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Improved electrochemical performance of LiMn2O4 cathode material by Ce doping

机译:通过Ce掺杂改善Limn2O4阴极材料的电化学性能

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Lithium manganese oxide nanopowders doped with Ce ions are synthesized using modified sol-gel method and the effect of annealing atmosphere (air vs. nitrogen) on the structure, morphology, and phase composition is studied thoroughly. Electrochemical testing is conducted to evaluate the effect of annealing atmosphere on electrochemical performance. The X-ray diffraction indicates the cubic spinel structure for all the obtained samples. The lattice parameter is observed to slightly decrease with increasing concentration of Ce3+ ions substituting Mn3+ ions from 8.230 to 8.228 angstrom and from 8.227 to 8.224 angstrom for air annealing and for nitrogen-air annealing, respectively. A limited solubility of cerium in LiMn2O4 is also observed, as small amounts of cerium dioxide is detected on the surface of LiMn2-xCexO4 grains and confirmed by XPS analysis of cerium which shows only the spectrum of Ce4+ ions. Electrochemical testing is conducted to evaluate the effect of annealing atmosphere on electrochemical performance. It is shown that annealing in nitrogen and then in air results in excellent capacity retention with minimal, 4-8% capacity loss after 150 cycles. LiMn1.99Ce0.01O4 samples prepared that way display better high rate performance in comparison with pristine LiMn2O4. (C) 2018 Elsevier Ltd. All rights reserved.
机译:使用改性溶胶 - 凝胶法合成掺杂有Ce离子的锂锰氧化物纳米粉末,并彻底研究了对结构,形貌和相组合物的退火气氛(空气与氮气)的影响。进行电化学检测以评估退火气氛对电化学性能的影响。 X射线衍射指示所有获得的样品的立方尖晶石结构。观察到晶格参数随着CE3 +离子的浓度增加,从8.230至8.228埃浓度增加和8.227至8.224埃分别用于空气退火和氮气退火的CE3 +离子的浓度略有降低。还观察到铈在LiMn2O4中的有限溶解度,因为在LiMn2-XcexO4晶粒表面上检测到少量二氧化铈,并通过XPS分析证实,仅显示Ce4 +离子的光谱。进行电化学检测以评估退火气氛对电化学性能的影响。结果表明,在空气中退火,在空气中导致优异的容量保留,在150次循环后的最小容量损失,4-8%的容量损失。 LiMn1.99CE0.01O4样品的制备方法与原始LIMN2O4相比,显示出更好的高速率性能。 (c)2018年elestvier有限公司保留所有权利。

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