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基于分级NiCoO@碳纳米纤维//活性多通道碳纳米纤维的高性能不对称超级电容器

High-performance asymmetric supercapacitor based hierarchical NiCoO@ carbon nanofibers//Activated multichannel carbon nanofibers.

作者信息

El-Deen Ahmed G, Hussein El-Shafei M, Hessein Amr, Hassanin Ahmed H, Shaalan N M, El-Moneim Ahmed Abd

机构信息

Renewable Energy Science and Engineering Department, Faculty of Postgraduate Studies for Advanced Sciences (PSAS), Beni- Suef University, Beni-Suef 62511, Egypt. Materials Science and Engineering Department, Egypt-Japan University of Science and Technology, Alexandria 21934, Egypt.

出版信息

Nanotechnology. 2020 May 29;31(36):365404. doi: 10.1088/1361-6528/ab97d6.

Abstract

Synthesis of rational nanostructure design of hybrid materials including uniformly growing, stable and highly porous structures have received a great deal of attention for many energy storage applications. In this study, the positive electrode of the uniform distribution of NiCoO nanorods anchored on carbon nanofibers has been successfully prepared by in-situ growth under the hydrothermal process. Whereas, the activated multichannel carbon nanofibers (AMCNFs) have been fabricated via electrospinning followed by alkaline activation as the negative electrode. The crystal phase, morphological structure for the proposed electrode materials were characterized by x-ray diffraction (XRD), Raman spectroscopy, scanning electron microscopy (SEM), and transmission electron microscopy (TEM). Moreover, the electrochemical behaviors were investigated using cyclic voltammetry (CV), galvanostatic charge and discharge (GCD) and electrochemical impedance spectroscopy (EIS) measurements. Compared to the neat CNFs and the pristine NiCoO, the NiCoO@CNFs hybrid electrodes showed better electrochemical performance and achieved a high specific capacitance up to 649 F g at a current density of 3 A g. The optimized NiCoO@CNFs//AMCNFs asymmetric device achieved a high energy density of 38.5 Wh kg with a power density of 1.6 kW kg and possessed excellent recyclability with 93.1% capacitance retention over 6000 charging/discharging cycles. Overall, the proposed study introduces a facile strategy for the robust design of hybrid structured as effective nanomaterials based electrode for high-performance electrochemical supercapacitors.

摘要

包括均匀生长、稳定且高度多孔结构的混合材料的合理纳米结构设计合成,在许多能量存储应用中受到了广泛关注。在本研究中,通过水热过程原位生长成功制备了锚定在碳纳米纤维上的NiCoO纳米棒均匀分布的正极。而活化多通道碳纳米纤维(AMCNFs)则通过静电纺丝随后进行碱性活化制备作为负极。通过X射线衍射(XRD)、拉曼光谱、扫描电子显微镜(SEM)和透射电子显微镜(TEM)对所提出的电极材料的晶相、形态结构进行了表征。此外,使用循环伏安法(CV)、恒电流充放电(GCD)和电化学阻抗谱(EIS)测量研究了电化学行为。与纯碳纳米纤维和原始NiCoO相比,NiCoO@CNFs混合电极表现出更好的电化学性能,在3 A g的电流密度下实现了高达649 F g的高比电容。优化后的NiCoO@CNFs//AMCNFs不对称器件实现了38.5 Wh kg的高能量密度和1.6 kW kg的功率密度,并且在6000次充放电循环中具有93.1%的电容保持率,具有优异的可回收性。总体而言,本研究所提出的是一种简便的策略,用于设计基于有效纳米材料的混合结构作为高性能电化学超级电容器的稳健电极。

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