Molten salt technique for the synthesis of carbon-based materials for supercapacitors

Carbon materials play an important role in supercapacitors due to their structural diversity, rich surface morphology, excellent chemical stability and highly active surfaces. Currently, there are many reports on the synthesis methods for carbon-based materials. The molten salt method stands out amo...

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Veröffentlicht in:Green chemistry : an international journal and green chemistry resource : GC 2023-12, Vol.25 (24), p.129-1234
Hauptverfasser: Yang, Yu, Ma, Yunping, Lu, Congcong, Li, Songjun, Zhu, Maiyong
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Sprache:eng
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Zusammenfassung:Carbon materials play an important role in supercapacitors due to their structural diversity, rich surface morphology, excellent chemical stability and highly active surfaces. Currently, there are many reports on the synthesis methods for carbon-based materials. The molten salt method stands out among the many methods for its advantages of economy, environmental protection, high efficiency, and maneuverability. Here, we focus on the different roles played by molten salts as templates, sealants, reaction media, and catalysts from the point of view of their functions. The properties and selection principles of the molten salts are discussed in depth, focusing on the morphology, structure, and capacitive properties of the carbon materials prepared using the molten salt strategy. Finally, the current research status of the preparation of carbon-based materials by the molten salt method is summarized, the shortcomings of existing technology are pointed out, and the prospects for its development are envisioned. It is hoped that this review can provide some basic knowledge for the preparation of carbon-based materials by the molten salt method and promote further research on molten salt technology. We provide a comprehensive review of the molten salt strategy for the preparation of carbon-based materials by highlighting the roles played by molten salts. The application of these carbons in supercapacitors is also discussed.
ISSN:1463-9262
1463-9270
DOI:10.1039/d3gc03525e