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Graphene Oxide as a Novel Nanoplatform for Direct Hybridization of Graphene-SnO2

机译:氧化石墨烯作为用于石墨烯-SnO2直接杂交的新型纳米平台

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Graphene oxide (GO) has been of particular interest because it provides unique properties due to its high surface area, chemical functionality and ease of mass production. GO is produced by chemical exfoliation of graphite and is decorated with oxygen-containing groups such as phenol hydroxyl, epoxide groups and iomzable carboxylic acid groups. Due to the presence of those functional groups, GO can be utilized as a novel platform for hybrid nanocomposites in chemical synthetic approaches. In this work, GO-SnO2 nariocomposites have been prepared through the spontaneous formation of molecular hybrids. When SnO2 precursor solution and GO suspension were simply mixed, Sn~(2+) was spontaneously formed into SnO2 nanoparticles upon the deoxygenation of GO. Through further chemical reduction by adding hydrazine, reduced GO-SnO2 hybrid was finally created. Our investigation for the electrocapacitive properties of hybrid electrode showed the enhanced performance (389 F/g), compared with rGO-only electrode (241 F/g). Our approach offers a scalable, robust synthetic route to prepare graphene-based nanocomposites for supercapacitor electrode via spontaneous hybridization.
机译:氧化石墨烯(GO)由于其高表面积,化学功能和易于批量生产而具有独特的性能,因此受到特别关注。 GO是通过石墨的化学剥落法生产的,并装饰有含氧基团,例如酚羟基,环氧基团和易溶的羧酸基团。由于这些官能团的存在,GO可以用作化学合成方法中杂化纳米复合材料的新型平台。在这项工作中,GO-SnO2纳米复合材料是通过分子杂种的自发形成而制备的。当简单地将SnO2前驱体溶液和GO悬浮液混合时,GO脱氧后,Sn〜(2+)自发形成SnO2纳米颗粒。通过加入肼进行进一步的化学还原,最终创建了还原的GO-SnO2杂化物。与仅使用rGO的电极(241 F / g)相比,我们对混合电极的电电容性能的研究显示出增强的性能(389 F / g)。我们的方法提供了一种可扩展的,强大的合成路线,可通过自发杂交为超级电容器电极制备基于石墨烯的纳米复合材料。

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