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Synergistic interaction between embedded Co3O4 nanowires and graphene papers for high performance capacitor electrodes

机译:嵌入式Co 3 O 4 纳米线与石墨烯纸在高性能电容器电极中的协同相互作用

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摘要

Graphene/Co3O4 nanowire composite films were successfully synthesized using a simple, three-step treatment, and the effect of the Co3O4 nanowire content on the electrochemical properties of the composite films was studied. The one-dimensional Co3O4 nanowires were homogeneously embedded and dispersed between prepared graphene papers, forming a layered graphene/Co3O4 nanowire hybrid structure. These composite films exhibited better electrochemical properties than previously reported ones, such as graphene/CNT, where carbon spheres existed in the graphene composites, which were fabricated using the same method but without the Co3O4 nanowires. The addition of a small amount of Co3O4—typically 8?:?1 by weight (reduced graphene oxide (RGO)?:?Co3O4)—to form thick RGO/Co3O4 sandwiches in the form of papers resulted in an excellent specific charge capacity of 278.936 C g?1 at a scan rate of 5 mV s?1. These results indicate the potential of the composite for the development of highly capacitive energy storage devices for practical applications.
机译:通过简单的三步处理成功地合成了石墨烯/ Co 3 O 4 纳米线复合薄膜。研究了Co 3 O 4 纳米线含量对复合膜电化学性能的影响。将一维Co 3 O 4 纳米线均匀嵌入并分散在制备的石墨烯纸之间,形成层状石墨烯/ Co 3 O 4 纳米线杂化结构。这些复合膜表现出比以前报道的更好的电化学性能,例如石墨烯/碳纳米管,其中石墨烯复合物中存在碳球,使用相同的方法制造,但没有Co 3 < / small> O 4 纳米线。添加少量的Co 3 O 4 -通常为8?:?1(按重量计)氧化石墨烯(RGO)?:?Co 3 O 4 )—形成厚的RGO / Co 3 O 4 三明治形式的纸,具有278.936 C g < sup>?1 ,扫描速率为5 mV s ?1 。这些结果表明该复合材料在开发用于实际应用的高电容储能装置方面的潜力。

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