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通过电解质的原位凝胶化和内置氟化固体电解质界面实现的稳定锂金属电池。

Stable Li-Metal Batteries Enabled by in Situ Gelation of an Electrolyte and In-Built Fluorinated Solid Electrolyte Interface.

作者信息

Jiao Xiaoxia, Wang Jin, Gao Guixia, Zhang Xuezhi, Fu Cuimei, Wang Lina, Wang Yonggang, Liu Tianxi

机构信息

State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, College of Materials Science and Engineering, Donghua University, Shanghai 201620, China.

Department of Chemistry, Fudan University, Shanghai 200433, China.

出版信息

ACS Appl Mater Interfaces. 2021 Dec 22;13(50):60054-60062. doi: 10.1021/acsami.1c19663. Epub 2021 Dec 8.

Abstract

Lithium-metal batteries (LMBs) are the focus of upcoming energy storage systems with extremely high-energy density. However, the leakage of liquid electrolyte and the uncontrollable dendritic Li growth on the surface of the Li anode lead to their low reversibility and safety risks. Herein, we propose a stable quasi-solid LMB with in situ gelation of liquid electrolyte and an in-built fluorinated solid electrolyte interface (SEI) on the Li anode. The gel polymer electrolyte (GPE) is readily constructed via cationic polymerization between lithium hexafluorophosphate and ether electrolyte. The fluorine-containing additive, fluoroethylene carbonate (FEC), plays a crucial role in the building of a dense SEI with fast interfacial charge transport. The ex situ spectroscopic characterizations suggest that the enhanced LiF species in the SEI with the addition of FEC and the in situ optical microscopy reveal the inhibited dendritic Li growth. Moreover, GPE@FEC exhibits a high oxidative stability beyond 5.0 V (vs Li/Li). The significantly improved Li plating/stripping efficiency (400 cycles, 98.7%) is presented for the Li∥Cu cells equipped with GPE@FEC. Decent cycling stability is also available for the cells with the LiFePO cathode, reflecting the feasibility of GPE@FEC for practical LMBs with enhanced stability and safety.

摘要

锂金属电池(LMBs)是即将到来的具有极高能量密度的储能系统的焦点。然而,液体电解质的泄漏以及锂阳极表面不可控的锂枝晶生长导致其可逆性低和安全风险。在此,我们提出一种稳定的准固态LMB,其具有液体电解质的原位凝胶化以及锂阳极上内置的氟化固体电解质界面(SEI)。凝胶聚合物电解质(GPE)通过六氟磷酸锂与醚电解质之间的阳离子聚合反应很容易构建。含氟添加剂氟代碳酸乙烯酯(FEC)在构建具有快速界面电荷传输的致密SEI中起着关键作用。非原位光谱表征表明,添加FEC后SEI中LiF物种增加,原位光学显微镜显示锂枝晶生长受到抑制。此外,GPE@FEC在超过5.0 V(相对于Li/Li)时表现出高氧化稳定性。配备GPE@FEC的Li∥Cu电池展现出显著提高的锂电镀/剥离效率(400次循环,98.7%)。具有磷酸铁锂阴极的电池也具有良好的循环稳定性,这反映了GPE@FEC用于具有更高稳定性和安全性的实用LMBs的可行性。

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