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首页> 外文期刊>RSC Advances >Chitin based hybrid composites reinforced with graphene derivatives: a nanoscale study
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Chitin based hybrid composites reinforced with graphene derivatives: a nanoscale study

机译:石墨烯衍生物增强的几丁质基杂化复合材料:纳米研究

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摘要

In this work, we present two novel nanostructured hybrid materials based on a chitin matrix loaded with increasing amounts of graphene oxide and reduced graphene oxide nanosheets (nGO and rGO, respectively). Both kinds of material (Chi: nGO and Chi: rGO) were studied using different spectroscopic and rheological techniques with the aim of understanding the interaction mechanism between chitin and nGO/rGO and explaining how the type of filler and its proportion affects its reinforcement. The production of these hybrids represents not only the obtention of low-cost materials with mechanical resistance but also a good opportunity for developing materials with several applications according to their composition. The nGO and rGO were characterised through FT-IR and ESR for the determination of the oxidation degree of each nanofiller. Then, the hybrids were spectroscopically analysed with FT-IR, ESR and SAXS which demonstrated that the components do not interact through covalent bonding and the nanosheets are well-dispersed among the chitin matrix. Finally, a rheological behavior assay was performed and its results were analysed in terms of G' and eta*. In short, all the results allowed us to conclude that nGO acts as a more efficient reinforcer than rGO due to the higher amount of hydrogen bonding established with chitin.
机译:在这项工作中,我们介绍了两种基于甲壳质基质的新型纳米结构杂化材料,该基质负载了越来越多的氧化石墨烯和减少的氧化石墨烯纳米片(分别为nGO和rGO)。两种材料(Chi:nGO和Chi:rGO)都使用不同的光谱学和流变学技术进行了研究,目的是了解几丁质与nGO / rGO之间的相互作用机理,并解释填料的类型及其比例如何影响其增强作用。这些杂化物的生产不仅代表了获得具有机械阻力的低成本材料,而且代表了根据其组成开发具有多种用途的材料的良好机会。通过FT-IR和ESR对nGO和rGO进行表征,以确定每种纳米填料的氧化程度。然后,用FT-IR,ESR和SAXS对杂化物进行光谱分析,结果表明这些成分不会通过共价键相互作用,并且纳米片材在甲壳质基质中分布良好。最后,进行流变行为测定,并根据G'和eta *分析其结果。简而言之,所有结果都使我们得出结论,由于与几丁质建立的氢键数量更高,因此nGO比rGO更有效。

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