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Mesoporous hollow carbons on graphene and their electrochemical properties

机译:石墨烯上的中孔空心碳及其电化学性质

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We report the formation of mesoporous hollow carbons with diameters of about 30-40 nm on a graphene (MHCG) surface formed using graphite, the surfactant Pluronic F-127, and porous silica on the graphene as a template to produce a sheet. The specific surface area of the sample produced is 1793.45 m(2) g(-1), which is hundreds of times larger than that of graphite (31.38 m(2) g(-1)). When applied to supercapacitor electrodes, the MHCG electrode exhibits outstanding maintenance of energy density above 30 W h kg(-1) even under 1 kW kg(-1) power density, which is attributed to extremely fast electron supply through graphene layers and facile penetration of electrolyte through highly-developed mesopores.
机译:我们报道了使用石墨,表面活性剂Pluronic F-127和多孔硅石作为模板在石墨烯上形成的石墨烯(MHCG)表面上直径约30-40 nm的中孔空心碳的形成。产生的样品的比表面积为1793.45 m(2)g(-1),比石墨(31.38 m(2)g(-1))大数百倍。当应用于超级电容器电极时,MHCG电极即使在1 kW kg(-1)的功率密度下,仍表现出出色的能量密度维持,高于30 W h kg(-1),这归因于通过石墨烯层提供的极快的电子供应和易于渗透通过高度发达的中孔产生的电解质

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