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首页> 外文期刊>Energy & fuels >One-Step Fabrication of Fluorine-Doped Graphite Derived from a Low-Grade Microcrystalline Graphite Ore for Potassium-Ion Batteries
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One-Step Fabrication of Fluorine-Doped Graphite Derived from a Low-Grade Microcrystalline Graphite Ore for Potassium-Ion Batteries

机译:氟掺杂石墨的一步制造衍生自低级微晶石墨矿石的钾离子电池

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摘要

Graphite has been considered as a promising anode material of potassium-ion batteries (KIBs), the practical applications of which are impeded because of the unsatisfactory cycling stability and poor rate capability. In this study, the favorable effect of fluorine-doping on the K-storage performance of graphite is demonstrated. For a more practical application, a low-grade microcrystalline graphite (MG) ore is chosen as the raw material and is purified through a facile hydrofluoric acid solution immersion method. The results indicate that the mild purification process not only results in a high purity of 98.59 wt % for MG but also realizes the effective F-corporation in the graphite host. The fluorine content of 1.02% with a high semi-ionic bond constituent (70.53%) enlarges the graphite interlayer distance from 3.356 to 3.461 angstrom, which contributes to an alleviated volume change and faster K-ion diffusion kinetics. Benefiting from the F-doping-induced structural improvement, the modified MG electrode exhibits a prominently elevated reversible capacity (320 mA h g(-1)), a superior cycling ability with a high capacity retention of 74.6% after 100 cycles, and an enhanced rate performance. This study manifests that F-doping is a feasible route to resolve the obstacles of graphite materials and paves the way for commercial KIBs with high performance.
机译:石墨已被认为是钾离子电池(KIBs)的有希望的阳极材料,其实际应用是由于循环稳定性不令人满意的速度和差的速率能力而受阻。在这项研究中,证明了氟掺杂对石墨k储存性能的有利影响。对于更实际的应用,选择低级微晶石墨(Mg)矿石作为原料,通过容易氢氟酸溶液浸渍法纯化。结果表明,温和的净化过程不仅导致MG的高纯度为98.59wt%,而且还实现了石墨宿主中的有效F公司。氟含量为1.02%,具有高半离子键组分(70.53%)扩大了从3.356到3.461埃的石墨中间层距离,这有助于缓解体积变化和更快的k离子扩散动力学。受益于F掺杂诱导的结构改进,改性的Mg电极表现出突出的可逆容量(320mA Hg(-1)),高容量保持在100次循环后的高容量保持能力,增强速率性能。本研究表明,F掺杂是解决石墨材料障碍物的可行途径,并为具有高性能的商业KIB铺平道路。

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  • 来源
    《Energy & fuels》 |2020年第7期|8993-9001|共9页
  • 作者单位

    Shanxi Univ Inst Mol Sci Key Lab Mat Energy Convers & Storage Shanxi Prov Taiyuan 030006 Peoples R China;

    Shanxi Univ Inst Mol Sci Key Lab Mat Energy Convers & Storage Shanxi Prov Taiyuan 030006 Peoples R China;

    Shanxi Univ Inst Mol Sci Key Lab Mat Energy Convers & Storage Shanxi Prov Taiyuan 030006 Peoples R China;

    Shanxi Univ Inst Mol Sci Key Lab Mat Energy Convers & Storage Shanxi Prov Taiyuan 030006 Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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