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Facial synthesis of nanostructured ZnCo2O4 on carbon cloth for supercapacitor application

机译:超级电容器应用中纳米结构ZnCo2O4的面部合成

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In this work, we have synthesized the ZnCo2O4 electrode by a facial one-step hydrothermal method on a carbon cloth for the supercapacitor application. The structural and phase purity of the prepared electrode material was confirmed by X-ray diffraction (XRD) technique. The surface morphology and elemental stoichiometry were studied using field emission scanning electron microscopy (FE-SEM). The FE-SEM micrograph illustrates that the ZnCo2O4 material is composed of microstrips with a ~0.5 urn width and length in micron uniformly covered the carbon cloth surface. The ZnCo2O4 electrode material further investigated for electrochemical analyses. The cyclic voltammetry results showed that the ZnCo2O4 microstrips electrode exhibited the highest specific capacitance of 1084 F/g at 2 mV/s scan rate. Remarkably, a maximum energy density of 12.5 Wh/kg was attained at a current density of 2 mA/cm with the power density of 3.6 kW/kg for the ZnCo2O4 microstrips electrode. Furthermore, the 96.2 % capacitive retention is obtained at a higher scan rate of 100 mV/s after 1000 CV cycles, indicating excellent cycling stability of the ZnCo2O4 microstrips electrode. The frequency-dependent rate capability and an ideal capacitive behaviour of the ZnCo2O4 microstrips electrode were analyzed using impedance analyses; a representing the ion diffusion structure of the material. These results show that the ZnCo2O4 microstrips electrode could be a promising material for supercapacitor application.
机译:在这项工作中,我们通过在碳布上的面部一步水热法在超级电容器应用中合成了ZnCo2O4电极。通过X射线衍射(XRD)技术确认制备的电极材料的结构和相纯度。使用现场发射扫描电子显微镜(Fe-SEM)研究了表面形态和元素化学计量。 Fe-SEM显微照片说明ZnCo2O4材料由微轨组成,微观宽度和微米的长度均匀地覆盖碳布表面。进一步研究了ZnCo2O4电极材料以进行电化学分析。循环伏安法结果表明,ZnCo2O4微带电极以2mV / s的扫描速率显示出1084 f / g的最高比电容。值得注意的是,在ZnCo2O4微轨电极的功率密度为3.6kW / kg的电流密度为12.5WH / kg的最大能量密度。此外,在1000个CV循环之后,在100mV / s的较高扫描速率下获得96.2%的电容保留,表明ZnCo2O4微轨电极的优异循环稳定性。使用阻抗分析分析频率依赖性速率能力和ZnCo2O4微轨电极的理想电容性;表示材料的离子扩散结构。这些结果表明,ZnCo2O4微轨电极可以是超级电容器应用的有希望的材料。

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