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钠离子电池和钾离子电池用合金基负极的研究进展

Recent Progress on the Alloy-Based Anode for Sodium-Ion Batteries and Potassium-Ion Batteries.

作者信息

Song Keming, Liu Chuntai, Mi Liwei, Chou Shulei, Chen Weihua, Shen Changyu

机构信息

College of Chemistry, Zhengzhou University, Zhengzhou, 450001, P. R. China.

Key Laboratory about Materials Forming and Mold Technology of Education Ministry, Zhengzhou University, Zhengzhou, 450001, P. R. China.

出版信息

Small. 2021 Mar;17(9):e1903194. doi: 10.1002/smll.201903194. Epub 2019 Sep 23.

Abstract

High-energy batteries with low cost are urgently needed in the field of large-scale energy storage, such as grid systems and renewable energy sources. Sodium-ion batteries (SIBs) and potassium-ion batteries (PIBs) with alloy-based anodes provide huge potential due to their earth abundance, high capacity, and suitable working potential, and are recognized as attractive alternatives for next-generation batteries system. Although some important breakthroughs have been reported, more significant improvements are still required for long lifetime and high energy density. Herein, the latest progress for alloy-based anodes for SIBs and PIBs is summarized, mainly including Sn, Sb, Ge, Bi, Si, P, and their oxides, sulfides, selenides, and phosphides. Specifically, the material designs for the desired Na /K storage performance, phase transform, ionic/electronic transport kinetics, and specific chemical interactions are discussed. Typical structural features and research strategies of alloy-based anodes, which are used to facilitate processes in battery development for SIBs and PIBs, are also summarized. The perspective of future research of SIBs and PIBs is outlined.

摘要

大规模储能领域,如电网系统和可再生能源领域,迫切需要低成本的高能电池。具有合金基负极的钠离子电池(SIB)和钾离子电池(PIB)因其丰富的储量、高容量和合适的工作电位而具有巨大潜力,被认为是下一代电池系统有吸引力的替代方案。尽管已报道了一些重要突破,但要实现长寿命和高能量密度仍需要更显著的改进。在此,总结了SIB和PIB合金基负极的最新进展,主要包括Sn、Sb、Ge、Bi、Si、P及其氧化物、硫化物、硒化物和磷化物。具体讨论了实现所需钠/钾存储性能、相变、离子/电子传输动力学以及特定化学相互作用的材料设计。还总结了合金基负极的典型结构特征和研究策略,这些策略有助于SIB和PIB电池开发过程。概述了SIB和PIB未来研究的展望。

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