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Supertough and Transparent Poly(lactic acid) Nanostructure Blends with Minimal Stiffness Loss

机译:超出和透明聚(乳酸)纳米结构混合,具有最小的刚度损失

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This contribution is an attempt to explore the effectiveness of a series of newly obtained thermoplastic elastomers (TPEs) as a toughening agent for modifying poly(lactic acid) (PLA). The TPEs, including ionically modified isotactic polypropylene-graft -PLA (i PP-g -PLA) copolymers with explicit graft length, graft density, and ionic group content, and an i PP-g -PLA copolymer with a very high molecular weight and explicit graft density, were elaborately designed and synthesized. The semicrystal or rubbery copolymer backbone originated from i PP was designed to improve the toughness and maintain a relatively high strength, while the grafted PLA side chain was to ensure a high level of compatibility with the PLA matrix. To obtain further enhancement in interfacial reinforcement, the imidazolium-based ionic group was also added during graft onto reaction. All of these graft copolymers were identified with randomly distributed PLA branches, bearing a very high molecular weight ((33–398) × 10~(4)) and very high PLA content (57.3–89.3 wt %). Unprecedentedly, with a very small amount of newly designed TPE, the modified PLA blends exhibited a significantly increased elongation at break (up to about 190%) and simultaneously retained the very high stiffness and excellent transparency. The nanometer-scale phase-separated particles with good compatibility and refractive index matching to the PLA matrix were demonstrated to play a crucial role in the excellent performance. The findings suggested that the newly designed i PP-g -PLA copolymers are very economic, promising, and effective modifying agents for developing highly transparent and tough PLA-based sustainable materials.
机译:这种贡献是一种尝试探讨一系列新获得的热塑性弹性体(TPE)作为用于改性聚(乳酸)(PLA)的增韧剂的有效性。 TPE,包括具有明确接枝长度,移植物密度和离子基团含量的离子改性的全偶联聚丙烯 - 移植物-PLA( I pp - 设计和合成,设计和合成了具有非常高的分子量和显式移植物密度的G-PLA共聚物。源自 I PP的半结晶或橡胶共聚物骨架设计以改善韧性并保持相对高的强度,而接枝的PLA侧链是保证与PLA基质的高水平相容性。为了进一步增强界面增强,在移植物到反应过程中也加入基于咪唑鎓的离子基团。用随机分布的PLA分支鉴定所有这些接枝共聚物,轴承非常高的分子量((33-398)×10〜(4))和非常高的PLA含量(57.3-89.3wt%)。前所未有的是,具有非常少量的新设计的TPE,改性的PLA混合物在断裂时显示出显着增加的伸长率(高达约190%)并同时保留了非常高的刚度和优异的透明度。纳米级相分离的颗粒具有良好的相容性和与PLA基质匹配的折射率,以在优异的性能下发挥至关重要的作用。结果表明,新设计的 I PP- G -PLA共聚物是非常经济,有前途和有效的改性剂,用于开发高度透明和坚韧的PLA可持续材料。

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