Carbon nanomaterials and their composites for supercapacitors

Углеродные наноматериалы и их композиты для суперконденсаторов
Mingzhu Zhong, Miao Zhang, Xifei Li
2022-06-22

carbon nanomaterialscarbon nanotubesgraphenesupercapacitorsternary composites
Abstract As a type of energy storage device between traditional capacitors and batteries, the supercapacitor has the advantages of energy saving and environmental protection, high power density, fast charging and discharging speed, long cycle life, and so forth. One of the key factors affecting the performance of supercapacitor is the electrode material. Carbon materials, such as carbon nanotube, graphene, activated carbon, and carbon nanocage, are most widely concerned in the application of supercapacitors. The synergistic effect of composites can often obtain excellent results, which is one of the common strategies to increase the electrochemical performance of supercapacitors. To further improve the performance of binary composites, it is a relatively simple method to increase the components as the “bridge” between the two materials to form the ternary composites. The review mainly introduces the current research progress of supercapacitors with pure carbon nanomaterials and multistage carbon nanostructures (composites) as electrodes. The characteristics and application directions of different pure carbon nanomaterials are introduced in detail. Different ways of multilevel structure (material) composite have their own effects on the development of high‐performance supercapacitors. We also highlight the recent advances related to these fields and provide our insight into high‐energy supercapacitors.
1
Combining carbon materials into composites can exploit synergistic effects to improve supercapacitor electrochemical performance.
2
Multilevel carbon nanostructures and composites are highlighted as promising routes toward high-energy, high-performance supercapacitors.
3
Pure carbon nanomaterials offer distinct characteristics and application directions for supercapacitor electrodes.
4
Supercapacitor performance is strongly governed by electrode materials, with carbon nanotubes, graphene, activated carbon, and carbon nanocages receiving major research attention.
5
Ternary composites introduce an additional component as a bridge between two materials, providing a relatively simple strategy for further enhancing binary-composite performance.

Supercapacitor electrodes based on pure carbon nanomaterials and multistage carbon nanostructure composites

Their electrochemical energy-storage performance and the effects of composite structure and composition on achieving high-energy supercapacitors

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Publication Date
2022-06-22
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Mingzhu Zhong
Miao Zhang
Xifei Li
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