Yang Jinzhang, Yin Bosi, Sun Ying, Pan Hongge, Sun Wenping, Jia Baohua, Zhang Siwen, Ma Tianyi
Key Laboratory for Green Synthesis and Preparative Chemistry of Advanced Materials of Liaoning Province, Institute of Clean Energy Chemistry, College of Chemistry, Liaoning University, Shenyang, 110036, People's Republic of China.
Institute of Science and Technology for New Energy, Xi'an Technological University, Xi'an, 710021, People's Republic of China.
Nanomicro Lett. 2022 Jan 3;14(1):42. doi: 10.1007/s40820-021-00782-5.
The rapid advance of mild aqueous zinc-ion batteries (ZIBs) is driving the development of the energy storage system market. But the thorny issues of Zn anodes, mainly including dendrite growth, hydrogen evolution, and corrosion, severely reduce the performance of ZIBs. To commercialize ZIBs, researchers must overcome formidable challenges. Research about mild aqueous ZIBs is still developing. Various technical and scientific obstacles to designing Zn anodes with high stripping efficiency and long cycling life have not been resolved. Moreover, the performance of Zn anodes is a complex scientific issue determined by various parameters, most of which are often ignored, failing to achieve the maximum performance of the cell. This review proposes a comprehensive overview of existing Zn anode issues and the corresponding strategies, frontiers, and development trends to deeply comprehend the essence and inner connection of degradation mechanism and performance. First, the formation mechanism of dendrite growth, hydrogen evolution, corrosion, and their influence on the anode are analyzed. Furthermore, various strategies for constructing stable Zn anodes are summarized and discussed in detail from multiple perspectives. These strategies are mainly divided into interface modification, structural anode, alloying anode, intercalation anode, liquid electrolyte, non-liquid electrolyte, separator design, and other strategies. Finally, research directions and prospects are put forward for Zn anodes. This contribution highlights the latest developments and provides new insights into the advanced Zn anode for future research.
温和水系锌离子电池(ZIBs)的迅速发展推动着储能系统市场的发展。但锌负极存在的棘手问题,主要包括枝晶生长、析氢和腐蚀,严重降低了ZIBs的性能。为了使ZIBs商业化,研究人员必须克服巨大的挑战。关于温和水系ZIBs的研究仍在发展中。设计具有高剥离效率和长循环寿命的锌负极存在的各种技术和科学障碍尚未得到解决。此外,锌负极的性能是一个由各种参数决定的复杂科学问题,其中大多数参数常常被忽视,无法实现电池的最大性能。本综述对现有的锌负极问题以及相应的策略、前沿和发展趋势进行了全面概述,以深入理解降解机理和性能的本质及内在联系。首先,分析了枝晶生长、析氢、腐蚀的形成机理及其对负极的影响。此外,从多个角度详细总结和讨论了构建稳定锌负极的各种策略。这些策略主要分为界面改性、结构负极、合金负极、插层负极、液体电解质、非液体电解质、隔膜设计等策略。最后,对锌负极的研究方向和前景提出了展望。本论文突出了最新进展,并为未来先进锌负极的研究提供了新的见解。