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Enhanced Cycling Stability through Erbium Doping of LiMn2O4 Cathode Material Synthesized by Sol-Gel Technique

机译:通过溶胶-凝胶技术合成的LiMn2O4正极材料的Er掺杂增强了循环稳定性

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摘要

In this work, LiMn2−xErxO4 (x ≤ 0.05) samples were obtained by sol-gel processing with erbium nitrate as the erbium source. XRD measurements showed that the Er-doping had no substantial impact on the crystalline structure of the sample. The optimal LiMn1.97Er0.03O4 sample exhibited an intrinsic spinel structure and a narrow particle size distribution. The introduction of Er3+ ions reduced the content of Mn3+ ions, which seemed to efficiently suppress the Jahn–Teller distortion. Moreover, the decreased lattice parameters suggested that a more stable spinel structure was obtained, because the Er3+ ions in a ErO6 octahedra have stronger bonding energy (615 kJ/mol) than that of the Mn3+ ions in a MnO6 octahedra (402 kJ/mol). The present results suggest that the excellent cycling life of the optimal LiMn1.97Er0.03O4 sample is because of the inhibition of the Jahn-Teller distortion and the improvement of the structural stability. When cycled at 0.5 C, the optimal LiMn1.97Er0.03O4 sample exhibited a high initial capacity of 130.2 mAh g−1 with an excellent retention of 95.2% after 100 cycles. More significantly, this sample showed 83.1 mAh g−1 at 10 C, while the undoped sample showed a much lower capacity. Additionally, when cycled at 55 °C, a satisfactory retention of 91.4% could be achieved at 0.5 C after 100 cycles with a first reversible capacity of 130.1 mAh g−1.
机译:在这项工作中,LiMn2-xErxO4(x≤0.05)样品是通过以硝酸为as源的溶胶-凝胶工艺获得的。 XRD测量表明,Er掺杂对样品的晶体结构没有实质性影响。最佳的LiMn1.97Er0.03O4样品表现出固有的尖晶石结构和窄的粒度分布。 Er 3 + 离子的引入降低了Mn 3 + 离子的含量,这似乎可以有效地抑制Jahn–Teller畸变。而且,降低的晶格参数表明获得了更稳定的尖晶石结构,这是因为ErO6八面体中的Er 3 + 离子比Mn 具有更强的键合能(615 kJ / mol)。 MnO6八面体(402 kJ / mol)中的> 3 + 离子。目前的结果表明,最佳的LiMn1.97Er0.03O4样品具有出色的循环寿命,这是由于抑制了Jahn-Teller形变并提高了结构稳定性。当在0.5 C下循环时,最佳的LiMn1.97Er0.03O4样品显示出130.2 mAh g -1 的高初始容量,在100次循环后保留率高达95.2%。更重要的是,该样品在10 C下显示83.1 mAh g -1 ,而未掺杂样品显示的容量低得多。另外,在55°C循环时,经过100次循环后,在0.5 C时可实现91.4%的令人满意的保留,其第一可逆容量为130.1 mAh g -1

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