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首页> 外文期刊>Journal of Colloid and Interface Science >Facile one-step synthesis of nanocomposite based on carbon nanotubes and Nickel-Aluminum layered double hydroxides with high cycling stability for supercapacitors
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Facile one-step synthesis of nanocomposite based on carbon nanotubes and Nickel-Aluminum layered double hydroxides with high cycling stability for supercapacitors

机译:基于碳纳米管和镍铝层状双氢氧化物的一步法合成纳米电容器,具有超级循环稳定性,可用于超级电容器

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摘要

Nickel-Aluminum Layered Double Hydroxide (NiAl-LDH) and nanocomposite of Carbon Nanotubes (CNTs) and NiAl-LDH (CNTsiNiAl-LDH) were prepared by using a facile one-step homogeneous precipitation approach. The morphology, structure and electrochemical properties of the as-prepared CNTsiNiAl-LDH nanocomposite were then systematically studied. According to the galvanostatic charge-discharge curves, the CNTsiNiAl-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 CNTsiNiAl-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 NiAI-LDH with enhanced supercapacitor behaviors, which can be potentially applied in energy storage conversion devices. (C) 2016 Elsevier Inc. All rights reserved.
机译:镍铝层状双氢氧化物(NiAl-LDH)以及碳纳米管(CNTs)和NiAl-LDH(CNTsiNiAl-LDH)的纳米复合材料是采用一种简便的均相沉淀法制备的。然后系统地研究了所制备的CNTsiNiAl-LDH纳米复合材料的形貌,结构和电化学性能。根据恒电流充放电曲线,CNTsiNiAl-LDH纳米复合材料在1 A g(-1)处显示出694 F g(-1)的高比电容。此外,当电流密度从1 A增加到10 A g(-1)时,CNTs / NiAl-LDH纳米复合材料的比电容仍保持87%。这些结果表明CNTsiNiAl-LDH纳米复合材料比纯NiAl-LDH表现出更高的比电容和倍率性能。碳纳米管在NiAl-LDH复合材料中的参与改善了电化学性能。此外,CNTs / NiAl-LDH纳米复合材料在20 A g(-1)下经过3000次循环后的电容至少保持92%,这表明该纳米复合材料表现出出色的循环耐久性。该策略为合成具有增强的超级电容器性能的基于CNT和NiAI-LDH的纳米复合材料提供了一种简便有效的方法,可潜在地应用于储能转换设备中。 (C)2016 Elsevier Inc.保留所有权利。

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