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Nickel metal-organic framework (Ni-MOF) derived NiO/C@CNF composite for the application of high performance self-standing supercapacitor electrode

机译:镍金属 - 有机框架(NI-MOF)衍生的NIO / C @ CNF复合材料,适用于高性能自站式超级电容器电极

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Compared to conventional electrode, a self-standing structure electrode is an effective way to achieve high performance of supercapacitor by maximizing the use of active material. We present a new combination of nickel oxide-carbon composites fabricated by directly carbonizing a nickel metal-organic framework (Ni-MOF)@carbon nanofiber (CNF) for a self-standing electrode of the supercapacitor application. The new scheme utilizes the CNF film as a substrate with high electron transferring capability and as a backbone of a self-standing electrode as well. It is observed that the MOF-derived NiOs with a diameter of similar to 8 nm are uniformly distributed in the carbon matrix and result in the improvement of the electrical conductivity. The self-standing electrode, NiO/C@CNF composite, provides a high rate capability with high specific capacitances of 742.2 and 671.1F g(-1) (at 1 and 10 A g(-1)), respectively. An asymmetric supercapacitor (ASC) constructed from the NiO/C@CNF and the activated carbon exhibits an excellent specific energy density of 58.43 Wh kg(-1) at a power density of 1,947 W kg(-1). It is also confirmed that the ASC shows a good cycle stability from the long-term cycling test. It is demonstrated that the proposed nickel oxide-carbon composite has a potential as promising self-standing electrode materials for supercapacitors.
机译:与传统电极相比,通过最大化活性材料的使用来实现高度电容器的高性能的有效方法。我们介绍了通过直接碳化镍金属 - 有机骨架(Ni-Mof)@碳纳米纤维(CNF)制备的镍氧化碳复合材料的新组合,用于超级电容器应用的自站电极。新方案利用CNF膜作为具有高电子转移能力的基板和作为自站电极的骨架。观察到,具有与8nm的直径相似的Mof衍生的NiO在碳基质中均匀分布,并导致电导率的提高。自站电极NiO / C @ CNF复合材料,提供高速率能力,具有742.2和671.1Fg(-1)的高特定电容(分别为1和10ag(-1))。由NiO / C 2 CNF和活性炭构成的不对称超级电容器(ASC),其功率密度为1,947Wkg(-1)的优异特定能量密度为58.43WHKG(-1)。还证实,ASC从长期循环试验中显示出良好的循环稳定性。结果证明,所提出的氧化镍 - 碳复合物具有作为超级电容器的有前途的自站电极材料的潜力。

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