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首页> 外文期刊>Advanced energy materials >Achieving High-Voltage and High-Capacity Aqueous Rechargeable Zinc Ion Battery by Incorporating Two-Species Redox Reaction
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Achieving High-Voltage and High-Capacity Aqueous Rechargeable Zinc Ion Battery by Incorporating Two-Species Redox Reaction

机译:通过结合两种物种的氧化还原反应实现高压大容量可充电锌离子电池

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摘要

Herein, a two-species redox reaction of Co(II)/Co(III) and Fe(II)/Fe(III) incorporated in cobalt hexacyanoferrate (CoFe(CN)6) is proposed as a breakthrough to achieve jointly high-capacity and high-voltage aqueous Zn-ion battery. The Zn/CoFe(CN)6 battery provides a highly operational voltage plateau of 1.75 V (vs metallic Zn) and a high capacity of 173.4 mAh g(-1) at current density of 0.3 A g(-1), taking advantage of the two-species redox reaction of Co(II)/Co(III) and Fe(II)/Fe(III) couples. Even under extremely fast charge/discharge rate of 6 A g(-1), the battery delivers a sufficiently high discharge capacity of 109.5 mAh g(-1) with its 3D opened structure framework. This is the highest capacity delivered among all the batteries using Prussian blue analogs (PBAs) cathode up to now. Furthermore, Zn/CoFe(CN)6 battery achieves an excellent cycling performance of 2200 cycles without any capacity decay at coulombic efficiency of nearly 100%. One further step, a sol-gel transition strategy for hydrogel electrolyte is developed to construct high-performance flexible cable-type battery. With the strategy, the active materials can adequately contact with electrolyte, resulting in improved electrochemical performance (approximate to 18.73% capacity increase) and mechanical robustness of the solid-state device. It is believed that this study optimizes electrodes by incorporating multi redox reaction species for high-voltage and high-capacity batteries.
机译:在本文中,提出了一种结合在六氰合高铁酸钴(CoFe(CN)6)中的Co(II)/ Co(III)和Fe(II)/ Fe(III)的两种氧化还原反应,作为共同实现高容量的突破。以及高压水性Zn离子电池。 Zn / CoFe(CN)6电池在0.3 A g(-1)的电流密度下可提供1.75 V(vs金属Zn)的高工作电压平稳期和173.4 mAh g(-1)的高容量。 Co(II)/ Co(III)和Fe(II)/ Fe(III)对的两种物种的氧化还原反应。即使在6 A g(-1)的极快充电/放电速率下,该电池也可以通过其3D开放式结构框架提供109.5 mAh g(-1)足够高的放电容量。这是迄今为止使用普鲁士蓝类似物(PBA)阴极的所有电池中提供的最高容量。此外,Zn / CoFe(CN)6电池可实现2200个循环的出色循环性能,而库仑效率接近100%时不会出现任何容量衰减。下一步,开发了用于水凝胶电解质的溶胶-凝胶转变策略,以构建高性能的柔性电缆型电池。通过该策略,活性材料可以与电解质充分接触,从而提高了固态器件的电化学性能(容量增加了约18.73%)和机械强度。可以相信,这项研究通过结合用于高压和大容量电池的多种氧化还原反应物质来优化电极。

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