Sun Lin, Liu Yanxiu, Wu Jun, Shao Rong, Jiang Ruiyu, Tie Zuoxiu, Jin Zhong
School of Chemistry and Chemical Engineering, Yancheng Institute of Technology, Yancheng, 224051, China.
MOE Key Laboratory of Mesoscopic Chemistry, MOE Key Laboratory of High Performance Polymer Materials and Technology, Jiangsu Key Laboratory of Advanced Organic Materials, School of Chemistry and Chemical Engineering, Nanjing University, Nanjing, 210023, China.
Small. 2022 Feb;18(5):e2102894. doi: 10.1002/smll.202102894. Epub 2021 Oct 5.
Rechargeable silicon anode lithium ion batteries (SLIBs) have attracted tremendous attention because of their merits, including a high theoretical capacity, low working potential, and abundant natural sources. The past decade has witnessed significant developments in terms of extending the lifespan and maintaining high capacities of SLIBs. However, the detrimental issue of low initial Coulombic efficiency (ICE) toward SLIBs is causing more and more attention in recent years because ICE value is a core index in full battery design that profoundly determines the utilization of active materials and the weight of an assembled battery. Herein, a comprehensive review is presented of recent advances in solutions for improving ICE of SLIBs. From design perspectives, the strategies for boosting ICE of silicon anodes are systematically categorized into several aspects covering structure regulation, prelithiation, interfacial design, binder design, and electrolyte additives. The merits and challenges of various approaches are highlighted and discussed in detail, which provides valuable insights into the rational design and development of state-of-the-art techniques to deal with the deteriorative issue of low ICE of SLIBs. Furthermore, conclusions and future promising research prospects for lifting ICE of SLIBs are proposed at the end of the review.
可充电硅阳极锂离子电池(SLIBs)因其诸多优点而备受关注,这些优点包括高理论容量、低工作电位以及丰富的天然资源。在过去十年中,SLIBs在延长使用寿命和保持高容量方面取得了显著进展。然而,近年来,SLIBs初始库仑效率(ICE)较低这一有害问题引起了越来越多的关注,因为ICE值是全电池设计中的一个核心指标,它深刻地决定了活性材料的利用率和组装电池的重量。在此,本文对提高SLIBs的ICE的解决方案的最新进展进行了全面综述。从设计角度来看,提高硅阳极ICE的策略被系统地分为几个方面,包括结构调控、预锂化、界面设计、粘结剂设计和电解质添加剂。详细阐述并讨论了各种方法的优点和挑战,这为合理设计和开发处理SLIBs低ICE这一恶化问题的先进技术提供了有价值的见解。此外,综述末尾还提出了提高SLIBs的ICE的结论和未来有前景的研究方向。