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Synthesis and electrochemical performance of lithium silicide based alloy anodes for Li-ion oxygen batteries

机译:锂离子氧电池硅化锂合金阳极的合成与电化学性能

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摘要

Li-air batteries receive significant attention due to their theoretical energy density values. However, the large implementation of the Li-air batteries is hindered by the use of metallic Li anode which leads to the low coulombic efficiency and safety problems. Therefore, finding alternatives to the metallic Li anodes is extremely important to realize the high energy density Li-air batteries. In this study, Li22Si5 and Li13Si4 alloys are synthesized by the mechanical alloying and their electrochemical performances as the anode material are observed in 1 M LiTFSI-DME:EC (95:5 vol%) electrolyte. XRD analyses following the discharge/charge measurements show that the formation of the charge products (LixSiy phases) is directly affected by the initial alloy anode stoichiometry. The approximate specific energy density of the assembled Li-ion oxygen batteries, which is alternative description of the Li-air batteries when the metallic Li anode is replaced by the alloy anode, is 1840 W h kg(-1) under fixed capacity condition (800 mA h g(-1)) at 100 mA g(-1) current density. The working voltage of the cell is at around 2.3 V. This study indicates that the lithium silicide alloy anodes, as the alternatives to the metallic Li anodes, are highly promising to develop Li-ion oxygen batteries with higher coulombic efficiency and lower polarization values. (c) 2021 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:由于其理论能源密度值,Li-Air电池会受到显着的关注。然而,通过使用金属锂阳极阻碍了Li-Air电池的大型实施,这导致了低库仑效率和安全问题。因此,找到金属Li阳极的替代方案对于实现高能量密度Li-Air电池非常重要。在该研究中,通过机械合金化合成Li22Si5和Li13 Si 4合金,并且在1M Litfsi-DME中观察到阳极材料的电化学性能:EC(95:5 Vol%)电解质。放电/充电测量后的XRD分析表明,电荷产品(Lixssiy阶段)的形成直接受初始合金阳极化学计量的影响。组装的锂离子氧气电池的近似特定能量密度,这是在金属锂阳极被合金阳极代替时锂气体电池的替代描述,在固定容量条件下为1840WH kg(-1)( 800 mA hg(-1))在100 mA g(-1)电流密度下。电池的工作电压约为2.3 V.该研究表明,硅化锂合金阳极作为金属Li阳极的替代方案,具有高度令人遗憾的是,具有更高的库仑效率和偏振值的锂离子氧电池。 (c)2021氢能量出版物LLC。 elsevier有限公司出版。保留所有权利。

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