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High-performance graphene-based supercapacitors made by a scalable blade-coating approach

机译:通过可扩展的叶片涂覆方法制造的基于石墨烯的高性能超级电容器

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Graphene oxide (GO) sheets can form liquid crystals (LCs) in their aqueous dispersions that are more viscous with a stronger LC feature. In this work we combine the viscous LC-GO solution with the blade-coating technique to make GO films, for constructing graphene-based supercapacitors in a scalable way. Reduced GO (rGO) films are prepared by wet chemical methods, using either hydrazine (HZ) or hydroiodic acid (HI). Solid-state supercapacitors with rGO films as electrodes and highly conductive carbon nanotube films as current collectors are fabricated and the capacitive properties of different rGO films are compared. It is found that the HZ-rGO film is superior to the HI-rGO film in achieving high capacitance, owing to the 3D structure of graphene sheets in the electrode. Compared to gelled electrolyte, the use of liquid electrolyte (H2SO4) can further increase the capacitance to 265 F per gram (corresponding to 52 mF per cm(2)) of the HZ-rGO film.
机译:氧化石墨烯(GO)片可以在其水分散液中形成液晶(LC),这些液晶更粘且具有更强的LC功能。在这项工作中,我们将粘性LC-GO解决方案与刮刀涂布技术相结合,以制造GO膜,从而以可扩展的方式构造基于石墨烯的超级电容器。使用肼(HZ)或氢碘酸(HI)通过湿化学方法制备还原GO(rGO)膜。制备了以rGO薄膜为电极,高导电碳纳米管薄膜为集电器的固态超级电容器,并比较了不同rGO薄膜的电容特性。发现由于电极中石墨烯片的3D结构,HZ-rGO膜在实现高电容方面优于HI-rGO膜。与凝胶电解质相比,使用液态电解质(H2SO4)可以将HZ-rGO膜的电容进一步提高到每克265 F(相当于每cm(2)52 mF)。

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