The Development and Prospect of Stable Polyanion Compound Cathodes in LIBs and Promising Complementers

电池(电) 储能 电解质 阴极 材料科学 锂(药物) 涂层 纳米技术 化学 电气工程 电极 工程类 物理化学 医学 功率(物理) 物理 量子力学 内分泌学
作者
Dongfang Guo,Siyu Chu,Bin Zhang,Zijiong Li
出处
期刊:Small methods [Wiley]
标识
DOI:10.1002/smtd.202400587
摘要

Abstract Cathode materials are usually the key to determining battery capacity, suitable cathode materials are an important prerequisite to meet the needs of large‐scale energy storage systems in the future. Polyanionic compounds have significant advantages in metal ion storage, such as high operating voltage, excellent structural stability, safety, low cost, and environmental friendliness, and can be excellent cathode options for rechargeable metal‐ion batteries. Although some polyanionic compounds have been commercialized, there are still some shortcomings in electronic conductivity, reversible specific capacity, and rate performance, which obviously limits the development of polyanionic compound cathodes in large‐scale energy storage systems. Up to now, many strategies including structural design, ion doping, surface coating, and electrolyte optimization have been explored to improve the above defects. Based on the above contents, this paper briefly reviews the research progress and optimization strategies of typical polyanionic compound cathodes in the fields of lithium‐ion batteries (LIBs) and other promising metal ion batteries (sodium ion batteries (SIBs), potassium ion batteries (PIBs), magnesium ion batteries (MIBs), calcium ion batteries (CIBs), zinc ion batteries (ZIBs), aluminum ion batteries (AIBs), etc.), aiming to provide a valuable reference for accelerating the commercial application of polyanionic compound cathodes in rechargeable battery systems.
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