Both Resilience and Adhesivity Define Solid Electrolyte Interphases for a High Performance Anode

化学 电解质 阳极 弹性(材料科学) 化学工程 电极 复合材料 物理化学 工程类 材料科学
作者
Yue Zhai,Z.C. Zhong,Nannan Kuang,Qiang Li,Tianze Xu,Jiaxing He,Haimei Li,Xunjie Yin,Yiran Jia,Qing He,Shichao Wu,Quan‐Hong Yang
出处
期刊:Journal of the American Chemical Society [American Chemical Society]
卷期号:146 (22): 15209-15218 被引量:53
标识
DOI:10.1021/jacs.4c02115
摘要

Solid electrolyte interphases (SEIs) are sought to protect high-capacity anodes, which suffer from severe volume changes and fast degradations. The previously proposed effective SEIs were of high strength yet abhesive, inducing a yolk–shell structure to decouple the rigid SEI from the anode for accommodating the volume change. Ambivalently, the interfacial void-evolved electro-chemo-mechanical vulnerabilities become inherent defects. Here, we establish a new rationale for SEIs that resilience and adhesivity are both requirements and pioneer a design of a resilient yet adhesive SEI (re-ad-SEI), integrated into a conjugated surface bilayer structure. The re-ad-SEI and its protected particles exhibit excellent stability almost free from the thickening of SEI and the particle pulverization during cycling. More promisingly, the dynamically bonded intact SEI–anode interfaces enable a high-efficiency ion transport and provide a unique mechanical confinement effect for structural integrity of anodes. The high Coulombic efficiency (>99.8%), excellent cycling stability (500 cycles), and superior rate performance have been demonstrated in microsized Si-based anodes.
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