Root Reason for the Failure of a Practical Zn–Ni Battery: Shape Changing Caused by Uneven Current Distribution and Zn Dissolution

阳极 材料科学 电池(电) 溶解 电解质 电偶阳极 根本原因 锂(药物) 水溶液 集电器 储能 降级(电信) 化学工程 冶金 电极 计算机科学 阴极保护 可靠性工程 化学 功率(物理) 物理化学 内分泌学 工程类 物理 电信 医学 量子力学
作者
Yuanhao Shen,Luyao Xu,Qingyu Wang,Zequan Zhao,Ziqiang Dong,Jie Liu,Cheng Zhong,Wenbin Hu
出处
期刊:ACS Applied Materials & Interfaces [American Chemical Society]
卷期号:13 (43): 51141-51150 被引量:39
标识
DOI:10.1021/acsami.1c17204
摘要

In recent years, with the increasing application of lithium-ion batteries in energy storage devices, fire accidents caused by lithium-ion batteries have become more frequent and have arisen wide concern. Due to the safety of aqueous electrolyte, aqueous Zn-based batteries have attracted vast attention, among which Zn-Ni batteries stand out by virtue of their excellent rate performance and environmental friendliness. However, poor cycling life limits the application of Zn-Ni batteries. To figure out the main cause, a failure analysis of a practical Zn-Ni battery has been carried out. During the cycling of the Zn-Ni battery, the evolution of gas, the shape changing, and the aggregation of additive and binder of Zn anode can be observed. Combined with the finite element analysis, we finally reveal that the key factor of battery failure is the shape changing of the Zn anode caused by uneven current distribution and the dissolution of Zn. The shape changing of the Zn anode reduces the effective surface area of anode and increases the possibility of dead Zn, which makes the battery unable to discharge even in the presence of a large amount of Zn. These findings are helpful to deepen the understanding of the working and failure mechanisms of the Zn anode and provide effective guidance for subsequent research.
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