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首页> 外文期刊>International journal of green energy >Optimizing Li2O-2B2O3 coating layer on LiNi0.8Co0.1Mn0.1O2 (NCM811) cathode material for high-performance lithium-ion batteries
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Optimizing Li2O-2B2O3 coating layer on LiNi0.8Co0.1Mn0.1O2 (NCM811) cathode material for high-performance lithium-ion batteries

机译:优化LINI0.8CO0.1MN0.1O2(NCM811)正极材料的LI2O-2B2O3涂层,用于高性能锂离子电池

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摘要

In this paper, a wet chemical method is used to coat LiNi0.8Co0.1Mn0.1O2 (NCM811) cathode material by Li2O-2B(2)O(3) (LBO) layer for Lithium-ion batteries (LIBs). For performance optimization, the effects of different contents (thicknesses) of LBO coating layers on NCM811 particle surface on the morphologies, structures, compositions, and electrochemical properties of the corresponding LIBs are studied using XRD, SEM, TEM, and electrochemical measurements. Coin LIBs are assembled with such coated NCM811 cathode materials for performance validation. Results show that LBO coating layer does not change the original lattice structure of the bulk material, it can only adhere to the surface of the bulk material. After coating, NCM811 shows a good crystallinity and the ordered layered structure. TEM images show that the thickness of LBO coating is increased with increasing LBO content, and that the appropriate LBO coating thickness and uniform coating state are conducive to the improvement of the electrochemical properties of NCM811 cathode materials. Particularly, NCM811 with LBO coating content of 1000 ppm shows the best performance compared to other coating contents. In this case, the coating thickness is relatively uniform, which is about 40 & xff5e;100 nm, giving a good first charge-discharge capacity of 214.1mAh/g, and a high Coulomb efficiency of 90.06%. After 50 cycles, the capacity retention rate of LIBs still keeps as high as 99.64%. Therefore, LBO coating can improve the performance of NCM811 and then the lithium-ion batteries.
机译:在本文中,通过Li 2 O-2b(2)O(3)(Lbo)层用于锂离子电池(Libs)的Li 2 O-2B(2)O(3)层涂覆LiNi0.8CoO 10.1Mn0.1O2(NCM811)阴极材料。对于性能优化,使用XRD,SEM,TEM和电化学测量研究了LBO 2111颗粒表面对NCM811颗粒表面的不同内容物(厚度)对应于相应LIB的形态学,结构,组合物和电化学性质。硬币LIBS与这种涂层的NCM811阴极材料组装,用于性能验证。结果表明,LBO涂层不会改变散装材料的原始格子结构,它只能粘附到散装材料的表面上。在涂覆后,NCM811显示出良好的结晶度和有序层状结构。 TEM图像表明,随着LBO含量的增加,LBO涂层的厚度增加,并且适当的LBO涂层厚度和均匀的涂层状态有利于改善NCM811阴极材料的电化学性质。特别是,具有1000ppm的LBO涂层含量的NCM811显示出与其他涂层内容物相比的最佳性能。在这种情况下,涂层厚度是相对均匀的,其约为40&xFF5e; 100nm,提供214.1mAh / g的良好的第一充放电容量,高90.06%的高库仑效率。 50次循环后,LIBS的容量保留率仍然保持高达99.64%。因此,LBO涂层可以提高NCM811的性能,然后改善锂离子电池。

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  • 来源
    《International journal of green energy》 |2020年第10期|447-455|共9页
  • 作者单位

    Shanghai Univ Coll Sci Dept Phys Shanghai Peoples R China|Shanghai Univ Inst Sustainable Energy Coll Sci Shanghai Peoples R China;

    Shanghai Univ Inst Sustainable Energy Coll Sci Shanghai Peoples R China;

    Shanghai Univ Inst Sustainable Energy Coll Sci Shanghai Peoples R China;

    Shanghai Univ Coll Sci Dept Phys Shanghai Peoples R China|Shanghai Univ Inst Sustainable Energy Coll Sci Shanghai Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Coating; LBO; LI2O-2B(2)O(3); lithium-ion battery; NCM811;

    机译:涂层;LBO;LI2O-2B(2)(3);锂离子;

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