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Off-stoichiometric Na3?3xV2+x(PO4)3/C nanocomposites as cathode materials for high-performance sodium-ion batteries prepared by high-energy ball milling

机译:非化学计量比的Na3?3xV2 + x(PO4)3 / C纳米复合材料,用作通过高能球磨制备的高性能钠离子电池的阴极材料

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Na _(3) V _(2) (PO _(4) ) _(3) (NVP) is regarded as a promising cathode material for sustainable energy storage applications. Here we present an efficient method to synthesize off-stoichiometric Na _(3?3 x ) V _(2+ x ) (PO _(4) ) _(3) /C ( x = 0–0.10) nanocomposites with excellent high-rate and long-life performance for sodium-ion batteries by high-energy ball milling. It is found that Na _(3?3 x ) V _(2+ x ) (PO _(4) ) _(3) /C nanocomposites with x = 0.05 (NVP-0.05) exhibit the most excellent performance. When cycled at a rate of 1C in the range of 2.3–3.9 V, the initial discharge capacity of NVP-0.05 is 112.4 mA h g ~(?1) , which is about 96% of its theoretical value (117.6 mA h g ~(?1) ). Even at 20C, it still delivers a discharge capacity of 92.3 mA h g ~(?1) (79% of the theoretical capacity). The specific capacity of NVP-0.05 is as high as 100.7 mA h g ~(?1) after 500 cycles at 5C, which maintains 95% of its initial value (106 mA h g ~(?1) ). The significantly improved electrochemical performance of NVP-0.05 is attributed to the decrease of internal resistance and increase of the Na ~(+) ion diffusion coefficient.
机译:Na_(3)V _(2)(PO _(4))_(3)(NVP)被认为是可持续储能应用中有希望的阴极材料。在这里,我们提出了一种有效的方法来合成化学计量比高的Na_(3?3 x)V _(2+ x)(PO _(4))_(3)/ C(x = 0–0.10)纳米复合材料高能球磨实现钠离子电池的高倍率和长寿命性能。发现x = 0.05(NVP-0.05)的Na _(3?3 x)V _(2 + x)(PO _(4))_(3)/ C纳米复合材料表现出最优异的性能。当以2.3伏至2.3伏的1C速率循环时,NVP-0.05的初始放电容量为112.4 mA hg〜(?1),约为其理论值(117.6 mA hg〜(?)的96%。 1))。即使在20°C时,它的放电容量仍为92.3 mA h g〜(?1)(理论容量的79%)。 NVP-0.05的比容量在5C下经过500个循环后高达100.7 mA h g〜(?1),保持其初始值(106 mA h g〜(?1))的95%。 NVP-0.05电化学性能的显着改善归因于内阻的降低和Na〜(+)离子扩散系数的增加。

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