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Binder-free Cu-supported Ag nanowires for aqueous rechargeable silver-zinc batteries with ultrahigh areal capacity

机译:用于含水可充电银 - 锌电池的无粘合剂的Cu载体Ag纳米线,具有超高的面积容量

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As one of the most mature battery systems, the silver-zinc battery holds huge promise in the field of aqueous rechargeable batteries due to superior performance, high safety and environmental friendliness. It is urgent to improve the areal capacity of silver-zinc batteries so far. This study reports a novel Cu-supported Ag Nanowires (Cu@AgNAs1-5: abbreviation of Cu@AgNAs1, Cu@AgNAs2, Cu@AgNAs3, Cu@AgNAs4 and Cu@AgNAs5) as binder-free cathodes for high performance rechargeable aqueous silver-zinc batteries. Cu@AgNAs1-5 are successfully prepared by two steps of electrochemical nanoengineering and mild galvanic replacement between Cu and [Ag(NH3)(2)](+) chelate ions under green solution. With ultrahigh Ag loading of above 81 mg cm(-2), the Cu@AgNAs5 cathode achieves ultrahigh areal capacity of above 36 mAh cm(-2) at current density of 10 mA cm(-2). Benefiting from synergistic effect of Ag and Cu, multiply twinned structure accompanied by lattice defections (such as lattice distortion, mismatch and dislocation) and heterostructures, the Cu@AgNAs1-5 cathodes achieve excellent Ag utilization and cycling stability. Furthermore, the aqueous rechargeable Cu@AgNAs5-Zn battery demonstrates an excellent areal capacity of 36.80 mAh cm(-2) at 10 mA cm(-2). This work offers a promising pathway to greatly enhance areal capacity of bimetallic nanostructure-based electrodes and the Cu@AgNAs1-5-Zn batteries are attractive for large-scale energy-storage application. (C) 2020 Elsevier Inc. All rights reserved.
机译:作为最成熟的电池系统之一,银锌电池以其优越的性能、高安全性和环境友好性在水性二次电池领域具有巨大的应用前景。目前迫切需要提高银锌电池的面积容量。本研究报道了一种新型的铜载银纳米线(Cu@AgNAs1-5:缩写Cu@AgNAs1, Cu@AgNAs2, Cu@AgNAs3, Cu@AgNAs4和Cu@AgNAs5)作为高性能可充电水性银锌电池的无粘结剂阴极。Cu@AgNAs1-通过电化学纳米工程和铜与[Ag(NH3)(2)](+)螯合离子在绿色溶液中的温和电偶置换两步,成功制备了5。在超高载银量超过81 mg cm(-2)的情况下Cu@AgNAs5在电流密度为10mA-cm(-2)时,阴极实现了超过36mAh-cm(-2)的超高面积电容。得益于银和铜的协同效应,多重孪晶结构伴随着晶格缺陷(如晶格畸变、失配和位错)和异质结构Cu@AgNAs1-5阴极实现了良好的银利用率和循环稳定性。此外,水溶液是可充电的Cu@AgNAs5-锌电池在10毫安-厘米(-2)下的表面积容量为36.80毫安-厘米(-2)。这项工作为大幅度提高基于双金属纳米结构的电极的面积容量提供了一条有希望的途径Cu@AgNAs1-5-Zn电池对于大规模的储能应用具有吸引力。(C) 2020爱思唯尔公司版权所有。

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