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L-聚乳酸/聚乙二醇/硅酸盐纳米复合材料薄膜的热学和流变性能。

Thermal and rheological properties of L-polylactide/polyethylene glycol/silicate nanocomposites films.

机构信息

Polymer Source, Inc., 124 Avro Street, Dorval, Montreal, Quebec, Canada H9P 2×8.

出版信息

J Food Sci. 2010 Oct;75(8):N97-108. doi: 10.1111/j.1750-3841.2010.01809.x. Epub 2010 Sep 24.

Abstract

The melt rheology and thermal properties of polylactide (PLA)-based nanocomposite films that were prepared by solvent casting method with L-PLA, polyethylene glycol (PEG), and montmorillonite clay were studied. The neat PLA showed predominantly solid-like behavior (G' > G″) and the complex viscosity (η*) decreased systematically as the temperature increased from 184 to 196 °C. The elastic modulus (G') of PLA/clay blend showed a significant improvement in the magnitude in the melt, while clay concentration was at 6% wt or higher. At similar condition, PEG dramatically reduced dynamic modulii and complex viscosity of PLA/PEG blend as function of concentration. A nanocomposite blend of PLA/PEG/clay (74/20/6) when compared to the neat polymer and PLA/PEG blend exhibited intermediate values of elastic modulus (G') and complex viscosity (η*) with excellent flexibility. Thermal analysis of different clay loading blends indicated that the melting temperature (T(m)) and glass transition temperature (T(g)) remained unaffected irrespective of clay concentration due to immobilization of polymer chain in the clay nanocomposite. PEG incorporation reduced the T(g) and the T(m) of the blends (PLA/PEG and PLA/PEG/clay) significantly, however, crystallinity increased in the similar condition. The transmission electron microscopy (TEM) image of nanocomposite films indicated good compatibility between PLA and PEG, whereas clay was not thoroughly distributed in the PLA matrix and remained as clusters. The percent crystallinity obtained by X-ray was significantly higher than that of differential scanning calorimeter (DSC) data for PLA.

摘要

采用溶剂浇铸法制备了聚乳酸(PLA)基纳米复合材料薄膜,研究了其熔融流变性能和热性能。纯 PLA 表现出主要的固态行为(G' > G″),随着温度从 184°C 升高到 196°C,复数黏度(η*)系统地降低。在熔体中,PLA/粘土共混物的弹性模量(G')显著提高,而粘土浓度在 6wt%或更高时。在类似的条件下,PEG 显著降低了 PLA/PEG 共混物的动态模量和复数黏度,这与浓度有关。与纯聚合物和 PLA/PEG 共混物相比,PLA/PEG/粘土(74/20/6)的纳米复合材料共混物表现出中间值的弹性模量(G')和复数黏度(η*),同时具有优异的柔韧性。不同粘土负载共混物的热分析表明,由于聚合物链在粘土纳米复合材料中的固定,熔融温度(T(m))和玻璃化转变温度(T(g))保持不变,而与粘土浓度无关。PEG 的加入显著降低了共混物(PLA/PEG 和 PLA/PEG/粘土)的 T(g)和 T(m),然而,在类似的条件下结晶度增加。纳米复合材料薄膜的透射电子显微镜(TEM)图像表明 PLA 和 PEG 之间具有良好的相容性,而粘土在 PLA 基体中没有得到充分的分散,仍然以团聚体的形式存在。X 射线得到的结晶度百分比明显高于差示扫描量热法(DSC)数据得到的 PLA 结晶度百分比。

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