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An Assay of Electrodeposited Cobalt Oxide Thin Film as a Supercapacitor Electrode

机译:电沉积钴氧化物薄膜作为超级电容器电极的测定

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The present research work is a humble effort to synthesize cobalt oxide supercapacitive electrode by electrodeposition method via potentiostatic mode of thin film deposition.The cobalt hydroxide material is deposited on stainless steel substrate at room temperature and annealed at 500°C to form cobalt oxide thin film electrode.The structural,morphological,and wettability investigation of the as-deposited cobalt oxide thin film electrode is done by XRD-analysis,SEM characterization,and contact angle measurement,respectively.The supercapacitive properties are investigated in aqueous 1M Na2SO4 electrolyte by cyclic voltametry and galvanostatic charge-discharge analysis.The results of the investigations are maximum specific capacitance of 284.4 F g~(-1)at a scan rate 5 mV s~(-1),specific energy 4.325 Wh kg~(-1),specific power 3 kW kg~(-1),and Coulomb efficiency 53.75%.The results so obtained promote cobalt oxide to be a challenging material for energy storage devices and supercapacitor applications.
机译:本研究作品是通过电沉积法通过电位薄膜沉积方式通过电沉积方法合成氧化钴超法电极的劣化。氢氧化钴材料在室温下沉积在不锈钢基板上,并在500℃下退火形成氧化钴薄膜电极。通过XRD分析,SEM表征和接触角测量来完成沉积的钴氧化物薄膜电极的结构,形态和润湿性研究。通过循环伏特将超级电容性在1M Na 2 SO 4电解质中研究过超级电容性质和电压电荷放电分析。扫描速率5mV S〜(-1),特定能量4.325WHKG〜(-1),特定的能量为284.4 f g〜(-1)的最大特定电容为284.4 f g〜(-1)。功率3千瓦kg〜(-1),库仑效率为53.75%。结果如此获得的促进氧化钴作为能量存储装置和超级电容器应用的具有挑战性的材料血液。

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