Lithium hexamethyldisilazide as electrolyte additive for efficient cycling of high-voltage non-aqueous lithium metal batteries

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作者
Danfeng Zhang
Ming Liu
Jiabin Ma
Ke Yang
Zhen Chen
Kaikai Li
Chen Zhang
Yinping Wei
Min Zhou
Peng Wang
Yuanbiao He
Wei Lv
Quan-Hong Yang
Feiyu Kang
Yan-Bing He
机构
[1] Tsinghua University,Shenzhen All
[2] Tsinghua University,Solid
[3] School of Materials Science and Engineering,State Lithium Battery Electrolyte Engineering Research Center, Institute of Materials Research (IMR), Tsinghua Shenzhen International Graduate School
[4] Harbin Institute of Technology,School of Materials Science and Engineering
[5] East China University of Science and Technology,School of Pharmacy
[6] Tianjin University,Nanoyang Group, State Key Laboratory of Chemical Engineering, School of Chemical Engineering and Technology
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High-voltage lithium metal batteries suffer from poor cycling stability caused by the detrimental effect on the cathode of the water moisture present in the non-aqueous liquid electrolyte solution, especially at high operating temperatures (e.g., ≥60 °C). To circumvent this issue, here we report lithium hexamethyldisilazide (LiHMDS) as an electrolyte additive. We demonstrate that the addition of a 0.6 wt% of LiHMDS in a typical fluorine-containing carbonate-based non-aqueous electrolyte solution enables a stable Li||LiNi0.8Co0.1Mn0.1O2 (NCM811) coin cell operation up to 1000 or 500 cycles applying a high cut-off cell voltage of 4.5 V in the 25 °C−60 °C temperature range. The LiHMDS acts as a scavenger for hydrofluoric acid and water and facilitates the formation of an (electro)chemical robust cathode|electrolyte interphase (CEI). The LiHMDS-derived CEI prevents the Ni dissolution of NCM811, mitigates the irreversible phase transformation from layered structure to rock-salt phase and suppresses the side reactions with the electrolyte solution.
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