超级电容器用NiCo2O4和NiCo2S4纳米结构的电化学特性比较

IF 0.4 Q4 PHYSICS, MULTIDISCIPLINARY
А.А. Markhabayeva, M.B. Baidilda, Shyryn Nurbolat, Zh. K. Kalkozova, R. Nemkayeva, K. Abdullin
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引用次数: 0

摘要

本文介绍了水热法制备的NiCo2O4和NiCo2S4纳米结构用作超级电容器电极的合成和性能研究结果。提出了一种在镍基上生长三元金属氧化物NiCo2O4纳米结构的方法。利用x射线相分析研究了合成的NiCo2O4和NiCo2S4纳米结构的结构特征。得到的样品有三次改性NiCo2O4和NiCo2S4。给出了合成样品的扫描电镜形貌数据。样品以纳米针和纳米线的形式生长在镍衬底上。研究了NiCo2O4纳米结构的合成方法,确定了NiCo2O4生长纳米结构的最佳条件,并采用NiCo2O4硫化法制备了NiCo2O4纳米结构。对比研究了硫化对所得电极电化学特性的影响。研究发现,尽管NiCo2O4氧化物纳米结构具有较高的理论电容,但硫原子取代氧原子增加了材料的电导率,导致端电极的比电容进一步增加。在扫描速率为5 mV/s时,NiCo2S4的最大比电容Cs为1976 gf -1, NiCo2O4的最大比电容Cs为413 gf -1。给出了测量过程中比电容随扫描速度的变化规律。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparison of electrochemical characteristics of NiCo2O4 and NiCo2S4 nanostructures for supercapacitors
This paper presents the results on the synthesis and study of the properties of NiCo2O4 and NiCo2S4 nanostructures obtained by hydrothermal synthesis for their use as supercapacitor electrodes. A method is developed for growing a nanostructure from a ternary metal oxide NiCo2O4 on a nickel substrate. The structural features of the synthesized NiCo2O4 and NiCo2S4 nanostructures are studied using X-ray phase analysis. The obtained samples have a cubic modification NiCo2O4 and NiCo2S4 . The data on the morphology of the synthesized samples obtained by scanning electron microscopy are presented. The samples are in the form of nanoneedles and nanowires grown on a nickel substrate. Methods for the synthesis of NiCo2O4 nanostructures have been studied, optimal conditions for the growth of nanostructures from NiCo2O4 have been determined, and a NiCo2O4 sulfurization method has been developed to obtain a NiCo2O4 nanostructure. Comparative studies have been carried out on the effects of sulfurization on the electrochemical characteristics of the obtained electrodes. It is found that, despite the fact that NiCo2O4 oxide nanostructures have a high theoretical capacitance, the replacement of oxygen atoms by sulfur atoms increases the conductivity of the materials and leads to a further increase in the specific capacitance of the end electrodes. The maximum Cs obtained specific capacitance for NiCo2S4 is 1976 F g-1 and while for NiCo2O4 it is 413 F g-1 at a scan rate of 5 mV/s. The results of the dependence of the specific capacitance on the scanning speed during measurements are also presented.
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