材料科学
降级(电信)
阳极
锂(药物)
硅
离子
化学工程
工程物理
纳米技术
光电子学
电极
电气工程
有机化学
物理化学
工程类
内分泌学
化学
医学
作者
Yoon Jeong Choi,Ji‐Youn Bae,Seongsoo Park,Yeseul Kim,So Hee Kim,Hansol Lee,Jong‐Seong Bae,Taeho Kim,Sunyoung Shin,Yongju Lee,Byung Mook Weon,Janghyuk Moon,Seung‐Ho Yu
标识
DOI:10.1002/aenm.202502143
摘要
Abstract The incorporation of silicon monoxide (SiO) into graphite anodes improves the energy density of lithium‐ion batteries. However, it falls short of the long‐term durability of pure graphite, and research on their cycling performance remains limited. This study observes a sudden capacity decay in graphite/SiO anodes during long‐term cycling at room temperature (RT) and a moderate C‐rate. This decay arises from the mechanical degradation of SiO, leading to the formation of a “SiO‐SEI crust” that consumes lithium ions. This phenomenon does not occur at higher temperatures or lower C‐rates, implying that larger diffusion‐induced stress from lithium‐ion gradients at RT and 1 C accelerates SiO degradation. Furthermore, introducing a relaxation step to reduce the lithium‐ion gradient mitigates this sudden capacity decay, supporting diffusion‐induced stress as a critical factor in the degradation mechanism. These findings emphasize the role of diffusion‐induced stress in the performance degradation of Si‐based batteries and provide valuable insights for enhancing the lifespan of composite anodes.
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