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Fabrication of biocompatible and mechanically reinforced graphene oxide-chitosan nanocomposite films

机译:生物相容性和机械增强的氧化石墨烯-壳聚糖纳米复合膜的制备

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Background Graphene oxide (GO)can be dispersed through functionalization, or chemically converted to make different graphene-based nanocomposites with excellent mechanical and thermal properties. Chitosan, a partially deacetylated derivative of chitin, is extensively used for food packaging, biosensors, water treatment, and drug delivery. GO can be evenly dispersed in chitosan matrix through the formation of amide linkages between them, which is different from previous reports focusing on preparing GO/chitosan nanocomposites through physical mixing. Results In this study, free-standing graphene oxide-chitosan (GO-chitosan) nanocomposite films have been prepared. The GO-chitosan films are biologically compatible and mechanically reinforced. Through the formation of amide linkages between GO’s carboxylic acid groups and chitosan's amine groups, GO could be evenly dispersed within the chitosan matrix. We also characterized the GO-chitosan composite films using element analysis, Fourier transform infrared spectroscopy, X-ray photo electron spectroscopy, differential scanning calorimetry, and thermo gravimetric analysis. Compared to pristine chitosan film, the tensile strength of GO-chitosan film is improved by 2.5 folds and Young’s modulus increases by nearly 4.6 folds. The glass transition temperature of GO-chitosan composite film shifts from 118°C to 158°C compared to the pristine chitosan, indicating its enhanced thermal stability. GO-chitosan composite film was also evaluated for its biocompatibility with C3H10T1/2 cells by in vitro fluorescent staining. The graphene oxide-reinforced chitosan composite films could have applications in functional biomaterials. Conclusion The present study describes a useful and simple method to chemically attach biocompatible chitosan onto graphene oxide. We envision that the GO-chitosan film will open avenues for next-generation graphene applications in the realm of functional biomaterial.
机译:背景技术氧化石墨烯(GO)可以通过功能化进行分散,也可以通过化学转化制成具有优异机械和热性能的不同石墨烯基纳米复合材料。壳聚糖是几丁质的部分脱乙酰基衍生物,已广泛用于食品包装,生物传感器,水处理和药物输送。 GO可以通过在它们之间形成酰胺键而均匀地分散在壳聚糖基质中,这与以前的研究重点在于通过物理混合制备GO /壳聚糖纳米复合材料不同。结果在本研究中,制备了自支撑氧化石墨烯-壳聚糖(GO-壳聚糖)纳米复合膜。 GO-壳聚糖膜具有生物相容性和机械增强性。通过在GO的羧酸基团和壳聚糖的胺基之间形成酰胺键,GO可以均匀地分散在壳聚糖基质中。我们还使用元素分析,傅立叶变换红外光谱,X射线光电子能谱,差示扫描量热法和热重分析法对GO-壳聚糖复合膜进行了表征。与原始壳聚糖膜相比,GO-壳聚糖膜的拉伸强度提高了2.5倍,杨氏模量提高了近4.6倍。与原始壳聚糖相比,GO-壳聚糖复合膜的玻璃化转变温度从118°C转变为158°C,表明其热稳定性得到增强。还通过体外荧光染色评估了GO-壳聚糖复合膜与C3H10T1 / 2细胞的生物相容性。氧化石墨烯增强的壳聚糖复合膜可在功能性生物材料中应用。结论本研究描述了一种有效且简单的方法,可将生物相容性壳聚糖化学连接到氧化石墨烯上。我们设想,GO-壳聚糖膜将为功能性生物材料领域中的下一代石墨烯应用开辟道路。

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