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Dendrite-Free and Stable Lithium Metal Battery Achieved by a Model of Stepwise Lithium Deposition and Stripping

机译:通过逐步锂沉积和剥离的模型实现了无树枝状和稳定的锂金属电池

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The uncontrolled formation of lithium (Li) dendrites and the unnecessary consumption of electrolyte during the Li plating/stripping process have been major obstacles in developing safe and stable Li metal batteries. Herein, we report a cucumber-like lithiophilic composite skeleton (CLCS) fabricated through a facile oxidation-immersion-reduction method. The stepwise Li deposition and stripping, determined using in situ Raman spectra during the galvanostatic Li charging/discharging process, promote the formation of a dendrite-free Li metal anode. Furthermore, numerous pyridinic N, pyrrolic N, and CuxN sites with excellent lithiophilicity work synergistically to distribute Li ions and suppress the formation of Li dendrites. Owing to these advantages, cells based on CLCS exhibit a high Coulombic efficiency of 97.3% for 700 cycles and an improved lifespan of 2000 h for symmetric cells. The full cells assembled with LiFePO4 (LFP), SeS2 cathodes and CLCS@Li anodes demonstrate high capacities of 110.1 mAh g?1 after 600 cycles at 0.2 A g?1 in CLCS@Li|LFP and 491.8 mAh g?1 after 500 cycles at 1 A g?1 in CLCS@Li|SeS2. The unique design of CLCS may accelerate the application of Li metal anodes in commercial Li metal batteries.
机译:在锂电镀/汽提工艺期间,锂(Li)树突和电解质不必要的消耗的不受控制的形成是开发安全稳定的Li金属电池的主要障碍。在此,我们报告通过容易氧化浸渍还原方法制造的黄瓜状锂硅基复合骨架(CLCS)。逐步Li沉积和剥离,在Galvanostatic Li充电/放电过程中使用原位拉曼光谱测定,促进了一种无树枝状的Li金属阳极的形成。此外,许多吡啶N,吡咯N,吡咯,具有优异的锂磷灰质的含量协同作用,以分配Li离子并抑制Li Dendrites的形成。由于这些优点,基于CLCS的细胞具有97.3%的高水库效率为700次循环,并且对于对称细胞的2000小时的改善寿命。用LiFePO4(LFP),SES2阴极和CLCS组装的完整细胞展示了110.1mahg'1的高容量在Clcs @ LFP和491.8mah g?1在500次循环后的600次循环后的110.1mah = 1。在CLCS @ Li | SES2中的1 A G?1。 CLC的独特设计可以加速Li Metal Anodes在商业Li金属电池中的应用。

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