首页> 外文期刊>Journal of Energy Storage >Facile sol-gel derived nanostructured spinel Co_3O_4 as electrode material for high-performance supercapattery and lithium-ion storage
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Facile sol-gel derived nanostructured spinel Co_3O_4 as electrode material for high-performance supercapattery and lithium-ion storage

机译:溶胶-凝胶衍生的纳米结构尖晶石Co_3O_4作为电极材料用于高性能超级电池和锂离子存储

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摘要

This work reports high-performance supercapattery and lithium-ion storage using nanostructured spinel cobalt oxide (Co3O4) generated by modified facile sol-gel process. The formation of spinel Co3O4 was confirmed by materials characterization techniques. Electrochemical studies of the Co3O4 in KOH revealed excellent redox features. The supercapattery device in the form of CR-2032 coin cell consisting of the Co3O4 as positive electrode and reduced graphene-oxide as negative electrode delivered high energy density of 40 Wh kg(-1) at power density of 742 W kg(-1). In addition, the half-cell in the form of CR-2032 coin cell having the Co3O4 as anode and lithium metal as counter electrode exhibited stabilized lithium storage capacity of 620 mA h g(-1) with high Coloumbic efficiency. Glowing of a commercial LED for more than 15 min using the fabricated supercapattery was demonstrated. The nanofeatures of the sol-gel derived Co3O4 led to such excellent charge storage and lithium storage performances.
机译:这项工作报告了高性能超级电池和锂离子存储技术,该技术使用通过改进的易用溶胶-凝胶工艺生成的纳米结构尖晶石钴氧化物(Co3O4)进行存储。材料表征技术证实了尖晶石Co3O4的形成。 Co3O4在KOH中的电化学研究显示出优异的氧化还原特性。 CR-2032纽扣电池形式的超级电池装置由Co3O4作为正电极和还原的氧化石墨烯作为负电极,在742 W kg(-1)的功率密度下提供了40 Wh kg(-1)的高能量密度。 。另外,以Co 3 O 4为阳极且锂金属为对电极的CR-2032纽扣电池形式的半电池表现出稳定的锂存储容量,为620 mA h g(-1),具有高的库仑效率。演示了使用制造的超级电容器使商用LED发光15分钟以上。溶胶-凝胶衍生的Co3O4的纳米特征导致了如此优异的电荷存储和锂存储性能。

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