Nandi Sunny, Pumera Martin
New Technologies-Research Centre, University of West Bohemia, Univerzitní 8, Plzeň, 30614, Czech Republic.
Faculty of Electrical Engineering and Computer Science, VSB-Technical University of Ostrava, 17. listopadu 2172/15, Ostrava, 70800, Czech Republic.
Small. 2025 Apr;21(14):e2412161. doi: 10.1002/smll.202412161. Epub 2025 Mar 4.
In the past few years, aqueous zinc-metal batteries (ZMBs) have gained much attention and can be regarded as a potential alternative to lithium-metal batteries owing to their high safety, nature of abundance, and environmental sustainability. However, several challenges persist, including dendrite formation, corrosion, and unwanted side reactions, before ZMBs can be fully utilized in practical applications. To circumvent these issues, anode free zinc-metal batteries (AFZMBs) have emerged as a next-generation energy storage system. This review provides a comprehensive analysis of recent developments in AFZMBs, including their working mechanisms, advantages over conventional ZMBs, and the challenges for practical implementation. It also highlights the key strategies, including current collector modification, electrolyte engineering, and 3D printing techniques to enhance zinc deposition uniformity and cycling stability. The review also explores how 3D printing technology can revolutionize the design of advanced current collectors and zinc-rich cathodes, optimizing material utilization and enhancing battery performance. Finally, with a future perspective of AFZMBs is concluded, highlighting the need for further research to address existing bottlenecks and fully unlock their potential for next-generation energy storage.
在过去几年中,水系锌金属电池(ZMBs)备受关注,由于其高安全性、丰富的资源性质和环境可持续性,可被视为锂金属电池的潜在替代品。然而,在水系锌金属电池能够在实际应用中得到充分利用之前,仍存在一些挑战,包括枝晶形成、腐蚀和不必要的副反应。为了规避这些问题,无负极锌金属电池(AFZMBs)已作为一种下一代储能系统出现。本综述对无负极锌金属电池的最新进展进行了全面分析,包括其工作机制、相对于传统水系锌金属电池的优势以及实际应用面临的挑战。它还强调了关键策略,包括集流体改性、电解质工程和3D打印技术,以提高锌沉积的均匀性和循环稳定性。该综述还探讨了3D打印技术如何能够彻底改变先进集流体和富锌阴极的设计,优化材料利用率并提高电池性能。最后,对无负极锌金属电池的未来前景进行了总结,强调需要进一步研究以解决现有瓶颈并充分释放其在下一代储能方面的潜力。