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二次电池中锂金属负极的非原位表面处理研究进展

Recent Advances in Ex Situ Surface Treatments for Lithium Metal Negative Electrodes in Secondary Batteries.

作者信息

Nogales Paul Maldonado, Lee Sangyup, Yang Seunga, Jeong Soon-Ki

机构信息

Department of Future Convergence Technology, Soonchunhyang University, Soonchunhyang-ro 22-gil, Sinchang-myeon, Asan-si 31538, Chungcheongnam-do, Republic of Korea.

Department of Energy Engineering, Soonchunhyang University, Soonchunhyang-ro 22-gil, Sinchang-myeon, Asan-si 31538, Chungcheongnam-do, Republic of Korea.

出版信息

Int J Mol Sci. 2025 Apr 7;26(7):3446. doi: 10.3390/ijms26073446.

Abstract

Lithium metal negative electrodes are pivotal for next-generation batteries because of their exceptionally high theoretical capacity and low redox potential. However, their commercialization is constrained by critical challenges, including dendrite formation, volumetric instability, and the fragility of the solid electrolyte interphase (SEI). In this context, this review highlights the transformative potential of ex situ surface treatments, which stabilize lithium metal electrodes before cell assembly. Key advancements include inorganic and polymer-based coatings that enhance SEI stability and mitigate dendrite growth, three-dimensional host architectures that manage volumetric changes and improve lithium diffusion, and liquid-phase chemical modifications that enable uniform lithium deposition. These strategies are critically evaluated for their scalability, environmental sustainability, and long-term stability, paying particular attention to cost, complexity, and ecological considerations. In addition, their potential contributions to the development of advanced battery technologies are discussed, providing insights into pathways toward enhanced commercial viability. By synthesizing cutting-edge research and identifying unresolved challenges, this review provides a comprehensive roadmap for advancing safer, more efficient, and more durable lithium metal batteries, thereby bridging the gap between laboratory research and commercial adoption.

摘要

锂金属负极对于下一代电池至关重要,因为其具有极高的理论容量和低氧化还原电位。然而,它们的商业化受到关键挑战的限制,包括枝晶形成、体积不稳定性以及固体电解质界面(SEI)的脆弱性。在此背景下,本综述强调了非原位表面处理的变革潜力,即在电池组装前稳定锂金属电极。关键进展包括增强SEI稳定性并减轻枝晶生长的无机和聚合物基涂层、管理体积变化并改善锂扩散的三维主体结构,以及实现均匀锂沉积的液相化学修饰。对这些策略的可扩展性、环境可持续性和长期稳定性进行了严格评估,特别关注成本、复杂性和生态因素。此外,还讨论了它们对先进电池技术发展的潜在贡献,为提高商业可行性的途径提供了见解。通过综合前沿研究并识别未解决的挑战,本综述为推进更安全、更高效、更耐用的锂金属电池提供了全面的路线图,从而弥合实验室研究与商业应用之间的差距。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3a06/11989614/5881eadda269/ijms-26-03446-g001.jpg

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