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首页> 外文期刊>Electrochemical Energy Reviews >Recent Progress in Surface Coatings for Sodium-Ion Battery Electrode Materials
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Recent Progress in Surface Coatings for Sodium-Ion Battery Electrode Materials

机译:钠离子电池电极材料表面涂层研究进展

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摘要

Abstract Sodium-ion batteries (SIBs) are an emerging technology regarded as a promising alternative to lithium-ion batteries (LIBs), particularly for stationary energy storage. However, due to complications associated with the large size of the Na+ charge carrier, the cycling stability and rate performance of SIBs are generally inadequate for commercial applications. Due to their similar chemistry and operating mechanism to LIBs, many improvement strategies derived from extensive LIB research are directly translatable to SIBs. In addition to doping and tailoring of the particle morphology, applying coatings is a promising approach to improve the performance of existing electrode materials. Coatings can mitigate side reactions at the electrode–electrolyte interface, restrict active material dissolution, provide reinforcement against particle degradation, and/or enhance electrode kinetics. This review provides a comprehensive overview and comparison of coatings applied to SIB intercalation cathodes and anodes. Coatings are categorized based on their mechanism of action and deposition method. Key classes of SIB electrode materials are introduced, and promising coating strategies to improve the performance of each material are then discussed. These insights can help guide rational design of high-performance SIB electrodes.Graphical abstract
机译:是一个抽象钠电池(兄弟姐妹)新兴技术视为一种很有前途的替代锂离子电池(库),特别是对于静止的能量储存。然而,由于相关的并发症大尺寸的Na +电荷载子,骑自行车稳定和速度性能的兄弟姐妹通常不适用于商业应用。由于其相似的化学和操作机制库,许多改进策略直接来源于广泛的自由研究可翻译的兄弟姐妹。裁剪的粒子形态、应用涂料是一种很有前途的方法来改善现有电极材料的性能。涂料可以减轻副反应electrode-electrolyte接口,限制活动物质溶解,提供加固对粒子退化和/或提高电极动力学。涂料的全面概述和比较应用于SIB夹层阴极和阳极。涂料的分类根据其机制的行动和沉积方法。介绍了SIB电极材料,有前途的涂层策略来改善然后每个材料的性能进行了讨论。这些见解可以帮助指导合理的设计高性能SIB电极。摘要

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