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Synthesis and Investigation of CuGeO 3 Nanowires as Anode Materials for Advanced Sodium-Ion Batteries

机译:CuGeO 3 纳米线的合成与研究作为高级钠离子电池的负极材料

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Germanium is considered as a potential anode material for sodium-ion batteries due to its fascinating theoretical specific capacity. However, its poor cyclability resulted from the sluggish kinetics and large volume change during repeated charge/discharge poses major threats for its further development. One solution is using its ternary compound as an alternative to improve the cycling stability. Here, high-purity CuGeO~(3)nanowires were prepared via a facile hydrothermal method, and their sodium storage performances were firstly explored. The as-obtained CuGeO~(3)delivered an initial charge capacity of 306.7?mAh?g_(?1)along with favorable cycling performance, displaying great promise as a potential anode material for sodium ion batteries.
机译:锗因其引人入胜的理论比容量而被视为钠离子电池的潜在阳极材料。然而,由于动力学迟缓而导致其可循环性差,并且在反复充电/放电期间体积变化大,对其进一步发展构成了重大威胁。一种解决方案是使用其三元化合物作为替代品,以改善循环稳定性。在此,通过简便的水热法制备了高纯度的CuGeO〜(3)纳米线,并首次探讨了其钠存储性能。如此获得的CuGeO〜(3)具有306.7?mAh?g _(?1)的初始充电容量以及良好的循环性能,显示出作为钠离子电池潜在的负极材料的广阔前景。

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