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Nickel-Graphene Nanoplatelet Deposited on Carbon Fiber as Binder-Free Electrode for Electrochemical Supercapacitor Application

机译:镍 - 石墨烯纳米克薄板沉积在碳纤维上作为无粘合剂电极用于电化学超级电容器应用

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摘要

A binder-free process for the electrode preparation for supercapacitor application was suggested by drop casting graphene nanoplatelets on a carbon fiber (GnP@CF) followed by electrodeposition of Ni nanoparticles (NPs). The microstructure of the electrode showed that Ni was homogeneously distributed over the surface of the GnP@CF. XRD analysis confirmed the cubic structure of metallic Ni NPs. The Ni-GnP@CF electrode showed excellent pseudocapacitive behavior in alkaline solution by exhibiting a specific capacitance of 480 F/g at 1.0 A/g, while it was 375 F/g for Ni@CF. The low value of series resistance of Ni-GnP@CF (1 Ω) was attributed to the high capacitance. The enhanced capacitance of the electrode could be correlated to the highly nanoporous structure of the composite material, synergetic effect of the electrical double layer charge-storage properties of graphene, and the pseudocapacitive nature of Ni NPs.
机译:通过将铸造石墨烯纳米纳薄物在碳纤维(GNP @ CF)上的碳纤维(GNP @ CF)上的电压浇注的电极制剂的无粘合剂方法,然后是Ni纳米颗粒(NPS)的电沉积。电极的微观结构表明Ni均匀地分布在GNP @ CF的表面上。 XRD分析证实了金属Ni NP的立方结构。 Ni-GNP @ CF电极通过在1.0 / g的1.0 / g处显示出480 f / g的特定电容,在碱性溶液中显示出优异的假孔散,而Ni @ Cf为375 f / g。 Ni-GNP @ CF(1Ω)的串联电阻的低值归因于高电容。电极的增强电容可以与复合材料的高纳米多孔结构相关,石墨烯的电双层电荷储存性能的协同效应,以及Ni NP的假偶联性质。

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