首页> 外文期刊>Advanced functional materials >Ionic-Liquid-Assisted Synthesis of N, F, and B Co-Doped CoFe_2O_(4?x) on Multiwalled Carbon Nanotubes with Enriched Oxygen Vacancies for Li–S Batteries
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Ionic-Liquid-Assisted Synthesis of N, F, and B Co-Doped CoFe_2O_(4?x) on Multiwalled Carbon Nanotubes with Enriched Oxygen Vacancies for Li–S Batteries

机译:离子-液体辅助合成富氧空位多壁碳纳米管上N、F和B共掺杂CoFe_2O_(4?x)用于Li-S电池

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摘要

The "shuttle effect," sluggish redox kinetics, and short life cycle have seriously restricted the practical application of Li-S batteries. Herein, N, F, and B co-doped NFBCoFe2O4-x on multiwalled carbon nanotubes' (MWCNTs) (NFBCoFe2O4-x@MWCNTs) composite material with enriched oxygen vacancies (OVs) introduced by ionic liquids (ILs) does not only exhibit enhanced polysulfides trapping ability but also effectively accelerate the redox kinetics of polysulfides. A commercial Celgard polypropylene (PP) 2400 separator with NFBCoFe2O4-x@MWCNTs coating layer is fabricated as a multifunctional barrier for Li-S batteries. As a result, the battery based on the NFBCoFe2O4-x@MWCNTs separator demonstrates a stable electrochemical performance. Even under a high S loading of 8.0 mg cm(-2), a desirable areal capacity of 4.62 mAh cm(-2) can still be maintained over 200 cycles at a current density of 0.2 C. The prospective strategy of engineering OVs introduced by ILs provides novel insights into the development of Li-S batteries.
机译:“穿梭效应”、氧化还原动力学迟钝、寿命周期短等严重制约了锂硫电池的实际应用。本文中,N、F和B共掺杂NFBCoFe2O4-x在离子液体(ILs)引入富氧空位(OV)的多壁碳纳米管(MWCNT)(NFBCoFe2O4-x@MWCNTs)复合材料上,不仅表现出增强的多硫化物捕获能力,而且有效地加速了多硫化物的氧化还原动力学。一种带有 NFBCoFe2O4-x@MWCNTs 涂层的商用 Celgard 聚丙烯 (PP) 2400 隔膜被制造为锂硫电池的多功能屏障。因此,基于NFBCoFe2O4-x@MWCNTs隔膜的电池表现出稳定的电化学性能。即使在 8.0 mg cm(-2) 的高 S 负载下,在 0.2 C 的电流密度下仍可保持 4.62 mAh cm(-2) 的理想面容量超过 200 次循环。IL提出的工程OV的前瞻性策略为Li-S电池的发展提供了新的见解。

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