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A stable liquid-solid interface of a lithium metal anode enabled by micro-region meshing

机译:一个稳定的锂金属液固界面阳极通过小区啮合

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摘要

Although lithium metal is regarded as the most promising anode for high energy density lithium ion batteries, the unstable solid-liquid interface during cycling severely shortens the battery lifetime. The Li deposition behavior is greatly influenced by the current density distribution on the surface of the electrode, which is significantly associated with the electrode structure. A well-designed electrode structure plays a key role in stabilizing the solid-liquid interface of the Li metal anode. In this work, a lithiophilic honeycomb-like Ni3N nanosheet array modified Ni foam (Ni3N@NF) is prepared to stabilize the lithium metal anode. The honeycomb-like Ni3N nanosheet arrays divide the surface of Ni foam into numerous micro-regions, enabling Li to independently deposit in each mesh. Besides, Li3N is generated resulting from the in situ reaction between Li and Ni3N, improving the transportation of Li-ions. Consequently, a symmetrical cell of Ni3N@NF-Li||Ni3N@NF-Li achieves stable Li plating/stripping behavior for over 1500 h at a current density of 1 mA cm(-2). Besides, a full cell of Ni3N@NF-Li||LiFePO4 exhibits enhanced cycling stability and outstanding rate performance.
机译:虽然金属锂被认为是最有前途的高能量密度锂阳极离子电池,不稳定的固液接口在自行车严重缩短了电池寿命。由电流密度影响很大分布在电极的表面,显著相关的是哪个电极结构。结构在稳定中发挥着关键作用固液界面的金属阳极。lithiophilic蜂窝似的Ni3N这项工作nanosheet数组修改镍泡沫(Ni3N@NF)稳定金属锂阳极的准备。的蜂窝似的Ni3N nanosheet数组划分镍表面的泡沫很多独立micro-regions,使李在每个网格存款。从李之间的原位反应生成的和Ni3N,改善的运输锂离子。李Ni3N@NF-Li | | Ni3N@NF-Li达到稳定电镀/剥离行为超过1500 h电流密度的马1厘米(2)。增强细胞Ni3N@NF-Li | |磷酸铁锂展品循环稳定性和出色的速度的性能。

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