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Nanosilk-Grafted Poly(lactic acid) Films: Influenceof Cross-Linking on Rheology and Thermal Stability

机译:纳米丝接枝的聚乳酸薄膜:影响交联对流变学和热稳定性的影响

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摘要

This article reports a novel fabrication of branched cum cross-linked poly(lactic acid) (PLA) with nanosilk fibroin with graft chain topology by reactive extrusion process. It could be possible by the addition of a small amount of radical initiator (dicumyl peroxide (DCP)). Grafting of silk nanocrystals (SNCs) on PLA macromolecules that provides remarkable improvement in the rheological and thermal properties of the latter are confirmed by 1H NMR and Fourier transform infrared investigation. Significant improvement is observed in zero shear viscosities, and the crossover point shifts to lower frequencies as compared to the branched and cross-linked PLA system. Along with SNC grafting, the crystallization process is also enhanced and stable crystals appeared during cooling, which results in a single melting peak. The rate of crystallization of PLA has been improved although the percentage crystallinity reduces with DCP content, as higher grafting and cross-linking restricts the chain segmental motion, which is critical for crystallization process. Furthermore, SNC grafting increases the reprocessabilityperformance of PLA and provides higher rheological properties as comparedto the branched and cross-linked PLA at all reprocessing cycles.
机译:本文报道了一种通过反应挤出工艺制备具有接枝链拓扑结构的纳米丝素蛋白支化暨交联聚乳酸(PLA)的新方法。通过添加少量的自由基引发剂(过氧化二枯基二氯乙酸(DCP))是可能的。 1 1 H NMR和傅里叶变换红外光谱研究证实,在PLA大分子上接枝的纳米丝(SNC)可以显着改善后者的流变学和热学性质。与支链和交联的PLA系统相比,在零剪切粘度下观察到了显着的改善,并且交叉点转移到了较低的频率。与SNC接枝一起,结晶过程也得到增强,冷却过程中出现了稳定的晶体,这导致了一个熔融峰。尽管随着DCP含量的增加,结晶度百分比降低,但PLA的结晶速率得到了提高,因为更高的接枝和交联限制了链段运动,这对结晶过程至关重要。此外,SNC嫁接提高了可再加工性与PLA相比具有更高的流变性在所有后处理周期中都转移到支链和交联的PLA上。

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