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Cationic covalent-organic framework for sulfur storage with high-performance in lithium-sulfur batteries

机译:锂硫含量高性能的阳离子共价框架,硫磺储存

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Covalent organic frameworks (COFs) with pre-designed structure and customized properties have been employed as sulfur storage materials for lithium-sulfur (Li-S) batteries. In this work, a cationic mesoporous COF (COF-NI) was synthesized by grafting a quaternary ammonium salt group onto the pore channel of COFs via a one-pot three components tandem reaction strategy. The post-functionalized COFs were utilized as the matrix framework to successfully construct the Li-S battery with high-speed capacity and long-term stability. The experimental results showed that, after loading active material sulfur, cationic COF-NI effectively suppressed the shuttle effect of the intermediate lithium polysulfide species in Li-S batteries, and exhibited better cycle stability than the as-obtained neutral COF (COF-Bu). For example, compared with COF-Bu based sulfur cathode (521 mA h g(-1)), the cationic COF-NI based sulfur cathode maintained a discharge capacity of 758 mA h g(-1) after 100 cycles. These results clearly showed that appropriate pore environment of COFs can be prepared by rational design, which can reduce the shuttle effect of lithium polysulfide species and improve the performance of Li-S battery. (C) 2021 Elsevier Inc. All rights reserved.
机译:具有预先设计的结构和定制的性能的共价有机框架(COF)已被用作锂硫(Li-S)电池的硫存储材料。本工作通过一锅三组分串联反应将季铵盐基团接枝到COFs的孔道上,合成了阳离子介孔COF(COF-NI)。利用后功能化CoF作为矩阵框架,成功构建了具有高速容量和长期稳定性的锂硫电池。实验结果表明,在负载活性材料硫后,阳离子COF-NI有效地抑制了Li-S电池中中间锂多硫化物物种的穿梭效应,并表现出比中性COF(COF-Bu)更好的循环稳定性。例如,与COF-Bu基硫阴极(521 mA h g(-1))相比,阳离子COF-NI基硫阴极在100次循环后保持758 mA h g(-1)的放电容量。这些结果清楚地表明,通过合理的设计,可以制备出合适的COFs孔环境,从而降低多硫化锂物种的穿梭效应,提高锂硫电池的性能。(c)2021爱思唯尔公司保留所有权利。

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