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3D zinc@carbon fiber composite framework anode for aqueous Zn–MnO2 batteries

机译:Zn-MnO2水溶液电池用3D锌@碳纤维复合骨架阳极

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Rechargeable aqueous batteries are one of the most promising large-scale energy storage devices because of their environment-friendly properties and high safety advantages without using flammable and poisonous organic liquid electrolyte. In addition, rechargeable Zn–MnO _(2) batteries have great potential due to their low-cost resources as well as high energy density. However, dendritic growth of the zinc anode hinders the exertion of cycling stability and rate capacity in an aqueous Zn–MnO _(2) battery system. Here we use an electrochemical deposition method to in situ form a three-dimensional (3D) zinc anode on carbon fibers (CFs). This 3D Zn@CFs framework has lower charge transfer resistance with larger electroactive areas. Batteries based on the 3D zinc framework anode and α-MnO _(2) nanowire cathode present enhanced rate capacity and long cycling stability, which is promising for utilization in other zinc anode based aqueous batteries as an effective way to solve dendrite formation.
机译:可充电水性电池由于其环保特性和不使用易燃有毒有机液体电解质的高安全性优势,是最有前途的大型储能设备之一。此外,可充电Zn–MnO _(2)电池由于其低成本资源和高能量密度而具有巨大潜力。但是,锌阳极的树枝状生长阻碍了Zn-MnO _(2)水溶液电池系统的循环稳定性和倍率容量的发挥。在这里,我们使用电化学沉积方法在碳纤维(CFs)上原位形成三维(3D)锌阳极。这种3D Zn @ CFs框架具有较低的电荷转移电阻,且具有较大的电活性区域。基于3D锌骨架阳极和α-MnO_(2)纳米线阴极的电池具有增强的倍率容量和长循环稳定性,这有望在其他基于锌阳极的水性电池中用作解决枝晶形成的有效方法。

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