MgF2 Interface Engineering Promotes the Growth and Stability of LiF-Rich Solid–Electrolyte Interphases on Si-C

IF 8.3 2区 材料科学 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY ACS Applied Materials & Interfaces Pub Date : 2024-10-21 DOI:10.1021/acsami.4c11705
Peng Liu, Yupeng Xiao, Jiyuan You, Bo Zhang, Tianle Li, Xiaotong Gao, Yuqian Li, Wenju Wang
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Abstract

Volume expansion of the Si-C anode during the charging/discharging process causes continuous fracture/formation of the solid electrolyte interface (SEI), which leads to rapid capacity fading. Here, we designed a MgF2-modified separator (MF-PP) to construct a fluorine-rich SEI layer by generating more LiF. The robust SEI layer formed can alleviate the volume stress and prevent crack growth in Si-C electrodes. After 450 cycles, the Si-C||MF-PP half cell retained a reversible capacity of 543.2 mAh g–1, while the LFP||MF-PP||Si-C full cell maintained a reversible capacity of 103.4 mAh g–1 with high Coulombic efficiency after 100 cycles. This facile and low-cost separator modification strategy provides an easily scalable approach to develop stable Si-based anodes for next-generation high-energy-density systems.

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MgF2 界面工程促进了硅-碳上富锂固体电解质互层的生长和稳定性
在充电/放电过程中,Si-C 阳极的体积膨胀会导致固体电解质界面(SEI)不断断裂/形成,从而导致容量快速衰减。在此,我们设计了一种 MgF2 改性隔膜(MF-PP),通过生成更多的 LiF 来构建富含氟的 SEI 层。所形成的坚固 SEI 层可减轻体积应力,防止 Si-C 电极出现裂纹。经过 450 次循环后,Si-C||MF-PP 半电池保持了 543.2 mAh g-1 的可逆容量,而 LFP||MF-PP||Si-C 全电池在 100 次循环后保持了 103.4 mAh g-1 的可逆容量和较高的库仑效率。这种简便、低成本的分离器改性策略为开发用于下一代高能量密度系统的稳定硅基阳极提供了一种易于扩展的方法。
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来源期刊
ACS Applied Materials & Interfaces
ACS Applied Materials & Interfaces 工程技术-材料科学:综合
CiteScore
16.00
自引率
6.30%
发文量
4978
审稿时长
1.8 months
期刊介绍: ACS Applied Materials & Interfaces is a leading interdisciplinary journal that brings together chemists, engineers, physicists, and biologists to explore the development and utilization of newly-discovered materials and interfacial processes for specific applications. Our journal has experienced remarkable growth since its establishment in 2009, both in terms of the number of articles published and the impact of the research showcased. We are proud to foster a truly global community, with the majority of published articles originating from outside the United States, reflecting the rapid growth of applied research worldwide.
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