Challenges and Design Strategies for Conversion-Based Anode Materials for Lithium- and Sodium-Ion Batteries

IF 2.2 4区 工程技术 Q3 ELECTROCHEMISTRY
Hyunwoo Kim, Dong Inn Kim, W. Yoon
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引用次数: 10

Abstract

Although lithium-ion batteries are currently the most reliable power supply system for various mobile applications, further improvement in energy density is still required as the need for batteries in large energy-consuming devices is rapidly growing. However, in the anode, the most widely commercialized graphite-based anode materials almost face theoretical limitations. In addition, sodium-ion batteries have been actively studied to replace expensive charge carriers with cheaper ones. Accordingly, conversion-based materials have been extensively studied as high-capacity anode materials in both lithiumion batteries and sodium-ion batteries because their theoretical capacity is twice or thrice higher than that of insertion-based materials. This review will provide a comprehensive understanding of conversion-based materials, including basic charge storage behaviors, critical drawbacks that should be overcome, and practical material design for high-performance.
锂离子和钠离子电池用转换基阳极材料面临的挑战和设计策略
尽管锂离子电池目前是各种移动应用中最可靠的电源系统,但随着大型耗能设备对电池的需求迅速增长,仍需要进一步提高能量密度。然而,在阳极方面,最广泛商业化的石墨基阳极材料几乎面临理论限制。此外,钠离子电池已被积极研究,以用更便宜的载流子取代昂贵的载流子。因此,基于转换的材料作为锂离子电池和钠离子电池中的高容量阳极材料已被广泛研究,因为它们的理论容量是基于插入的材料的理论容量的两倍或三倍。这篇综述将全面了解基于转换的材料,包括基本的电荷存储行为、应该克服的关键缺点,以及高性能的实用材料设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
6.30
自引率
8.10%
发文量
44
期刊介绍: Covering fields: - Batteries and Energy Storage - Biological Electrochemistry - Corrosion Science and Technology - Electroanalytical Chemistry and Sensor Technology - Electrocatalysis - Electrochemical Capacitors & Supercapcitors - Electrochemical Engineering - Electrodeposition and Surface Treatment - Environmental Science and Technology - Fuel Cells - Material Electrochemistry - Molecular Electrochemistry and Organic Electrochemistry - Physical Electrochemistry - Solar Energy Conversion and Photoelectrochemistry
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