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High quality reduced graphene oxide through repairing with multi-layered graphene ball nanostructures

机译:通过多层石墨烯球纳米结构修复获得高质量的还原氧化石墨烯

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摘要

We present a simple and up-scalable method to produce highly repaired graphene oxide with a large surface area, by introducing spherical multi-layered graphene balls with empty interiors. These graphene balls are prepared via chemical vapor deposition (CVD) of Ni particles on the surface of the graphene oxides (GO). Transmission electron microscopy and Raman spectroscopy results reveal that defects in the GO surfaces are well repaired during the CVD process, with the help of nickel nanoparticles attached to the functional groups of the GO surface, further resulting in a high electrical conductivity of 18,620 S/m. In addition, the graphene balls on the GO surface effectively prevent restacking of the GO layers, thus providing a large surface area of 527 m2/g. Two electrode supercapacitor cells using this highly conductive graphene material demonstrate ideal electrical double layer capacitive behavior, due to the effective use of the outstanding electric conductivity and the large surface area.
机译:我们提出一种简单且可扩展的方法,通过引入内部为空的球形多层石墨烯球来生产具有大表面积的高度修复的石墨烯氧化物。这些石墨烯球是通过将Ni颗粒化学气相沉积(CVD)在石墨烯氧化物(GO)的表面上制备的。透射电子显微镜和拉曼光谱结果表明,在CVD过程中,借助于附着在GO表面官能团上的镍纳米粒子,可以很好地修复GO表面的缺陷,从而进一步提高了18,620 S / m的电导率。 。另外,GO表面上的石墨烯球有效地防止了GO层的再堆积,因此提供了527 m 2 / g的大表面积。由于有效利用了出色的导电性和较大的表面积,使用这种高导电性石墨烯材料的两个电极超级电容器单元表现出理想的双层电容性能。

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