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Electrode Nanomaterials for Room Temperature Sodium-Ion Batteries: A Review

机译:室温钠离子电池电极纳米材料的研究进展

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摘要

Energy storage and conversion has becoming key issues because of the increasing demand for electronic devices. Lithium-ion batteries have dominated the portable electronics industry over the past decades and are now powering zero-emission vehicles owing to their high energy density. However, the availability of lithium resources, price as well as safety issues of lithium ion batteries are now becoming the main challenges that hinder their widespread applications. Room temperature sodium-ion batteries have been considered as one of potential candidates because of the abundance of metal sodium, its low cost and the similarity of both Li and Na insertion chemistries. This review will present up-to-date nanomaterial advancements of sodium-ion batteries published. Potential negative electrodes include carbon based-anodes, titanium based-anodes and alloy anodes. Positive electrodes include oxides, polyanion compounds as well as other materials. The advantages and limitations of these materials will be discussed, along with the development in electrolyte that has been explored.
机译:由于对电子设备的需求增加,能量存储和转换已成为关键问题。锂离子电池在过去的几十年中一直占据着便携式电子行业的主导地位,由于其高能量密度,现在正为零排放汽车供电。然而,锂资源的可获得性,价格以及锂离子电池的安全性问题正成为阻碍其广泛应用的主要挑战。室温钠离子电池由于其金属钠含量丰富,成本低廉以及Li和Na插入化学的相似性而被认为是潜在的候选者之一。这篇评论将介绍钠离子电池的最新纳米材料进展。潜在的负极包括碳基阳极,钛基阳极和合金阳极。正极包括氧化物,聚阴离子化合物以及其他材料。将讨论这些材料的优点和局限性,并探讨电解质的发展。

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