首页> 外文期刊>Progress in Organic Coatings: An International Review Journal >Curing behavior of epoxy/Fe3O4 nanocomposites: A comparison between the effects of bare Fe3O4, Fe3O4/SiO2/chitosan and Fe3O4/SiO2/chitosan/imide/phenylalanine-modified nanofillers
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Curing behavior of epoxy/Fe3O4 nanocomposites: A comparison between the effects of bare Fe3O4, Fe3O4/SiO2/chitosan and Fe3O4/SiO2/chitosan/imide/phenylalanine-modified nanofillers

机译:环氧树脂/ Fe3O4纳米复合材料的固化行为:裸FE3O4,Fe3O4 / SiO2 /壳聚糖和Fe3O4 / SiO2 /壳聚糖/酰亚胺/苯丙氨酸改性纳米填料的效果比较

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摘要

In this study, Fe3O4 magnetic nanoparticles (MNPs) were synthesized (B-MNP) and then modified with SiO2 to form Fe3O4/SiO2 core/shell MNPs. The Fe3O4/SiO2 MNPs were chemically functionalized with chitosan so as to gain Fe3O4/SiO2/Chitosan (CH-MNP). The CH-MNP was functionalized with a macromolecule containing imide and phenylalanine precursors to gain Fe3O4/SiO2/Chitosan/imide/phenylalanine based MNPs (CH-IM-MNP). The differences in chemical structures of the synthesized MNPs were quantified by FTIR and TGA analyses, where grafting ratios of ca. 6 and 28% were calculated for CH-MNP and CH-IM-MNP nanoparticles, respectively. Nanocomposites were prepared by addition of very low (0.1 wt.% nanoparticle based on 100 parts by weight of epoxy) to epoxy/amine systems. Curing behavior of the blank and MNPs-incorporated nanocomposites were studied by nonisothermal DSC analyses varying heating rate, which allowed for giving useful insights into the effect of chemical surface functionalization of MNPs on the curing potential/behavior of epoxy/amine systems. Analysis of fracture surface of the blank and MNPs-incorporated systems using SEM micrographs revealed a very high potential of cure when CH-IM-MNP added to epoxy/amine formulation.
机译:在该研究中,合成Fe3O4磁性纳米颗粒(MNP)(B-MNP),然后用SiO 2改性形成Fe 3 O 4 / SiO 2核/壳MNP。使用壳聚糖化学官能化Fe 3 O 4 / SiO 2 MNP,以获得Fe 3 O 4 / SiO 2 /壳聚糖(CH-MNP)。 CH-MNP用含有酰亚胺和苯丙氨酸前体的大分子官能化,得到Fe 3 O 4 / SiO 2 /壳聚糖/酰亚胺/苯丙氨酸的MNP(CH-IM-MNP)。通过FTIR和TGA分析量化合成MNP的化学结构的差异,其中CA的接枝比。分别针对CH-MNP和CH-IM-MNP纳米颗粒计算了6和28%。通过向环氧/胺系统加入非常低(0.1重量份的环氧树脂)来制备纳米复合材料。通过非等温DSC分析不同加热速率的坯料和MNP掺入纳米复合材料的固化行为,其允许对MNP的化学表面官能化对环氧/胺系统的固化电位/行为进行有用的见解。使用SEM显微照片的坯料和MNPS掺入系统的骨折表面分析显示,当CH-IM-MNP加入环氧/胺制剂时,CURE的潜力很高。

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