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首页> 外文期刊>Electrochimica Acta >The effect of Fe as an impurity element for sustainable resynthesis of Li[Ni1/3Co1/3Mn1/3]O-2 cathode material from spent lithium-ion batteries
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The effect of Fe as an impurity element for sustainable resynthesis of Li[Ni1/3Co1/3Mn1/3]O-2 cathode material from spent lithium-ion batteries

机译:Fe作为杂质元素的杂质元素,用于来自废锂离子电池的Li [Ni1 / 3Co1 / 3Mn1 / 3] O-2阴极材料的可持续重新合成

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We synthesize Li[Ni1/3Co1/3Mn1/3]O-2 (NCM) and Li[Ni1/3Co1/3Mn1/3]FexO2 (NCMF) cathode active materials with various amounts of Fe via hydroxide coprecipitation and calcination processes, which simulate the resynthesis of NCM in leach liquor containing Fe from spent lithium-ion batteries (LIBs). The crystal structure and electrochemical performances of the synthesized NCMF (i.e., NCMF (0.05%), NCMF (0.25%) and NCMF (1.0%)), are investigated and compared with NCM. The structural perfection of NCMF gradually deteriorates with increasing the amount of Fe because of undesirable cation mixing between Ni2+/Fe3+ and Li+ sites. In LIB performances, NCMF (0.05%) and NCMF (0.25%) present relatively reduced overpotential leading to superior rate performance at high C-rates to NCM with NCMF (1.0%) having the poorest. In terms of cycling stability, however, capacity retention improves as the Fe content in NCMF increases. The thermal stability of NCM and NCMF is also measured by differential scanning calorimetry, and the post-mortem analysis of X-ray photoelectron spectroscopy reveals that the ratio of Mn3+ becomes lower after cycling tests as the amount of Fe in NCMF increases. Moreover, the additional postmortem analysis of energy dispersive spectroscopy on graphite surface after full cell cycling tests further confirms the positive effect of Fe on the improved capacity retention performance of NCMF. Therefore, even if Fe is regarded as an impurity component in the LIB recycling process, a small amount of Fe in the resynthesized NCM cathode material could favor high power and high cycling stability. (C) 2018 Elsevier Ltd. All rights reserved.
机译:通过氢氧化物共沉淀和煅烧工艺合成Li [Ni1 / 3Co1 / 3Mn1 / 3] O-2(NCM)和Li [Ni1 / 3CO1 / 3Mn1 / 3] FexO2(Ni1 / 3Co1 / 3Mn1 / 3] FexO2(NCMF)阴极活性材料,其模拟含有锂离子电池(LIBS)含有Fe的浸出液中NCM的再合成。研究合成NCMF的晶体结构和电化学性能(即,NCMF(0.05%),NCMF(0.25%)和NCMF(1.0%)),并与NCM进行比较。由于Ni2 + / Fe3 +和Li +位点之间的不希望的阳离子混合,NCMF的结构完美随着FE的增加而逐渐恶化。在LIB性能中,NCMF(0.05%)和NCMF(0.25%)存在相对降低的过电位,导致高C率的优越速率性能与具有最贫困最贫困最低的NCMF(1.0%)的NCM。然而,就循环稳定性而言,随着NCMF中的Fe含量增加,容量保持可提高。 NCM和NCMF的热稳定性也通过差示扫描量热法测量,X射线光电子能谱的后验证分析显示,随着NCMF中的Fe的循环试验,Mn3 +的比例变低。此外,全细胞循环试验后,石墨表面能量分散光谱的额外后期分析进一步证实了Fe对NCMF改善容量保留性能的积极作用。因此,即使Fe被认为是Lib回收过程中的杂质组分,也可以在重新合成的NCM阴极材料中进行少量Fe可以利用高功率和高循环稳定性。 (c)2018年elestvier有限公司保留所有权利。

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