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首页> 外文期刊>Materials Chemistry Frontiers >Electrochemical elucidation of Co0.5M0.5V2O4 (M = Fe or Zn) nanocomposite anode materials for Li-ion storage
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Electrochemical elucidation of Co0.5M0.5V2O4 (M = Fe or Zn) nanocomposite anode materials for Li-ion storage

机译:电化学的说明Co0.5M0.5V2O4 (M =铁和锌)纳米复合阳极材料锂离子存储

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摘要

This work proposes spinel Co0.5M0.5V2O4 (M = Fe or Zn) nanocomposites as novel anode materials for Li-ion storage. Their electronic properties are predicted through theoretical analysis. The equal ratio of binary metal mixed V–O matrix spinel compounds actively improved the cyclic and rate capacities. The Co0.5Zn0.5V2O4 (CZVO) composite exhibits higher cyclic and rate capacities than the bare CoV2O4 (CVO) and Co0.5Fe0.5V2O4 (CFVO) samples. The CZVO sample demonstrates a higher reversible discharge capacity of 434 mA h g1 over 100 cycles at a current density of 200 mA g1 . However, it has showed a higher rate capacity (129 mA h g1 at 5 A g1 ) than the other prepared samples (40 mA h g1 for bare CVO and 99 mA h g1 for CFVO at 5 A g1 ). The CZVO sample delivers superior electrochemical perfor- mance due to the conductivity improvements and a high order of the Co2+/Co3+ oxidation ratio. Thus, this report offers potential anode materials as an approach to improve binary metal mixed oxides for high-performance lithium storage applications in future.
机译:这项工作提出了尖晶石Co0.5M0.5V2O4 (M =铁或锌)纳米复合材料作为新型阳极材料锂离子存储。通过理论分析预测。比二元金属混合尖晶石V-O矩阵化合物积极改善循环和速率的能力。展品的循环和速度能力高于the CoV2O4 (CVO)和棺材。2010 5Fe0 5V2O4 (CFVO)样本。可逆放电容量434毫安h g1100次200毫安的电流密度g1。然而,它显示了更高的额定容量马(129 h g1在5 g1)比其他准备样品(40 mA h g1裸CVO马和99 h g15为CFVO g1)。优越的电化学perfor -曼斯由于电导率和高阶的改进二氧化碳+ /二氧化碳+氧化率。提供潜在的阳极材料的方法改善二元金属氧化物混合高性能锂存储应用程序的未来。

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