电解质
材料科学
阳极
电极
枝晶(数学)
纳米技术
储能
电化学
聚合物电解质
水溶液
化学工程
电池(电)
扩散
离子键合
氢
离子
离子电导率
能量密度
氢经济
作者
Zeyu Zhu,Jingxuan Pan,Haoran Ma,Chuanbiao Zhang,Xiaoting Chen,Zhiyuan He
摘要
Aqueous zinc‐ion batteries (AZIBs) have emerged as a prominent energy storage solution due to their high theoretical capacity, environmental benignity, and cost‐effectiveness. However, their practical application at low temperatures is severely hindered by electrolyte freezing, exacerbated dendrite growth, and sluggish ion diffusion kinetics. This review systematically discusses design strategies for freeze‐tolerant AZIBs from both electrode and electrolyte perspectives. We first focus on electrode modifications, including ionic doping and defect engineering for manganese‐ and vanadium‐based cathodes, alongside protective strategies for Zn anodes to mitigate dendrite formation at subzero conditions. We then examine electrolyte engineering, focusing on lowering freezing points and suppressing hydrogen bond formation through “water‐in‐salt” systems, additives, and hydrogel networks. By highlighting recent advances and identifying future research directions, this review provides a multidimensional perspective on developing reliable, cold‐resilient AZIBs for diverse real‐world employments.
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