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Vanadium pentoxide nanosheets as cathodes for aqueous zinc-ion batteries with high rate capability and long durability

机译:五氧化二钒纳米片作为水性锌离子电池的阴极,具有高倍率能力和长寿命

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Aqueous zinc-ion batteries have been considered as a promising candidate for large-scale energy storage owing to their low-cost, safety and environment friendly. However, the development of high performance cathode materials using for zinc-ion de/intercalation is still a challenge. Herein, we prepared the V2O5 center dot 1.6H(2)O nanosheet with an ultrathin thickness of 2 nm and lateral size up to several micrometers by a simple hydrothermal method. The nanosheet configuration is an impressive microstructure to enhance the ion diffusion kinetics during the electrochemical reactions. As a proof of concept, we built a rechargeable aqueous Zn-V2O5 battery, assembling with the V2O5 center dot 1.6H(2)O nanosheet cathodes, Zn anode and 3M Zn(CF3SO3)(2) electrolyte. Owing to the high percentage of capacitive contribution (86.6% at 1 mV s(-1)) and rapid diffusion coefficient of Zn2+ in the V2O5 center dot 1.6H(2)O nanosheet cathodes, the aqueous Zn-V2O5 battery delivers a high reversible capacity (426 mAh g(-1) at 0.1 A g(-1)), exceptional rate capability (251 mAh g(-1) at 20 A g(-1)), long-term cycle performance (95% capacity after 5000 cycles at 10 A g(-1)) and excellent energy/power densities (151 Wh kg(-1) energy density at a high power density of 11.9 kW kg(-1)). These merits make the aqueous Zn-V2O5 battery hold potential for grid storage applications.
机译:水性锌离子电池由于其低成本,安全性和环境友好性而被认为是大规模储能的有希望的候选者。但是,开发用于锌离子脱/插层的高性能阴极材料仍然是一个挑战。在这里,我们通过简单的水热法制备了V2O5中心点1.6H(2)O纳米片,其超薄厚度为2 nm,横向尺寸最大为几微米。纳米片结构是令人印象深刻的微结构,可增强电化学反应过程中的离子扩散动力学。作为概念的证明,我们构建了可充电的Zn-V2O5水性电池,与V2O5中心点1.6H(2)O纳米片阴极,Zn阳极和3M Zn(CF3SO3)(2)电解质组装在一起。由于高百分比的电容性贡献(在1 mV s(-1)时为86.6%)和Zn2 +在V2O5中心点1.6H(2)O纳米片阴极中的快速扩散系数,因此Zn-V2O5水性电池可提供高可逆性容量(0.1 A g(-1)时为426 mAh g(-1)),出色的速率容量(20 A g(-1)时为251 mAh g(-1)),长期循环性能(95%容量后在10 A g(-1)时可进行5000次循环,并具有出色的能量/功率密度(在11.9 kW kg(-1)的高功率密度下的能量密度为151 Wh kg(-1))。这些优点使Zn-V2O5水性电池在电网存储应用中具有潜力。

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