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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >A conductive polymer derived N-doped carbon nanofiber supported Li2S coating layer for Li-S batteries with high mass loading
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A conductive polymer derived N-doped carbon nanofiber supported Li2S coating layer for Li-S batteries with high mass loading

机译:导电聚合物衍生的N-掺杂碳纳米纤维的Li2S涂层负载高批量负载

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The commercialization of Li2S as a potential candidate for lithium-sulfur cathode material is hampered due to its low electronic conductivity, the "shuttle effect" and the initial energy barrier. In this work, nanosized Li2S particles coated carbon nanofibers are prepared via a solution-based chemical method. Benefiting from this synthetic method, a uniform Li2S layer can be obtained without any agglomeration. Due to the small size of Li2S particles, a smaller energy barrier is observed in the first charging process, which means it is easier to activate the Li2S with a smaller cut-off voltage. In addition, the carbon nanofibers as matrixes could enhance the conductivity of cathode. Moreover, to verify the potential practical application of prepared materials, Li2S cathodes with high loading amount of active materials (similar to 3 mg cm(-2)) are prepared, which show excellent cycling and rate performance, delivering an initial specific capacity of 916.2 mA h g(-1) at 0.1C, and 321 mA h g(-1) capacity still can be reached at 2 C. This good performance can be attributed to the unique solution-based synthesis method, resulting in small and uniform Li2S particles coated on carbon nanofibers. (C) 2020 Elsevier B.V. All rights reserved.
机译:由于其低电子电导率,“梭效应”和初始能量屏障,Li2S作为锂 - 硫阴极材料潜在候选者的商业化被阻碍。在这项工作中,纳米化Li2S颗粒涂覆的碳纳米纤维通过基于溶液的化学方法制备。从该合成方法受益,可以在没有任何附聚的情况下获得均匀的Li 2 S层。由于Li 2 S颗粒的尺寸小,在第一充电过程中观察到较小的能量屏障,这意味着更容易以较小的截止电压激活LI2。此外,作为基质的碳纳米纤维可以增强阴极的导电性。此外,为了验证制备材料的潜在实际应用,制备具有高负载量的活性材料(类似于3mgCM(-2))的Li2S阴极,其显示出优异的循环和速率性能,提供916.2的初始特定容量。 Ma Hg(-1)在0.1℃下,321 mA Hg(-1)容量仍然可以在2℃达到。这种良好的性能可以归因于独特的基于溶液的合成方法,导致涂有小且均匀的Li2S颗粒在碳纳米纤维上。 (c)2020 Elsevier B.v.保留所有权利。

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