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Structural and Electrochemical Analyses on the Transformationof CaFe2O4-Type LiMn2O4 from Spinel-Type LiMn2O4

机译:转变的结构和电化学分析尖晶石型LiMn2O4制备CaFe2O4型LiMn2O4

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摘要

Lithium manganese oxides have received much attention as positive electrode materials for lithium-ion batteries. In this study, a post-spinel material, CaFe2O4-type LiMn2O4 (CF-LMO), was synthesized at high pressures above 6 GPa, and its crystal structure and electrochemical properties were examined. CF-LMO exhibits a one-dimensional (1D) conduction pathway for Li ions, which is predicted to be superior to the three-dimensional conduction pathway for these ions. The stoichiometric LiMn2O4 spinel (SP-LMO) was decomposed into three phases of Li2MnO3, MnO2, and Mn2O3 at 600 °C and then started to transform into the CF-LMO structure above 800 °C. The rechargeable capacity (Qrecha) of the sample synthesized at 1000 °C was limited to ∼40 mA h·g–1 in the voltage range between 1.5 and 5.3 V because of the presence of a small amount of Li2MnO3 phase in the sample (=9.1 wt %). In addition, the Li-rich spinels, Li[LixMn2–x]O4 with x = 0.1, 0.2, and 0.333, were also employed for the synthesis of CF-LMO. The sample prepared from x = 0.2 exhibited a Qrecha value exceeding 120 mA h·g–1 with a stable cycling performance, despite the presence of large amounts of the phases Li2MnO3, MnO2, and Mn2O3. Details of the structural transformation from SP-LMO to CF-LMO and the effect of Mn ions on the 1D conduction pathway are discussed.
机译:锂锰氧化物作为锂离子电池的正极材料备受关注。在这项研究中,在高于6 GPa的高压下合成了尖晶石后材料CaFe2O4型LiMn2O4(CF-LMO),并检查了其晶体结构和电化学性能。 CF-LMO对锂离子表现出一维(1D)传导途径,据预测,其优于这些离子的三维传导途径。化学计量的LiMn2O4尖晶石(SP-LMO)在600°C分解为Li2MnO3,MnO2和Mn2O3的三个相,然后在800°C以上开始转变为CF-LMO结构。在1000°C下合成的样品的可充电容量(Qrecha)在1.5至5.3 V的电压范围内被限制为〜40 mA h·g -1 ,因为其中存在少量的样品中的Li2MnO3相(= 9.1 wt%)。此外,富锂尖晶石x [0.1、0.2和0.333的Li [LixMn2-x] O 4 也用于合成CF-LMO。尽管存在大量的Li相,但从x = 0.2制备的样品仍表现出超过120 mA h·g –1 的Q recha 值,并具有稳定的循环性能。 2 MnO 3 ,MnO 2 和Mn 2 O 3 。讨论了从SP-LMO到CF-LMO的结构转变以及Mn离子对一维传导途径的影响的细节。

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