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Cellulose dissolved in ionic liquids as in situ generated filler in epoxy biocomposites with simultaneous curing initiated by ionic liquids

机译:纤维素溶解在离子液体中,作为环氧树脂生物复合材料中的原位生成填料,同时由离子液体引发固化

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摘要

Cellulose, a ubiquitous natural biopolymer, has diverse applications in industries such as paper manufacturing, textiles, and food. A pivotal breakthrough emerged with the discovery that ionic liquids (ILs) can dissolve cellulose, initiating comprehensive studies over the past two decades. This study explores the effectiveness of a selected system comprising EMIMOAc, EMIMDCA, and DMSO in cellulose dissolution, validated through a 5 cellulose solution, and the use of such systems as initiators of epoxy resin curing. In epoxy resin systems, the cellulose fibers formed in situ affect the mechanical properties of the final materials, which in the work presented here were flax fiber-reinforced epoxy composites. Differential Scanning Calorimetry (DSC) showed that cellulose inclusion minimally affected curing temperatures but reduced enthalpy. Scanning Electron Microscopy (SEM) demonstrated in situ cellulose fiber generation during mixing, ensuring high compatibility with the resin matrix. Mechanical testing revealed promising outcomes, including increased glass transition temperature (Tg) and enhanced Heat Deflection Temperature (HDT). However, a 50 reduction in impact strength indicated increased brittleness.
机译:纤维素是一种无处不在的天然生物聚合物,在造纸、纺织和食品等行业有多种应用。随着离子液体 (IL) 可以溶解纤维素的发现,出现了一个关键的突破,开启了过去二十年的全面研究。本研究探讨了由 [EMIM][OAc]、[EMIM][DCA] 和 DMSO 组成的选定系统在纤维素溶解中的有效性,通过 5% 纤维素溶液进行验证,以及使用此类系统作为环氧树脂固化的引发剂。在环氧树脂系统中,原位形成的纤维素纤维会影响最终材料的机械性能,在这里介绍的工作中是亚麻纤维增强环氧树脂复合材料。差示扫描量热法 (DSC) 表明,纤维素夹杂物对固化温度的影响最小,但焓值降低。扫描电子显微镜 (SEM) 显示混合过程中会生成原位纤维素纤维,确保与树脂基质的高度相容性。机械测试显示出有希望的结果,包括提高玻璃化转变温度 (Tg) 和提高热变形温度 (HDT)。然而,冲击强度降低 50% 表明脆性增加。

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