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Conversion-Based Cathode Materials for Rechargeable Sodium Batteries

机译:用于可充电钠电池的基于转换的阴极材料

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摘要

Conversion-based electrode materials for rechargeable sodium batteries (RSBs) have received considerable attention because of their potentially higher energy densities than those of conventional intercalation-based electrode materials. This would overcome generally lower energy densities of RSBs than those of lithium-ion batteries. However, they often suffer from large volume changes, sluggish Na-ion kinetics, and large overpotential in their reaction. Intensive research has thus focused on improving the electrochemical performance through a number of approaches, including analyses of the reaction mechanisms during charge/discharge, engineering the electrode materials in terms of their nanostructuring or compositing, and searching for new candidate materials. This review presents an overview of the approaches used to explore conversion electrode materials for RSBs, in particular focusing on those with relative high redox potential that could be possibly used as cathodes, followed by a discussion of the challenges and perspectives involving future research directions for these materials.
机译:用于可充电钠电池(RSB)的基于转换的电极材料已受到相当大的关注,因为它们的能量密度可能高于传统的基于插层的电极材料。这将克服通常比锂离子电池更低的能量密度。然而,它们经常遭受体积变化大,Na离子动力学迟缓和反应中过大的潜力。因此,深入的研究集中在通过多种方法来改善电化学性能,包括分析充电/放电过程中的反应机理,就电极材料的纳米结构或合成进行工程改造以及寻找新的候选材料。这篇综述概述了探索用于RSB的转换电极材料的方法,特别是针对那些可能用作阴极的具有较高氧化还原电势的材料,然后讨论了这些方法的挑战和前景,包括未来的研究方向。材料。

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