A comparative study of one-dimensional and two-dimensional porous CoO nanomaterials for asymmetric supercapacitor

A comparative study of one-dimensional and two-dimensional porous CoO nanomaterials for asymmetric supercapacitor
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用于非对称超级电容器的一维和二维多孔CoO纳米材料的比较研究

DOI:
10.1016/j.jallcom.2018.12.129
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发表时间:
2019-04
影响因子:
6.2
通讯作者:
Shaoming Fang
Shaoming Fang
中科院分区:
材料科学2区
文献类型:
--
作者:
Yuanhua Xiao;Andi Dai;Xiaobing Zhao;Shide Wu;Dangcheng Su;Xuezhao Wang;Shaoming Fang

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本研究采用溶剂热法制备了单水合碳酸钴- Co(CO 3)0.5(OH)·0.11H2O纳米带和纳米片,通过煅烧,成功制备了多孔一维(1D)CoO纳米带和二维(2D)CoO纳米片。溶剂对Co(CO 3)0.5(OH)·0.11H2O的形貌和尺寸有显著影响。通过调节乙二醇(EG)与水的体积比,可使Co(CO 3)0.5(OH)·0.11H2O晶体由带状转变为片状。当用作超级电容器电极材料时,所制备的多孔CoO纳米带表现出比多孔CoO纳米片更高的比电容,在1 A g-1下为1178 F g-1。基于CoO纳米带和水性电解质的不对称超级电容器(ASC)也显示出更优异的电化学性能,例如,更高的能量密度(在850.0 W kg − 1时为68.5 Wh kg−1)和长期循环能力。
In this study, porous one-dimensional (1D) CoO nanobelts and two-dimensional (2D) CoO nanoplates were successfully fabricated by calcining single crystalline cobalt carbonate hydroxide hydrate - Co(CO3)0.5(OH)·0.11H2O nanobelts and nanoplates obtained using a solvothermal method. Solvents applied in the reaction significantly affected the shape and size of Co(CO3)0.5(OH)·0.11H2O. Belt-like Co(CO3)0.5(OH)·0.11H2O crystals can be easy to turn into to plate-like by adjusting the volume ratio of ethylene glycol (EG) to water. The as-prepared porous CoO nanobelts, when used as the supercapacitor electrode materials, exhibit a higher specific capacitance of 1178 F g−1at 1 A g−1than porous CoO nanoplates. Asymmetric supercapacitor (ASC) based on CoO nanobelts and aqueous electrolyte also show more excellent electrochemical performance, e.g., higher energy density (68.5 Wh kg−1at 850.0 W kg−1) and long-term cycling ability.
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