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Covalently Bonded Chitosan on Graphene Oxide via Redox Reaction

机译:通过氧化还原反应在氧化石墨烯上共价键合壳聚糖

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摘要

Carbon nanostructures have played an important role in creating a new field of materials based on carbon. Chemical modification of carbon nanostructures through grafting has been a successful step to improve dispersion and compatibility in solvents, with biomolecules and polymers to form nanocomposites. In this sense carbohydrates such as chitosan are extremely valuable because their functional groups play an important role in diversifying the applications of carbon nanomaterials. This paper reports the covalent attachment of chitosan onto graphene oxide, taking advantage of this carbohydrate at the nanometric level. Grafting is an innovative route to modify properties of graphene, a two-dimensional nanometric arrangement, which is one of the most novel and promising nanostructures. Chitosan grafting was achieved by redox reaction using different temperature conditions that impact on the morphology and features of graphene oxide sheets. Transmission Electron Microscopy, Fourier Transform Infrared, Raman and Energy Dispersive spectroscopies were used to study the surface of chitosan-grafted-graphene oxide. Results show a successful modification indicated by the functional groups found in the grafted material. Dispersions of chitosan-grafted-graphene oxide samples in water and hexane revealed different behavior due to the chemical groups attached to the graphene oxide sheet.
机译:碳纳米结构在创建基于碳的材料的新领域中发挥了重要作用。通过接枝对碳纳米结构进行化学修饰是改善与生物分子和聚合物形成纳米复合材料在溶剂中的分散性和相容性的成功步骤。从这个意义上说,诸如壳聚糖的碳水化合物非常有价值,因为它们的官能团在多样化碳纳米材料的应用中起着重要的作用。本文报道了壳聚糖在氧化石墨烯上的共价结合,利用了纳米级碳水化合物的优势。接枝是一种创新的方法,可以改变石墨烯的性质,这是一种二维纳米排列,是最新颖,最有前途的纳米结构之一。壳聚糖接枝反应是通过使用不同温度条件下的氧化还原反应实现的,这些条件会影响氧化石墨烯片的形貌和特征。用透射电子显微镜,傅立叶红外光谱,拉曼光谱和能谱仪研究了壳聚糖接枝氧化石墨烯的表面。结果表明,接枝材料中发现的官能团表明修饰成功。壳聚糖接枝的氧化石墨烯样品在水和己烷中的分散表现出不同的行为,这归因于附着在氧化石墨烯片上的化学基团。

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