Recent progress of Prussian blue analogues as cathode materials for nonaqueous sodium-ion batteries

Prussian blue analogues (PBAs) as cathode in nonaqueous sodium-ion batteries are making robust progress in fundamental research and commercial exploration due to the low cost and high capacity. Herein, the PBAs are systematically summarized from the aspects of chemical composition and structure, syn...

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Veröffentlicht in:Coordination chemistry reviews 2022-06, Vol.460, p.214478, Article 214478
Hauptverfasser: Xie, Bingxing, Sun, Baoyu, Gao, Tianyu, Ma, Yulin, Yin, Geping, Zuo, Pengjian
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Sprache:eng
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Zusammenfassung:Prussian blue analogues (PBAs) as cathode in nonaqueous sodium-ion batteries are making robust progress in fundamental research and commercial exploration due to the low cost and high capacity. Herein, the PBAs are systematically summarized from the aspects of chemical composition and structure, synthesis methods, structure regulation and sodium storage mechanism in nonaqueous SIBs, as well as commercialization analysis. [Display omitted] •We investigate the latest progress for PBAs materials in nonaqueous SIBs.•Systematical cognition of PBAs is provided in scientific and commercial study.•Structure-properties relationship of PBAs is deeply revealed in nonaqueous SIBs.•The issues and perspectives are analyzed for PBAs in nonaqueous SIBs. The urgent market demand of energy storage and conversion has promoted the extensive investigations of coordination polymers. As a kind of simple cyano-bridged coordination polymers, Prussian blue (PB) and Prussian blue analogues (PBAs) have been considered as the promising cathode materials in sodium-ion batteries (SIBs) because of their 3D open framework, adjustable structure and chemical composition. Currently, the fundamental research and commercial exploration of PB and PBAs in nonaqueous SIBs are making robust progress. This review summarizes the recent advance and systematical cognition of PB and PBAs, mainly discussing the chemical composition and structure, material synthesis, modification strategy and sodium storage mechanism in nonaqueous SIBs. The structure-properties relationship of PB and PBAs is deeply revealed from the respects of bulk phase and interfacial stability. Moreover, the issues and perspectives are also analyzed to promote the future scientific research and commercial application for PB and PBAs cathode in nonaqueous SIBs.
ISSN:0010-8545
1873-3840
DOI:10.1016/j.ccr.2022.214478