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State-of-the-Art Electrode Materials for Sodium-Ion Batteries

机译:用于钠离子电池的最先进的电极材料

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摘要

Sodium-ion batteries (SIBs) were investigated as recently as in the seventies. However, they have been overshadowed for decades, due to the success of lithium-ion batteries that demonstrated higher energy densities and longer cycle lives. Since then, the witness a re-emergence of the SIBs and renewed interest evidenced by an exponential increase of the publications devoted to them (about 9000 publications in 2019, more than 6000 in the first six months this year). This huge effort in research has led and is leading to an important and constant progress in the performance of the SIBs, which have conquered an industrial market and are now commercialized. This progress concerns all the elements of the batteries. We have already recently reviewed the salts and electrolytes, including solid electrolytes to build all-solid-state SIBs. The present review is then devoted to the electrode materials. For anodes, they include carbons, metal chalcogenide-based materials, intercalation-based and conversion reaction compounds (transition metal oxides and sulfides), intermetallic compounds serving as functional alloying elements. For cathodes, layered oxide materials, polyionic compounds, sulfates, pyrophosphates and Prussian blue analogs are reviewed. The electrode structuring is also discussed, as it impacts, importantly, the electrochemical performance. Attention is focused on the progress made in the last five years to report the state-of-the-art in the performance of the SIBs and justify the efforts of research.
机译:最近七十年代最近调查了钠离子电池(SIB)。然而,由于锂离子电池的成功,它们已经过时地黯然失色,这是锂离子电池的成功,符合更高的能量密度和更长的循环生命。从那以后,目击者的重新出现了SIBs和更新的兴趣通过致力于他们的出版物的指数增加来证明(2019年约9000个出版物,今年前六个月超过6000)。这种在研究中的这种巨大努力已经导致,导致SIBS表现的重要和不断进展,该思想征服了工业市场,现在商业化。这一进展涉及电池的所有元素。我们最近审查了盐和电解质,包括固体电解质以构建全固态SIBs。然后对本综述致力于电极材料。对于阳极,它们包括碳,金属硫属化物的基础材料,嵌入和转化反应化合物(过渡金属氧化物和硫化物),用作功能合金元素的金属间化合物。对于阴极,综述层状氧化物材料,聚偶乙基化合物,硫酸盐,焦磷酸盐和普鲁士蓝色类似物。当它影响,电化学性能也会讨论电极结构化。注意力集中在过去五年中提出的进展,以便在绩效中向最先进的绩效报告,并证明了研究的努力。

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