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迈向基于碳水化合物衍生聚酰胺共混物的高性能材料。

Towards High-performance Materials Based on Carbohydrate-Derived Polyamide Blends.

作者信息

Wróblewska Aleksandra A, Leoné Nils, De Wildeman Stefaan M A, Bernaerts Katrien V

机构信息

Faculty of Science and Engineering, Biobased Materials, Maastricht University, P.O. Box 616, 6200 MD Maastricht, The Netherlands.

出版信息

Polymers (Basel). 2019 Mar 4;11(3):413. doi: 10.3390/polym11030413.

Abstract

A bio-derived monomer called 2,3:4,5-di--isopropylidene-galactarate acid/ester (GalXMe) has great potential in polymer production. The unique properties of this molecule, such as its rigidity and bulkiness, contribute to the good thermal properties and appealing transparency of the material. The main problem, however, is that like other biobased materials, the polymers derived thereof are very brittle. In this study, we report on the melt blending of GalXMe polyamides (PAs) with different commercial PA grades using extrusion as well as blend characterization. Biobased PA blends showed limited to no miscibility with other polyamides. However, their incorporation resulted in strong materials with high Young moduli. The increase in modulus of the prepared GalXMe blends with commercial PAs ranged from up to 75% for blends with aliphatic polyamide composed of 1,6-diaminohexane and 1,12-dodecanedioic acid PA(6,12) to up to 82% for blends with cycloaliphatic polyamide composed of 4,4'-methylenebis(cyclohexylamine) and 1,12-dodecanedioic acid PA(PACM,12). Investigation into the mechanism of blending revealed that for some polyamides a transamidation reaction improved the blend compatibility. The thermal stability of the biobased PAs depended on which diamine was used. Polymers with aliphatic/aromatic or alicyclic diamines showed no degradation, whereas with fully aromatic diamines such as p-phenylenediamine, some degradation processes were observed under extrusion conditions (260/270 °C).

摘要

一种名为2,3:4,5-二异亚丙基半乳糖酸/酯(GalXMe)的生物衍生单体在聚合物生产中具有巨大潜力。该分子的独特性质,如刚性和体积较大,有助于材料具有良好的热性能和吸引人的透明度。然而,主要问题是,与其他生物基材料一样,由此衍生的聚合物非常脆。在本研究中,我们报告了使用挤出法将GalXMe聚酰胺(PAs)与不同商业PA等级进行熔融共混以及共混物表征的情况。生物基PA共混物与其他聚酰胺的互溶性有限或几乎不互溶。然而,它们的加入产生了具有高杨氏模量的高强度材料。制备的GalXMe共混物与商业PA的模量增加范围从与由1,6-二氨基己烷和1,12-十二烷二酸PA(6,12)组成的脂肪族聚酰胺的共混物的高达75%到与由4,4'-亚甲基双(环己胺)和1,12-十二烷二酸PA(PACM,12)组成的脂环族聚酰胺的共混物的高达82%。对共混机理的研究表明,对于某些聚酰胺,酰胺交换反应改善了共混物的相容性。生物基PA的热稳定性取决于所使用的二胺。含有脂肪族/芳香族或脂环族二胺的聚合物没有降解,而对于全芳香族二胺,如对苯二胺,在挤出条件(260/270°C)下观察到了一些降解过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ff0d/6473389/ef5a95c6351e/polymers-11-00413-g001.jpg

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