超级电容器
氧化钴
材料科学
纳米结构
电化学
钴
电极
锂(药物)
氧化物
电容
化学工程
纳米技术
化学
冶金
物理化学
内分泌学
工程类
医学
作者
Eslam Aboelazm,Gomaa A. M. Ali,H. Algarni,Huajie Yin,Yu Lin Zhong,Kwok Feng Chong
标识
DOI:10.1021/acs.jpcc.8b03306
摘要
In this study, electrodeposition of cobalt oxide (Co3O4) from spent lithium-ion batteries is successfully enhanced by the magnetic field effect. In the presence of magnetic field, well-defined hierarchical Co3O4 nanostructures with higher electroactive surface area are formed during the electrodeposition process. Electrochemical analysis shows that the enhanced Co3O4 nanostructures exhibit excellent charge storage capabilities of 1273 F g–1 at 1 A g–1, approximately 4 times higher than the electrodeposited Co3O4 that is formed without magnetic field effect. It also reveals the high cycling stability of enhanced Co3O4 nanostructures, with 96% capacitance retention at 5000 charge discharge cycles. The results manifest the enhancement of Co3O4 recovery from spent lithium-ion batteries, which can be the potential electrode material for supercapacitor application.
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