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Hydrothermal synthesis of high specific capacity Al/Na co-doped V6O13 cathode material for lithium-ion battery

机译:用于锂离子电池的高比容量Al / Na共掺杂V6O13阴极材料的水热合成

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摘要

3D flower-like Al-doped V6O13 and Al/Na co-doped V6O13 have been fabricated via a facile hydrothermal method using C(2)H(2)O(4 center dot)2H(2)O, V2O5, Al(NO3)(3)center dot 9H(2)O, and NaNO3 as raw materials. The microstructure of the samples was characterized by XRD, EDS, XPS, FESEM, and TEM. The results indicated that Al and Na ions co-doping improved the electrochemical performance of V6O13, including the specific discharge capacity and cycling stability. When the doped mole ratio of Al to V and Na to V were 0.033 and 0.020, respectively, the sample exhibited the best electrochemical performance with initial discharge specific capacity of 514 mAh/g. After 80 cycles, the capacity retention was 70.3%. The enhanced electrochemical performance originates from its superior structural reversibility, enhanced lithium diffusion coefficient and improved electrical conductivity.
机译:3D花样的Al掺杂V6O13和Al / Na共掺杂V6O13通过使用C(2)H(2)O(4中心点)2H(2)O,V2O5,Al(NO3 )(3)中心点9h(2)o和Nano3作为原料。 样品的微观结构的特征在于XRD,EDS,XPS,FESEM和TEM。 结果表明,Al和Na离子共掺杂改善了V6O13的电化学性能,包括具体的放电能力和循环稳定性。 当Al至V和Na至V的掺杂摩尔比分别为0.033和0.020时,样品表现出最佳的电化学性能,初始放电比容量为514mAh / g。 80次循环后,容量保留为70.3%。 增强的电化学性能起源于其优异的结构性可逆性,增强的锂扩散系数和改善的电导率。

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