超级电容器
材料科学
电容
纳米技术
异质结
功率密度
制作
电极
电化学
涂层
储能
碳纤维
化学工程
光电子学
复合材料
复合数
化学
物理
工程类
医学
病理
物理化学
功率(物理)
量子力学
替代医学
作者
Abdul Rehman Akbar,Gangqiang Peng,Yongyi Li,Rashid Iqbal,Adil Saleem,Guohong Wang,Abdul Sammed Khan,Mumtaz Ali,Muhammad Tahir,Mohammed A. Assiri,Ghaffar Ali,Fude Liu
出处
期刊:Small
[Wiley]
日期:2023-09-15
卷期号:19 (44)
被引量:22
标识
DOI:10.1002/smll.202304686
摘要
The fabrication of low-cost, effective, and highly integrated nanostructured materials through simple and reproducible methods for high-energy-density supercapacitors is highly desirable. Herein, an activated carbon cloth (ACC) is designed as the functional scaffold for supercapacitors and treated hydrothermally to deposit NiCo nanoneedles working as internal core, followed by a dip-dry coating of NiOOH nanoflakes core-shell and uniform hydrothermal deposition of CoMoO4 nanosheets serving as an external shell. The structured core-shell heterostructure ACC@NiCo@NiOOH@CoMoO4 electrode resulted in exceptional specific areal capacitance of 2920 mF cm-2 and exceptional cycling stability for 10 000 cycles. Moreover, the fabricated electrode is developed into an asymmetric supercapacitor which demonstrates excellent areal capacitance, energy density, and power density within the broad potential window of 1.7 V with a cycling life of 92.4% after 10 000 charge-discharge cycles, which reflects excellent cycle life. The distinctive core-shell structure, highly conductive substrate, and synergetic effect of coated material results in more electrochemical active sites and flanges for effective electrons and ion transportation. This unique technique provides a new perspective for cost-efficient supercapacitor applications.
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