wt % ESO 的混合物。相容效应极大地增强了 PPC 对 PLA 的增韧改性,从而产生了很大的延展性,断裂应变高达 187.3%,是原始 PLA 的 20 倍以上,同时保持了 44.5 MPa 的高强度。与纯 PLA 和 PLA/PPC 共混物相比,相容共混物在双向拉伸过程中显示出高达 6.5 × 6.5 的更大拉伸比,从而产生具有平衡机械性能、高光学透明度和良好氧阻隔性能的均匀薄膜。这项工作对于指导制备具有优异综合性能的 PLA 基薄膜至关重要。

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