N-doped carbon foam based three-dimensional electrode architectures and asymmetric supercapacitors

Improving the electrochemical performance of supercapacitors mainly depends on the electrode design and system construction. A new kind of additive-free asymmetric supercapacitors (ASCs) has been successfully fabricated using a self-supported carbon foam/ordered mesoporous carbon (CF-OMC) film as th...

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Veröffentlicht in:Journal of materials chemistry. A, Materials for energy and sustainability Materials for energy and sustainability, 2015-01, Vol.3 (6), p.2853-2860
Hauptverfasser: Wang, Jie, Shen, Laifa, Nie, Ping, Yun, Xiaoliang, Xu, Yunling, Dou, Hui, Zhang, Xiaogang
Format: Artikel
Sprache:eng
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Zusammenfassung:Improving the electrochemical performance of supercapacitors mainly depends on the electrode design and system construction. A new kind of additive-free asymmetric supercapacitors (ASCs) has been successfully fabricated using a self-supported carbon foam/ordered mesoporous carbon (CF-OMC) film as the negative electrode and free-standing CF-NiCo 2 O 4 nanosheets (NSs) as the positive electrode, respectively. The highly conductive three-dimensional (3D) CF framework could facilitate electron transfer while the porous thin film of OMC and ultrathin NiCo 2 O 4 nanosheets could shorten the ion diffusion path and facilitate the rapid migration of electrolyte ions. The optimized asymmetric supercapacitors could work with an operational voltage of 1.6 V, delivering a high energy density (∼47.8 W h kg −1 ), high power density (∼9800 W kg −1 at 17.7 W h kg −1 ) and outstanding cycle stability (∼10 000 times). This research may pave the way for fabricating lightweight, low-cost, and high-performance electrodes for energy storage applications.
ISSN:2050-7488
2050-7496
DOI:10.1039/C4TA05932H