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Tailoring the Oxygen Content of Graphite and Reduced Graphene Oxide for Specific Applications

机译:针对特定应用量身定制石墨和还原石墨烯的氧含量

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摘要

Graphene oxide (GO) is widely recognized as a promising material in a variety of fields, but its structure and composition has yet to be fully controlled. We have developed general strategies to control the oxidation degree of graphene-like materials via two methods: oxidation of graphite by KMnO4 in H2SO4 (oGO), and reduction of highly oxidized GO by hydrazine (rGO). Even though the oxygen content may be the same, oGO and rGO have different properties, for example the adsorption ability, oxidation ability, and electron conductivity. These differences in property arise from the difference in the underlying graphitic structure and the type of defect present. Our results can be used as a guideline for the production of tailor-made graphitic carbons. As an example, we show that rGO with 23.1 wt% oxygen showed the best performance as an electrode of an electric double-layer capacitor.
机译:氧化石墨烯(GO)在许多领域被公认为有前途的材料,但其结构和组成尚未得到完全控制。我们已经开发了通过两种方法来控制类石墨烯材料的氧化程度的一般策略:在H2SO4(oGO)中通过KMnO4氧化石墨,以及通过肼(rGO)还原高度氧化的GO。即使氧含量可以相同,oGO和rGO也具有不同的性质,例如吸附能力,氧化能力和电子传导性。这些性质上的差异是由于底层石墨结构和缺陷类型的差异所致。我们的结果可以用作生产量身定制的石墨碳的指南。作为一个例子,我们表明,含氧23.1%(重量)的rGO作为双电层电容器的电极表现出最好的性能。

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