Opportunities and Challenges of Li2C4O4 as Pre‐Lithiation Additive for the Positive Electrode in NMC622||Silicon/Graphite Lithium Ion Cells

锂(药物) 电解质 电极 电化学 材料科学 石墨 相间 化学工程 碳纤维 阴极 离子 纳米技术 无机化学 化学 复合材料 冶金 物理化学 有机化学 复合数 医学 生物 工程类 遗传学 内分泌学
作者
Aurora Gómez-Martín,Maike Michelle Gnutzmann,Egy Adhitama,Lars Frankenstein,Bastian Heidrich,Martin Winter,Tobias Placke
出处
期刊:Advanced Science [Wiley]
卷期号:9 (24) 被引量:31
标识
DOI:10.1002/advs.202201742
摘要

Abstract Silicon (Si)‐based negative electrodes have attracted much attention to increase the energy density of lithium ion batteries (LIBs) but suffer from severe volume changes, leading to continuous re‐formation of the solid electrolyte interphase and consumption of active lithium. The pre‐lithiation approach with the help of positive electrode additives has emerged as a highly appealing strategy to decrease the loss of active lithium in Si‐based LIB full‐cells and enable their practical implementation. Here, the use of lithium squarate (Li 2 C 4 O 4 ) as low‐cost and air‐stable pre‐lithiation additive for a LiNi 0.6 Mn 0.2 Co 0.2 O 2 (NMC622)‐based positive electrode is investigated. The effect of additive oxidation on the electrode morphology and cell electrochemical properties is systematically evaluated. An increase in cycle life of NMC622||Si/graphite full‐cells is reported, which grows linearly with the initial amount of Li 2 C 4 O 4 , due to the extra Li + ions provided by the additive in the first charge. Post mortem investigations of the cathode electrolyte interphase also reveal significant compositional changes and an increased occurrence of carbonates and oxidized carbon species. This study not only demonstrates the advantages of this pre‐lithiation approach but also features potential limitations for its practical application arising from the emerging porosity and gas development during decomposition of the pre‐lithiation additive.
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