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Synthesizing a flower-like NiO and ZnO composite for supercapacitor applications

机译:为超级电容器应用合成花样NIO和ZnO复合材料

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In order to enhance the electrochemical properties of single NiO, we have sought a simple way to synthesize a NiO and ZnO composite and make the composite a pseudocapacitors electrode material. We used a hydrothermal method to generate the composite on the surface of nickel foam, regarding it as the major subject in this experiment. To study the electrochemical performance of this composite, we adopted measurements including cyclic voltammetry, galvanostatic charge-discharge and electrochemical impedance spectroscopy measurements. We prepared samples for 2, 4, 6 and 8 h and compared the electrochemical properties of these different samples, respectively. We found that the as-synthesized NiO and ZnO composite was obtained at 8 h, and the maximum capacitance can reach 1.42 F cm(-2) (10 mA cm(-2)). In addition, the composite also showed good cycle stability and displayed a capacitance of 63.9% after 1000 cycles tested in 6.0 M KOH solution. Thus, it was determined that the composite can offer a great potential for obtaining a supercapacitor electrode material with excellent performance. The experiment can, to some extent, provide a way in which the low electrochemical performance of single oxides can be improved by synthesizing double-oxide electrode material.
机译:为了增强单一NIO的电化学性质,我们寻求一种简单的方法来合成NIO和ZnO复合材料,并使复合伪偶联器电极材料。我们使用了水热法在镍泡沫表面上产生复合材料,作为本实验中的主要主题。为了研究这种复合材料的电化学性能,我们采用了包括循环伏安法,电镀电荷 - 放电和电化学阻抗光谱测量的测量。我们制备了2,4,6和8小时的样品,并分别比较了这些不同样品的电化学性质。我们发现在8小时获得AS合成的NiO和ZnO复合材料,最大电容可达到1.42 f cm(-2)(10 mA cm(-2))。此外,复合材料还显示出良好的循环稳定性,并在6.0M KOH溶液中测试的1000次循环后显示出63.9%的电容。因此,确定复合材料可以提供具有优异性能的超级电容器电极材料的巨大潜力。在一定程度上,实验可以通过合成双氧化物电极材料来改善单氧化物的低电化学性能的方式。

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