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Controlled porous structures of graphene aerogels and their effect on supercapacitor performance

机译:多孔石墨烯气凝胶结构控制及其对超级电容器性能的影响

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摘要

The design and optimization of 3D graphene nanostructures are critically important since the properties of electrochemical energy storages such as supercapacitors can be dramatically enhanced by tunable porous channels. In this work, we have developed porous graphene aerogels from graphene suspensions obtained via electrochemical exfoliation and explored their application as super-capacitor electrodes. By adjusting the content of the electrolyte in the exfoliation process, the aspect ratio of graphene sheets and the porosity of the graphene network can be optimized. Furthermore, the freezing temperature in the freeze drying step is also found to play a critical role in the resulting pore size distributions of the porous networks. The optimized conditions lead to meso- and macroporous graphene aerogels with a high specific surface area, extremely low densities and superior electrical properties. As a result, the graphene aerogel supercapacitors exhibit a specific capacitance of 325 F g(-1) at 1 A g(-1) and an energy density of 45 Wh kg(-1) in a 0.5 M H2SO4 aqueous electrolyte with high electrochemical stability and electrode uniformity required for practical usage. This research provides a practical method for lightweight, high-performance and low-cost materials in the effective use of energy storage systems.
机译:三维石墨烯的设计和优化纳米结构是至关重要的,因为电化学能量储存设备的属性如超级电容器可以显著增强了可调多孔通道。工作中,我们已经开发出多孔石墨烯气凝胶从石墨烯悬浮液获得通过电化学剥离和探索应用程序作为超级电容器的电极。电解液的调整内容剥离过程中,石墨烯的长宽比床单和石墨烯的孔隙网络可以优化。温度在冷冻干燥步骤也发现在结果起到至关重要的作用孔隙大小分布的多孔网络。导致中央和优化的条件大孔石墨烯气凝胶具有高比表面积,极低的密度和优越的电气性能。石墨烯气凝胶超级电容器展览比电容325 F g (1) 1 g (1)和Wh 45公斤的能量密度在0.5 (1)硫酸水溶液电解质具有高电化学稳定性和电极一致性要求实际使用。研究提供了一种实用的方法轻量级、高性能和低成本材料的有效利用能源存储系统。

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