首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Carbon-coated single-crystalline LiMn2O4 nanowires synthesized by high-temperature solid-state reaction with high capacity for Li-ion battery
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Carbon-coated single-crystalline LiMn2O4 nanowires synthesized by high-temperature solid-state reaction with high capacity for Li-ion battery

机译:碳涂覆的单晶LiMn2O4纳米线通过高温固态反应合成,具有高容量的Li离子电池

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摘要

It is a challenge to synthesize highly crystalline nanomorphologies under high-temperature environments. Here, we report that carbon-coated single-crystal LiMn2O4 nanowires were obtained via a high-temperature solid-state method under air environment using carbon-coated MnO2 as the precursor. Without the coated layer of carbon, the obtained LiMn2O4 is bulk. The carbon layer coating on MnO2 acts as a space-limiting layer to maintain the nanowire morphology of the final product of LiMn2O4 during the reaction. Owing to the merits of the highly crystalline, 1D nanowire morphology and the close-coated thin carbon layer, the produced LiMn2O4@C nanowires deliver large capacity and long-term cycling stability. In addition, the space-limiting role of the carbon layer was also found to function for LiMn2O4@C sphere. It is a general strategy to obtain ternary nanomaterials with high crystallinity. (C) 2018 Elsevier B.V. All rights reserved.
机译:在高温环境下合成高结晶纳米正态学是一种挑战。 在此,我们报告说,使用碳涂覆的MNO2作为前体,通过高温固态方法获得碳涂覆的单晶LiMn2O4纳米线。 没有涂层的碳层,所获得的LiMn2O4是体积的。 MnO2上的碳层涂层用作空间限制层,以在反应过程中保持LiMn2O4的最终产物的纳米线形态。 由于高晶体,1D纳米线形态和紧密涂层薄碳层的优点,所生产的LiMn2O4 @ C纳米线提供大容量和长期循环稳定性。 此外,还发现碳层的空间限制作用用于为Limn2O4 @ C球体起作用。 它是获得具有高结晶度的三元纳米材料的一般策略。 (c)2018年elestvier b.v.保留所有权利。

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