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首页> 外文期刊>Journal of Applied Polymer Science >Effect of silk nano-disc dispersion on mechanical, thermal, and barrier properties of poly(lactic acid) based bionanocomposites
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Effect of silk nano-disc dispersion on mechanical, thermal, and barrier properties of poly(lactic acid) based bionanocomposites

机译:丝纳米椎间盘分散对聚(乳酸)脱硫复合物的机械,热和阻隔性能的影响

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摘要

Exacerbated environmental concerns about petroleum-based plastics provide the impetus to foster sustainable poly(lactic acid) (PLA) based food packaging. Nonetheless, PLA has its foibilities such as its brittleness, higher gas permeability, and slow crystallization. With the intent to mitigate the above shortcomings, we report a maiden effort for the fabrication of PLA/crystalline silk nano-discs (CSNs) based bionanocomposites by melt-extrusion for high temperature engineering and food packaging applications. Acid hydrolyzed silk fibroin from muga silk (Antheraea assama) yields CSNs, a crystalline hydrophobic discotic nanofiller with diameter of approximate to 50 nm and thickness approximate to 3 nm. At optimum loadings of 1 wt % uniform dispersed CSNs with percolated network structures covering the entire matrix can be seen. Due to enhanced crystal nucleation density, water vapor, and oxygen permeability reduced by approximate to 30% and approximate to 70%, respectively. Enhancement in toughness, percentage elongation, and tensile strength up to approximate to 65%, approximate to 40%, and approximate to 10%, respectively, is obtained. Onset of thermal decomposition for the PLA/CSN improved approximate to 10 degrees C, confirming the role of CSN in enhancing melt stability. Accordingly, this investigation renders a novel non-invasive approach for increasing the crystallinity with improvement in thermomechanical and barrier properties which make this bionanocomposite, a promising candidate for food packaging applications. (c) 2018 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2018, 135, 46671.
机译:加剧了对石油基塑料的环境问题提供了培养可持续聚(乳酸)(PLA)的食品包装的推动力。尽管如此,PLA具有其脆性,燃气渗透性较高,慢的结晶等力量。随着提高上述缺点的意图,我们通过熔融挤出来报告生产基于PLA /晶体丝纳米盘(CSNS)的脱硫复合材料的熔融挤出来进行高温工程和食品包装应用。来自Muga Silk(Antheraea Assama)的酸水解丝素蛋白产生CSN,一种晶体疏水盘纳米填料,直径近似为50nm,厚度近似为3nm。在1wt%的最佳负载下,可以看到具有覆盖整个基质的渗透网络结构的1wt%分散的CSN。由于增强的晶体成核密度,水蒸气和氧气渗透率分别降低至30%并近似为70%。得到韧性,伸长率和拉伸强度的增强,近似为65%,分别近似为40%,近似为10%。 PLA / CSN的热分解发作改善了近似为10摄氏度,确认CSN在提高熔体稳定性方面的作用。因此,该研究使一种新的非侵入性方法,用于增加热机械和屏障性质的改善,这使得这款脱硫和屏障性质,这是食品包装应用的有希望的候选者。 (c)2018 Wiley期刊,Inc.J.Phill。聚合物。 SCI。 2018,135,46671。

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