锰
锌
阴极
水溶液
离子
化学
材料科学
无机化学
冶金
有机化学
物理化学
作者
Zhengchu Zhang,Yongbiao Mu,Lin Xiao,Xian Yong Wei,Meisheng Han,Chao Yang,Limin Zang,Lin Zeng,Jianhui Qiu
摘要
ABSTRACT Aqueous zinc‐ion batteries (AZIBs) have emerged as a promising energy storage solution due to their eco‐friendly aqueous electrolytes, high theoretical capacity of zinc anodes, and abundant global zinc reserves. Among the reported cathode materials, manganese‐based cathodes are widely used in AZIBs due to their high theoretical capacity and low cost. However, practical applications of manganese‐based cathodes face several challenges, including structural instability, low electrical conductivity, and slow diffusion kinetics. This review begins by exploring the crystalline structures of manganese‐based compounds commonly used in AZIBs, systematically analyzing their reaction mechanisms. Furthermore, it examines the main challenges currently encountered by manganese‐based compounds in AZIBs. Addressing these challenges, this review summarizes corresponding optimization strategies, providing valuable references and insights for the development and application of manganese‐based cathodes in AZIBs.
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