Shen Huasen, Li Zhaohuai, Li Jiantao, He Qiu, Li Mengjun, Tian Yunan, Wu Guoning, Zhao Yan, Zhang Xuanxuan, Xiao Jingjing, Amine Khalil, Li Yuyu, Xie Ming, Lu Jun
State Key Laboratory of Precision Blasting, Jianghan University, Wuhan, PR China.
Key Laboratory of Flexible Optoelectronic Materials and Technology, Ministry of Education, Jianghan University, Wuhan, PR China.
Nat Commun. 2025 Jul 1;16(1):5462. doi: 10.1038/s41467-025-60609-4.
The growth of lithium (Li) dendrites and the accumulation of dead Li (i.e., Li metal regions which are electronically disconnected from the current collector) significantly undermine the safety and performance of Li metal batteries. This study employs kilogram-scale atomic layer deposition technology to construct zinc oxide with a preferential (002) crystal orientation, which homogeneously forms on commercial carbon nanotube papers. Our approach emphasizes the importance of achieving a moderate Li adsorption energy and low Li migration energy barriers to suppress Li dendrite growth. In this work, we introduce the concept of "catalytic" effect for dead Li reconversion, as validated through time-of-flight secondary ion mass spectrometry, leading to a Li plating/stripping efficiency of 99.89%. The Ah-level Li metal pouch cells with high-nickel positive electrodes achieve a specific energy of 380 Wh kg (based on the mass of the whole pouch cell) and demonstrate stable cycling under demanding conditions. Analysis of the cycled pouch cells confirms the structural integrity and provides insights into the mechanism of the dead Li "catalytic" conversion.
锂枝晶的生长以及死锂(即与集流体失去电连接的锂金属区域)的积累严重损害了锂金属电池的安全性和性能。本研究采用千克级原子层沉积技术来构建具有择优(002)晶体取向的氧化锌,其均匀地形成在商用碳纳米管纸上。我们的方法强调了实现适度的锂吸附能和低锂迁移能垒以抑制锂枝晶生长的重要性。在这项工作中,我们引入了死锂再转化的“催化”效应概念,这通过飞行时间二次离子质谱得到了验证,锂电镀/剥离效率达到99.89%。具有高镍正极的安培级锂金属软包电池实现了380 Wh kg的比能量(基于整个软包电池的质量),并在苛刻条件下展示出稳定的循环性能。对循环后的软包电池进行分析证实了结构完整性,并深入了解了死锂“催化”转化的机制。