枝晶(数学)
阳极
材料科学
电池(电)
阴极
表征(材料科学)
纳米技术
电偶阳极
能量密度
数码产品
电解质
储能
工程物理
电气工程
阴极保护
化学
物理
物理化学
工程类
热力学
功率(物理)
几何学
数学
电极
作者
Qi Yang,Qing Li,Zhuoxin Liu,Donghong Wang,Ying Guo,Xinliang Li,Yongchao Tang,Hongfei Li,Binbin Dong,Chunyi Zhi
标识
DOI:10.1002/adma.202001854
摘要
Abstract Aqueous Zn batteries that provide a synergistic integration of absolute safety and high energy density have been considered as highly promising energy‐storage systems for powering electronics. Despite the rapid progress made in developing high‐performance cathodes and electrolytes, the underestimated but non‐negligible dendrites of Zn anode have been observed to shorten battery lifespan. Herein, this dendrite issue in Zn anodes, with regard to fundamentals, protection strategies, characterization techniques, and theoretical simulations, is systematically discussed. An overall comparison between the Zn dendrite and its Li and Al counterparts, to highlight their differences in both origin and topology, is given. Subsequently, in‐depth clarifications of the specific influence factors of Zn dendrites, including the accumulation effect and the cathode loading mass (a distinct factor for laboratory studies and practical applications) are presented. Recent advances in Zn dendrite protection are then comprehensively summarized and categorized to generate an overview of respective superiorities and limitations of various strategies. Accordingly, theoretical computations and advanced characterization approaches are introduced as mechanism guidelines and measurement criteria for dendrite suppression, respectively. The concluding section emphasizes future challenges in addressing the Zn dendrite issue and potential approaches to further promoting the lifespan of Zn batteries.
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