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首页> 外文期刊>ACS applied materials & interfaces >Amorphous Bimetallic Oxides Fe-V-O with Tunable Compositions toward Rechargeable Zn-Ion Batteries with Excellent Low-Temperature Performance
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Amorphous Bimetallic Oxides Fe-V-O with Tunable Compositions toward Rechargeable Zn-Ion Batteries with Excellent Low-Temperature Performance

机译:无定形双金属氧化物Fe-V-O,可调谐组合物朝向可充电Zn离子电池,具有优异的低温性能

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摘要

Vanadium oxides have been considered as promising cathode candidates for zinc-ion batteries (ZIBs) because of their high theoretical specific capacity. However, the poor rate performance and the unsatisfactory cycle life resulting from the sluggish electrode kinetics seriously impede their practical implementation. Herein, we report the rational design of amorphous Fe-V-O bimetallic oxides with tunable compositions as cathodes for aqueous ZIBs. The bimetallic Fe-V-O oxides show improved composition-dependent Zn2+ storage performance and superior structural integrity during cycling. The( )enhanced electrode kinetics is attributed to the superior electronic conductivity of Fe-V-O oxides than pristine V2O5 owing to the introduction of the Fe element and an amorphous crystalline structure, which can provide reduced diffusion paths and more free volume for Zn2+ insertion. As a result, the as-prepared Fe-V-O exhibits outstanding rate capability and impressive cycling stability. Particularly, a stable reversible capacity of 70 mA h g(-1) can be still maintained after 2500 cycles at 5 A g(-1), corresponding to the high capacity retention of 95%.
机译:由于其高理论特异性容量,钒氧化物被认为是锌离子电池(ZIBS)的阴极候选物。然而,较低的率表现和由缓慢电极动力学产生的不令人满意的循环寿命严重阻碍了它们的实际实施。在此,我们将无定形Fe-V-O双金属氧化物的合理设计与可调谐组合物作为用于含水ZIB的阴极。双金属Fe-V-O氧化物显示出改善的组成依赖性Zn2 +储存性能以及循环期间的优异结构完整性。 ()增强电极动力学归因于Fe-V-O氧化物的优异电子导电性而不是原始V2O5由于Fe元素和无定形结晶结构,这可以提供降低的扩散路径和更自由体积的Zn2 +插入。结果,AS制备的FE-V-O表现出出色的速率能力和令人印象深刻的循环稳定性。特别地,在5Ag(-1)的2500次循环后,稳定的可逆容量仍然可以保持在5A(-1)的2500次循环后,对应于95%的高容量保留。

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