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首页> 外文期刊>Journal of Energy Storage >Studies on electrochemical mechanism of nanostructured cobalt vanadate electrode material for pseudocapacitors
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Studies on electrochemical mechanism of nanostructured cobalt vanadate electrode material for pseudocapacitors

机译:纳米结构钴钒酸盐电极材料的电化学机理研究假偶联机

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摘要

The supercapacitive behaviour of chemically synthesized cobalt vanadate nanostructures was reported in this work. Various analytical techniques along with optical studies were utilized to investigate the crystallographic information's and optical response. Crystallographic information of the prepared nanostructures was revealed by the XRD analysis and it's formation was confirmed by the FTIR and XPS techniques. The nano-layered structural and surface morphology was observed through scanning electron microscopy and high-resolution transmission electron microscopy. Electrochemical performances in aqueous electrolytic medium were examined for super capacitive behaviour of prepared Co3V2O8. Specific capacitance value of about 790 F/g was achieved at 1 A/g current density and the superior capacitive retention of 90.1 % after 10000 cycles had been imparted by the prepared Co3V2O8. Based on the results, it was confirmed that the prepared cobalt vanadate nanostructures can be used as an electrode material for future energy storage devices.
机译:在这项工作中报道了化学合成的钴钒酸盐纳米结构的超级涂物行为。利用各种分析技术以及光学研究来研究晶体信息和光学响应。通过XRD分析揭示制备纳米结构的晶体信息,并通过FTIR和XPS技术进行了形成。通过扫描电子显微镜和高分辨率透射电子显微镜观察纳米层状结构和表面形态。检查水溶液中的电化学性能,用于制备CO3V2O8的超级电容性能。在1A / g电流密度下实现了约790f / g的特定电容值,并且通过制备的CO 3V 2 O 8赋予10000次循环后的90.1%的优异电容保留。基于该结果,证实制备的钴钒酸盐纳米结构可用作未来能量存储装置的电极材料。

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