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Cryochemically Processed Li1+yMn1.95Ni0.025Co0.025O4 (y = 0 0.1) Cathode Materials for Li-Ion Batteries

机译:低温化学处理的Li1 + yMn1.95Ni0.025Co0.025O4(y = 00.1)锂离子电池正极材料

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摘要

A new route for the preparation of nickel and cobalt substituted spinel cathode materials (LiMn1.95Co0.025Ni0.025O4 and Li1.1Mn1.95Co0.025Ni0.025O4) by freeze-drying of acetate precursors followed by heat treatment was suggested in the present work. The experimental conditions for the preparation single-phase material with small particle size were optimized. Single-phase spinel was formed by low-temperature annealing at 700 °C. For discharge rate 0.2 C, the reversible capacities 109 and 112 mAh g−1 were obtained for LiMn1.95Co0.025Ni0.025O4 and Li1.1Mn1.95Co0.025Ni0.025O4, respectively. A good cycle performance and capacity retention about 90% after 30 cycles at discharge rate 0.2–4 C were observed for the materials cycled from 3 to 4.6 V vs. Li/Li+. Under the same conditions pure LiMn2O4 cathode materials represent a reversible capacity 94 mAh g−1 and a capacity retention about 80%. Two independent experimental techniques (cyclic voltammetry at different scan rates and electrochemical impedance spectroscopy) were used in order to investigate the diffusion kinetics of lithium. This study shows that the partial substitution of Mn in LiMn2O4 with small amounts of Ni and Co allows the cyclability and the performance of LiMn2O4-based cathode materials to be improved.
机译:本工作提出了一种通过醋酸盐前体的冷冻干燥然后热处理的方法来制备镍和钴取代的尖晶石正极材料(LiMn1.95Co0.025Ni0.025O4和Li1.1Mn1.95Co0.025Ni0.025O4)的新途径。 。优化了制备小粒径单相材料的实验条件。单相尖晶石是通过在700°C下进行低温退火而形成的。对于0.2 C的放电速率,LiMn1.95Co0.025Ni0.025O4和Li1.1Mn1.95Co0.025Ni 0.025 O的可逆容量分别为109和112 mAh g -1 4 。相对于Li / Li + 从3到4.6 V循环的材料,在放电速率为0.2–4 C的条件下进行30次循环后,观察到良好的循环性能和容量保持率约为90%。在相同条件下,纯LiMn 2 O 4 正极材料的可逆容量为94 mAh g -1 ,容量保持率约为80%。为了研究锂的扩散动力学,使用了两种独立的实验技术(不同扫描速率下的循环伏安法和电化学阻抗谱)。这项研究表明,LiMn 2 O 4 中的Mn被少量的Ni和Co取代可以使LiMn 2 O 4 基正极材料有待改进。

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