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Bio-based polymer nanocomposites based on layered silicates having a reactive and renewable intercalant

机译:基于具有反应性和可再生插层剂的层状硅酸盐的生物基聚合物纳米复合材料

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Soybean oil-based polymer nanocomposites were synthesized from acrylated epoxidized soybean oil (AESO) combined with styrene monomer and montmorillonite (MMT) clay by using in situ free radical polymerization reaction. Special attention was paid to the modification of MMT clay, which was carried out by methacryl-functionalized and quaternized derivative of methyl oleate intercalant. It was synthesized from olive oil triglyceride, as a renewable intercalant. The resultant nanocomposites were characterized by X-ray diffraction (XRD) and transmission electron microscopy (TEM). The effect of increased nanofiller loading in thermal and mechanical properties of the nanocomposites was investigated by thermogravimetric analysis (TGA) and dynamic mechanical analysis (DMA). The nanocomposites exhibited improved thermal and dynamic mechanical properties compared with neat acrylated epoxidized soybean oil based polymer matrix. The desired exfoliated nanocomposite structure was achieved when the OrgMMT loading was 1 and 2 wt % whereas partially exfoliated nanocomposite was obtained in 3 wt % loading. It was found that about 400 and 500% increments in storage modulus at glass transition and rubbery regions, respectively were achieved at 2 wt % clay loading compared to neat polymer matrix while the lowest thermal degradation rate was gained by introducing 3 wt % clay loading.
机译:通过丙烯酸酯化的环氧大豆油(AESO)与苯乙烯单体和蒙脱土(MMT)粘土相结合,通过原位自由基聚合反应合成了豆油基聚合物纳米复合材料。特别注意MMT粘土的改性,该改性是通过油酸甲酯插层剂的甲基丙烯酸官能化和季铵化衍生物进行的。它是由甘油三酸酯橄榄油(可再生的嵌入剂)合成的。所得纳米复合材料通过X射线衍射(XRD)和透射电子显微镜(TEM)表征。通过热重分析(TGA)和动态力学分析(DMA)研究了纳米填料填充量增加对纳米复合材料热力学性能的影响。与纯丙烯酸酯化的环氧化大豆油基聚合物基体相比,纳米复合材料表现出改善的热和动态机械性能。当OrgMMT负载量为1和2wt%时,获得了所需的剥落的纳米复合材料结构,而在3wt%的负载下获得了部分剥落的纳米复合材料。发现与纯聚合物基质相比,在2wt%粘土负载下,在玻璃化转变区和橡胶状区域的储能模量分别增加了约400%和500%,而通过引入3wt%粘土负载获得了最低的热降解速率。

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