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首页> 外文期刊>CERAMICS INTERNATIONAL >From hydrated layered-spinel lithium manganate composite to high-performance spinel LiMn2O4: A novel synthesis tuned by the concentration of LiOH
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From hydrated layered-spinel lithium manganate composite to high-performance spinel LiMn2O4: A novel synthesis tuned by the concentration of LiOH

机译:从水合层状尖晶石锰酸锂复合材料到高性能尖晶石LiMn2O4:通过LiOH浓度调整的新型合成

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摘要

To obtain high-performance spinel LiMn2O4, various types of hydrated layered-spinel lithium manganate composites have been controllably synthesized through the hydrothermal process. It is found that the composition and morphology of these intermediate products can be tuned by the concentration of LiOH: Li+ act as the template and OH- provide the required alkaline environment. In particular, the nanostructure varies from nanowires to nanosheets at different levels, depending on the phase ratio of the spinel phase ranging from 0% to 100%. Phase purity and the corresponding electrochemical properties of the as-prepared LiMn2O4 products are further tailored through the subsequent heat treatment. With the optimized LiOH concentration of 0.08 M, the resulting LiMn2O4 cathode material exhibits the best electrochemical performance with the initial discharge capacity of 121.7 mA h g(-1) at 1 C and 117.8 mA h g(-1) at 30 C, while a retention over 90% can be achieved after 1500 cycles. This study will help deepen understanding of the function mechanisms and further direct the novel synthesis from hydrated layered-spinel lithium manganate composites to high-performance spinel LiMn2O4 cathode materials.
机译:为了获得高性能尖晶石LIMN2O4,通过水热法可控制各种类型的水合层状尖晶石锰复合材料。结果发现,这些中间产物的组成和形态可以通过LiOH的浓度调节:Li +作为模板和OH-提供所需的碱性环境。特别地,纳米结构从纳米线变化到不同水平的纳米晶片,这取决于尖晶石相的相比为0%至100%。通过随后的热处理进一步定制了相纯度和相应的MAM2O4产物的电化学性质。通过优化的LiOH浓度为0.08μm,所得到的LiMn2O4阴极材料在30c和117.8 mA Hg(-1)时具有121.7 mA Hg(-1)的初始放电容量的最佳电化学性能,而保持在1500次循环后,可以实现超过90%。该研究将有助于加深对功能机制的理解,并进一步将新的合成从水合层状尖晶石锰复合材料中的高性能尖晶石LiMn2O4阴极材料中的一种。

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