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Engineering high reversibility and fast kinetics of Bi nanoflakes by surface modulation for ultrastable nickel–bismuth batteries

机译:通过表面调制工程化Bi纳米片的高可逆性和快速动力学用于超稳定镍铋电池

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摘要

The exploration of a stable and high-rate anode is of pivotal importance for achieving advanced aqueous rechargeable batteries. Owing to the beneficial properties of high conductivity, suitable negative working voltage, and three-electron redox, bismuth (Bi) is considered as a promising anode material, but it suffers from poor stability. Here, we successfully endow Bi nanoflakes (NFs) with prominent cycling performance by a one-step surface oxidation approach to remarkably boost its reversibility. As a result, the partially oxidized Bi NFs (BiOx) show an admirable capacity (0.38 mA h cm–2 at 2 mA cm–2), good rate capability and superior long-term stability (almost no capacity decay after 20 000 cycles). Furthermore, a durable aqueous Ni//Bi battery is constructed based on the optimized BiOx anode, which exhibits excellent durability with 96% capacity retention after 5000 cycles. This study could open a new avenue for the rational design of efficient anodes for eco-friendly and reliable aqueous rechargeable batteries.
机译:探索稳定且高速率的阳极对于实现高级水性可充电电池至关重要。由于高导电性,合适的负工作电压和三电子氧化还原的有益特性,铋(Bi)被认为是很有前途的阳极材料,但其稳定性较差。在这里,我们通过一步式表面氧化方法成功地赋予Bi纳米片(NFs)出色的循环性能,从而显着提高了其可逆性。结果,部分氧化的Bi NFs(BiOx)表现出令人称赞的容量(在2 mA cm –2 时为0.38 mA h cm –2 ),良好的定速能力和优异的容量长期稳定性(20 000次循环后容量几乎没有衰减)。此外,基于优化的BiOx阳极构造了耐用的Ni // Bi水性电池,该电池表现出出色的耐久性,在5000次循环后具有96%的容量保持率。这项研究可以为合理设计环保,可靠的水性可充电电池的高效阳极开辟新途径。

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