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首页> 外文期刊>ACS nano >Vertical Alignments of Graphene Sheets Spatially and Densely Piled for Fast Ion Diffusion in Compact Supercapacitors
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Vertical Alignments of Graphene Sheets Spatially and Densely Piled for Fast Ion Diffusion in Compact Supercapacitors

机译:紧凑型超级电容器中石墨烯片的空间排列和密集排列以快速扩散离子。

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摘要

Supercapacitors with porous carbon structures have high energy storage capacity. However, the porous nature of the carbon electrode, composed mainly of carbon nanotubes (CNTs) and graphene oxide (GO) derivatives, negatively impacts the volumetric electrochemical characteristics of the supercapacitors because of poor packing density (<0.5 g cm~(-3)). Herein, we report a simple method to fabricate highly dense and vertically aligned reduced graphene oxide (VArGO) electrodes involving simple hand-rolling and cutting processes. Because of their vertically aligned and opened-edge graphene structure, VArGO electrodes displayed high packing density and highly efficient volumetric and areal electrochemical characteristics, very fast electrolyte ion diffusion with rectangular CV curves even at a high scan rate (20 V/s), and the highest volumetric capacitance among known rGO electrodes. Surprisingly, even when the film thickness of the VArGO electrode was increased, its volumetric and areal capacitances were maintained.
机译:具有多孔碳结构的超级电容器具有很高的储能能力。然而,由于电极的堆积密度低(<0.5 g cm〜(-3),主要由碳纳米管(CNT)和氧化石墨烯(GO)衍生物组成的碳电极的多孔性会对超级电容器的体积电化学特性产生负面影响。 )。在本文中,我们报告了一种简单的方法来制造高密度且垂直排列的还原氧化石墨烯(VArGO)电极,该方法涉及简单的手工轧制和切割工艺。由于VArGO电极具有垂直排列和边缘开放的石墨烯结构,因此它们显示出高堆积密度和高效的体积和面积电化学特性,即使在高扫描速率(20 V / s)下,电解质离子的扩散也很快,具有矩形CV曲线,并且已知rGO电极中最高的体积电容。出乎意料的是,即使当VArGO电极的膜厚度增加时,其体积和面积电容也得以保持。

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