阴极
纳米技术
电池(电)
储能
材料科学
工艺工程
计算机科学
高能
钥匙(锁)
生化工程
电化学储能
水溶液
低能
能量密度
系统工程
能量(信号处理)
工程类
新能源
化学能
作者
Guansheng Peng,Ni Zhang,Chunyan Cao,S Li,Chuanfeng Zang,Hongchao Liu,Shi Chen,Ruiqing Li,Wenyan Gu,Mingzheng Ge
摘要
In the iterative development of novel safe energy storage technologies, aqueous zinc-ion batteries (AZIB) have emerged as a key breakthrough alternative solution due to their abundant materials, low cost, high safety, and environmental friendliness. However, vanadium-based cathode materials face widespread challenges stemming from sluggish reaction kinetics, low conductivity, and structural instability. Thus, this paper systematically reviews recent advances in vanadium-based cathode materials for practical AZIB. First, fundamental energy storage mechanisms of vanadium-based materials are introduced to elucidate their energy storage advantages in AZIB. Second, vanadium-based materials are categorized and their synthesis methods are discussed. Third, modification strategies for vanadium-based cathodes are illustrated, including morphological engineering (from zero to three dimensional structures) and chemical engineering (e.g., pre-intercalation and defect technique). Finally, the remaining challenges and future breakthroughs are presented, ultimately advancing high-performance AZIB from laboratory to practical application. It is hoped that these in-depth comparisons and summaries will provide guidance and reference for the design and development of future high-performance zinc-ion battery cathodes.
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