Latest advances in supercapacitors: from new electrode materials to novel device designs

Notably, many significant breakthroughs for a new generation of supercapacitors have been reported in recent years, related to theoretical understanding, material synthesis and device designs. Herein, we summarize the state-of-the-art progress toward mechanisms, new materials, and novel device desig...

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Veröffentlicht in:Chemical Society reviews 2017-11, Vol.46 (22), p.6816-6854
Hauptverfasser: Wang, Faxing, Wu, Xiongwei, Yuan, Xinhai, Liu, Zaichun, Zhang, Yi, Fu, Lijun, Zhu, Yusong, Zhou, Qingming, Wu, Yuping, Huang, Wei
Format: Artikel
Sprache:eng
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Zusammenfassung:Notably, many significant breakthroughs for a new generation of supercapacitors have been reported in recent years, related to theoretical understanding, material synthesis and device designs. Herein, we summarize the state-of-the-art progress toward mechanisms, new materials, and novel device designs for supercapacitors. Firstly, fundamental understanding of the mechanism is mainly focused on the relationship between the structural properties of electrode materials and their electrochemical performances based on some in situ characterization techniques and simulations. Secondly, some emerging electrode materials are discussed, including metal-organic frameworks (MOFs), covalent organic frameworks (COFs), MXenes, metal nitrides, black phosphorus, LaMnO 3 , and RbAg 4 I 5 /graphite. Thirdly, the device innovations for the next generation of supercapacitors are provided successively, mainly emphasizing flow supercapacitors, alternating current (AC) line-filtering supercapacitors, redox electrolyte enhanced supercapacitors, metal ion hybrid supercapacitors, micro-supercapacitors (fiber, plane and three-dimensional) and multifunctional supercapacitors including electrochromic supercapacitors, self-healing supercapacitors, piezoelectric supercapacitors, shape-memory supercapacitors, thermal self-protective supercapacitors, thermal self-charging supercapacitors, and photo self-charging supercapacitors. Finally, the future developments and key technical challenges are highlighted regarding further research in this thriving field. A comprehensive overview of the state-of-the-art progress toward mechanisms, new materials, and novel device designs for supercapacitors is provided. Further directions are also pointed out.
ISSN:0306-0012
1460-4744
DOI:10.1039/c7cs00205j