Wu Xin, Lan Xuexia, Hu Renzong, Yao Yu, Yu Yan, Zhu Min
School of Materials Science and Engineering, Guangdong Provincial Key Laboratory of Advanced Energy Storage Materials, South China University of Technology, Guangzhou, 510640, China.
Hefei National Laboratory for Physical Sciences at the Microscale, Department of Materials Science and Engineering, National Synchrotron Radiation Laboratory, CAS Key Laboratory of Materials for Energy Conversion, University of Science and Technology of China, Hefei, Anhui, 230026, China.
Adv Mater. 2022 Feb;34(7):e2106895. doi: 10.1002/adma.202106895. Epub 2022 Jan 6.
Because of concerns regarding shortages of lithium resources and the urgent need to develop low-cost and high-efficiency energy-storage systems, research and applications of sodium-ion batteries (SIBs) have re-emerged in recent years. Herein, recent advances in high-capacity Sn-based anode materials for stable SIBs are highlighted, including tin (Sn) alloys, Sn oxides, Sn sulfides, Sn selenides, Sn phosphides, and their composites. The reaction mechanisms between Sn-based materials and sodium are clarified. Multiphase and multiscale structural optimizations of Sn-based materials to achieve good sodium-storage performance are emphasized. Full-cell designs using Sn-based materials as anodes and further development of Sn-based materials are discussed from a commercialization perspective. Insights into the preparation of future high-performance Sn-based anode materials and the construction of sodium-ion full batteries with a high energy density and long service life are provided.
由于对锂资源短缺的担忧以及开发低成本、高效率储能系统的迫切需求,近年来钠离子电池(SIB)的研究与应用再度兴起。本文重点介绍了用于稳定钠离子电池的高容量锡基负极材料的最新进展,包括锡(Sn)合金、氧化锡、硫化锡、硒化锡、磷化锡及其复合材料。阐明了锡基材料与钠之间的反应机理。强调了锡基材料的多相和多尺度结构优化以实现良好的储钠性能。从商业化角度讨论了以锡基材料作为负极的全电池设计以及锡基材料的进一步发展。提供了对未来高性能锡基负极材料制备以及构建具有高能量密度和长使用寿命的钠离子全电池的见解。