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Supercapacitors Based on Nickel Oxide/Carbon Materials Composites

机译:基于氧化镍/碳材料复合材料的超级电容器

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In the thesis, the properties of nickel oxide/active carbon composites as the electrode materials for supercapacitors are discussed. Composites with a different proportion of nickel oxide/carbon materials were prepared. A nickel oxide/carbon composite was prepared by chemically precipitating nickel hydroxide on an active carbon and heating the hydroxide at 300 ∘Cin the air. Phase compositions of the products were characterized using X-ray diffractometry (XRD). The morphology of the composites was observed by SEM. The electrochemical performances of composite electrodes used in electrochemical capacitors were studied in addition to the properties of electrode consisting of separate active carbon and nickel oxide only. The electrochemical measurements were carried out using cyclic voltammetry, galvanostatic charge/discharge, and impedance spectroscopy. The composites were tested in 6 M KOH aqueous electrolyte using two- and three-electrode Swagelok systems. The results showed that adding only a few percent of nickel oxide to active carbon provided the highest value of capacity. It is the confirmation of the fact that such an amount of nickel oxide is optimal to take advantage of both components of the composite, which additionally can be a good solution as a negative electrode in asymmetric configuration of electrode materials in an electrochemical capacitor.
机译:本文讨论了氧化镍/活性炭复合材料作为超级电容器电极材料的性能。制备具有不同比例的氧化镍/碳材料的复合材料。通过在活性炭上化学沉淀氢氧化镍,然后将氢氧化物在300°C的空气中加热,制得氧化镍/碳复合材料。使用X射线衍射仪(XRD)表征产物的相组成。通过SEM观察复合材料的形态。除了仅由单独的活性炭和氧化镍组成的电极的性能外,还研究了用于电化学电容器的复合电极的电化学性能。电化学测量是使用循环伏安法,恒电流充/放电和阻抗谱进行的。使用两电极和三电极Swagelok系统在6 M KOH水性电解质中测试了复合材料。结果表明,仅向活性炭中添加百分之几的氧化镍可提供最高的容量值。证实以下事实的事实:这样的量的氧化镍对于利用复合材料的两种组分是最佳的,在电化学电容器中电极材料的不对称构造中,其另外可以作为负极用作负极的良好解决方案。

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