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Alkaline earth metal vanadates as sodium-ion battery anodes

机译:碱土金属钒酸盐作为钠离子电池阳极

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摘要

The abundance of sodium resources indicates the potential of sodium-ion batteries as emerging energy storage devices. However, the practical application of sodium-ion batteries is hindered by the limited electrochemical performance of electrode materials, especially at the anode side. Here, we identify alkaline earth metal vanadates as promising anodes for sodium-ion batteries. The prepared calcium vanadate nanowires possess intrinsically high electronic conductivity (> 100 S cm−1), small volume change (< 10%), and a self-preserving effect, which results in a superior cycling and rate performance and an applicable reversible capacity (> 300 mAh g−1), with an average voltage of ∼1.0 V. The specific sodium-storage mechanism, beyond the conventional intercalation or conversion reaction, is demonstrated through in situ and ex situ characterizations and theoretical calculations. This work explores alkaline earth metal vanadates for sodium-ion battery anodes and may open a direction for energy storage.
机译:钠资源丰富表明钠离子电池作为新兴的能量存储设备的潜力。但是,钠离子电池的实际应用受到电极材料有限的电化学性能的限制,特别是在阳极侧。在这里,我们确定碱土金属钒酸盐是钠离子电池有希望的阳极。制备的钒酸钙纳米线具有固有的高电子电导率(> 100 S cm -1 ),体积变化小(<10%)和自保存效果,从而具有优异的循环和速率性能和适用的可逆容量(> 300 mAh g -1 ),平均电压约为1.0V。通过常规的插层或转化反应,可以证明特定的钠存储机理原位和异位表征和理论计算。这项工作探索了用于钠离子电池阳极的碱土金属钒酸盐,并可能为储能开辟方向。

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