表征(材料科学)
阳极
材料科学
电池(电)
多孔硅
多孔性
纳米技术
硅
合理设计
工作(物理)
结构材料
降级(电信)
多孔介质
材料设计
电极
压力(语言学)
结构完整性
工程物理
体积膨胀
作者
Yong Zhang,Chang Luo,Xijun Liu,Zhenjia Shi
出处
期刊:Materials
[Multidisciplinary Digital Publishing Institute]
日期:2026-02-02
卷期号:19 (3): 582-582
摘要
Silicon is a well-known anode material for lithium-ion batteries that has attracted a lot of interests because of its high theoretical specific capacity (4200 mAh g-1). However, its severe volume expansion during cycling leads to structural degradation and rapid capacity fading. The design of porous silicon architectures has emerged as a fundamental and effective strategy to mitigate these issues by accommodating mechanical stress and preserving electrode integrity. Concurrently, the development of advanced in situ/operando characterization techniques has shifted the research paradigm, enabling direct observation of dynamic structural and interfacial evolution under operating conditions. This review systematically summarizes recent progress in the rational design of porous Si-based anodes and critically examines how state-of-the-art in situ methods provide direct mechanistic validation of these designs. The work highlights the synergistic interplay between targeted material engineering and in situ/operando characterization, offering a roadmap for the development of high-performance porous silicon anodes.
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