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Facile One-Step Dynamic Hydrothermal Synthesis of Spinel LiMn2O4/Carbon Nanotubes Composite as Cathode Material for Lithium-Ion Batteries

机译:锂离子电池正极材料尖晶石LiMn2O4 /碳纳米管的快速一步动态水热合成

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摘要

Nano-sized spinel LiMn O /carbon nanotubes (LMO/CNTs) composite is facilely synthesized via a one-step dynamic hydrothermal approach. The characterizations and electrochemical measurements reveal that LiMn O particles with narrow size distribution are well dispersed with CNTs in the composite. The LMO/CNTs nanocomposite with 5 wt % CNTs displays a high specific discharge capacity of 114 mAh g at 1C rate, and the retention rate after 180 cycles at room temperature reaches 94.5% in the potential window of 3.3 to 4.3 V vs. Li/Li . Furthermore, the electrochemical performance of the composite with 5 wt % CNTs at elevated temperature (55 °C) is also impressive, 90% discharging capacity could be maintained after 100 cycles at 1C. Such excellent electrochemical performance of the final product is attributed to the content of CNTs added in the hydrothermal process and small particle size inherited from pretreated MnO precursor.
机译:纳米尖晶石LiMn O /碳纳米管(LMO / CNTs)复合材料是通过一步动态水热方法轻松合成的。表征和电化学测量表明,具有窄尺寸分布的LiMn O颗粒与CNT很好地分散在复合材料中。具有5 wt%CNT的LMO / CNTs纳米复合材料在1C速率下显示出114 mAh g的高比放电容量,室温下180次循环后在3.3至4.3 V vs.Li/的电位窗口中的保留率达到94.5%。李。此外,具有5 wt%CNT的复合材料在升高的温度(55°C)下的电化学性能也令人印象深刻,在1C循环100次后可以保持90%的放电容量。最终产品的这种出色的电化学性能归因于在水热工艺中添加的CNT的含量以及从预处理的MnO前体继承的小粒径。

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