电化学储能
电池(电)
阳极
纳米技术
储能
材料科学
电解质
电化学
电镀(地质)
电极
计算机科学
工艺工程
超级电容器
功率(物理)
化学
工程类
物理
物理化学
地质学
量子力学
地球物理学
作者
Yaojian Zhang,Zheng Chen,Huayu Qiu,Wuhai Yang,Zhiming Zhao,Jingwen Zhao,Guanglei Cui
标识
DOI:10.1038/s41427-019-0167-1
摘要
Abstract The world’s mounting demands for environmentally benign and efficient resource utilization have spurred investigations into intrinsically green and safe energy storage systems. As one of the most promising types of batteries, the Zn battery family, with a long research history in the human electrochemical power supply, has been revived and reevaluated in recent years. Although Zn anodes still lack mature and reliable solutions to support the satisfactory cyclability required for the current versatile applications, many new concepts with optimized Zn/Zn 2+ redox processes have inspired new hopes for rechargeable Zn batteries. In this review, we present a critical overview of the latest advances that could have a pivotal role in addressing the bottlenecks (e.g., nonuniform deposition, parasitic side reactions) encountered with Zn anodes, especially at the electrolyte-electrode interface. The focus is on research activities towards electrolyte modulation, artificial interphase engineering, and electrode structure design. Moreover, challenges and perspectives of rechargeable Zn batteries for further development in electrochemical energy storage applications are discussed. The reviewed surface/interface issues also provide lessons for the research of other multivalent battery chemistries with low-efficiency plating and stripping of the metal.
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