Facile one-step synthesis of nanocomposite based on carbon nanotubes and Nickel-Aluminum layered double hydroxides with high cycling stability for supercapacitors

纳米复合材料 材料科学 层状双氢氧化物 超级电容器 电化学 化学工程 自行车 碳纳米管 碳纤维 氢氧化物 纳米技术 复合材料 复合数 冶金 电极 化学 物理化学 工程类 考古 历史
作者
Caihui Bai,Shiguo Sun,Yongqian Xu,Ruijin Yu,Hongjuan Li
出处
期刊:Journal of Colloid and Interface Science [Elsevier BV]
卷期号:480: 57-62 被引量:40
标识
DOI:10.1016/j.jcis.2016.07.001
摘要

Nickel-Aluminum Layered Double Hydroxide (NiAl-LDH) and nanocomposite of Carbon Nanotubes (CNTs) and NiAl-LDH (CNTs/NiAl-LDH) were prepared by using a facile one-step homogeneous precipitation approach. The morphology, structure and electrochemical properties of the as-prepared CNTs/NiAl-LDH nanocomposite were then systematically studied. According to the galvanostatic charge-discharge curves, the CNTs/NiAl-LDH nanocomposite exhibited a high specific capacitance of 694 F g−1 at the 1 A g−1. Furthermore, the specific capacitance of the CNTs/NiAl-LDH nanocomposite still retained 87% when the current density was increased from 1 to 10 A g−1. These results indicated that the CNTs/NiAl-LDH nanocomposite displayed a higher specific capacitance and rate capability than pure NiAl-LDH. And the participation of CNTs in the NiAl-LDH composite improved the electrochemical properties. Additionally, the capacitance of the CNTs/NiAl-LDH nanocomposite kept at least 92% after 3000 cycles at 20 A g−1, suggesting that the nanocomposite exhibited excellent cycling durability. This strategy provided a facile and effective approach for the synthesis of nanocomposite based on CNTs and NiAl-LDH with enhanced supercapacitor behaviors, which can be potentially applied in energy storage conversion devices.

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