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Thermal and aqueous stability improvement of graphene oxide enhanced diphenylalanine nanocomposites

机译:氧化石墨烯增强的二苯丙氨酸纳米复合材料的热稳定性和水稳定性

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摘要

Nanocomposites of diphenylalanine (FF) and carbon based materials provide an opportunity to overcome drawbacks associated with using FF micro- and nanostructures in nanobiotechnology applications, in particular their poor structural stability in liquid solutions. In this study, FF/graphene oxide (GO) composites were found to self-assemble into layered micro- and nanostructures, which exhibited improved thermal and aqueous stability. Dependent on the FF/GO ratio, the solubility of these structures was reduced to 35.65% after 30 min as compared to 92.4% for pure FF samples. Such functional nanocomposites may extend the use of FF structures to e.g. biosensing, electrochemical, electromechanical or electronic applications.
机译:二苯丙氨酸(FF)和碳基材料的纳米复合材料提供了克服与在纳米生物技术应用中使用FF微结构和纳米结构相关的缺点的机会,特别是它们在液体溶液中较差的结构稳定性。在这项研究中,发现FF /氧化石墨烯(GO)复合物能自组装成层状的微结构和纳米结构,从而表现出改善的热稳定性和水稳定性。根据FF / GO的比例,这些结构的溶解度在30分钟后降低到35.65%,而纯FF样品的溶解度则为92.4%。这样的功能性纳米复合材料可以将FF结构的用途扩展到例如。生物传感,电化学,机电或电子应用。

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