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首页> 外文期刊>ACS applied materials & interfaces >Bioinspired Polysulfiphobic Artificial Interphase Layer on Lithium Metal Anodes for Lithium Sulfur Batteries
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Bioinspired Polysulfiphobic Artificial Interphase Layer on Lithium Metal Anodes for Lithium Sulfur Batteries

机译:锂金属阳极上的生物悬浮的多硫纤维人工层,用于锂硫电池的锂金属阳极

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摘要

The application of Li-S batteries suffers from many issues, polysulfide dissolution in particular. The fresh Li metal reacts with polysulfide continuously, which aggravates irregular Li plating/stripping behavior and decomposition of organic electrolyte resulting in short cycle life and low Coulombic efficiency. Nature has provided a lot of inspiration for human to realize structural construction and functional integration, as it does to battery design. In this report, learning from the hydrophobic property of natural species, a scaly polysulfiphobic artificial interphase layer are constructed on lithium metal anodes that can repel LiPS through the functional decylphosphonate groups that are proved by in operando XPS with Ar ion sputtering. Moreover, the obtained artificial interphase layer keeps dendrite-free morphology and restrains side reactions during cycling effectively. In situ XRD measurements are employed to demonstrate the inhibiting effect for decomposition of organic electrolyte. The as-obtained LDP-Li anodes exhibit outstanding electrochemical performance with the specific capacity of similar to 1000 mAh g(-1) corresponding to Coulombic efficiency of nearly 99%, which shows great promise for the application of Li-S batteries.
机译:Li-S电池的应用尤其存在许多问题,特别是多硫化物溶解。新鲜的Li金属连续与多硫化物反应,加剧了有机电解质不规则的Li电镀/剥离行为和分解,导致短循环寿命和低库仑效率。自然为人类提供了很多灵感,实现了结构结构和功能集成,因为它对电池设计。在本报告中,从天然物种的疏水性学习,鳞片状多硫纤维人工间层构建在锂金属阳极上,该锂金属阳极通过功能性浮膦基团的锂金属阳极构成,其在具有Ar离子溅射的Ormerando XPS中被证明。此外,所获得的人造间相层保持无树突形态,有效地循环期间抑制副反应。原位XRD测量用于证明对有机电解质分解的抑制作用。 AS获得的LDP-Li阳极表现出出色的电化学性能,具体容量与1000mAhg(-1)相对应的基本效率近99%,这对Li-S电池的应用具有很大的承诺。

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