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Amorphous manganese dioxide with the enhanced pseudocapacitive performance for aqueous rechargeable zinc-ion battery

机译:无定形锰二氧化锰,具有增强的可充电锌离子电池的假偶数性能

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Aqueous rechargeable zinc-manganese dioxide batteries have attracted extensive attention due to their high energy density, low cost, and environmental friendliness. However, the crystalline MnO2 polymorphs suffer from substantial phase changes upon cycling, leading to structural collapse and poor long-term cycling performance. Here, a highly reversible amorphous manganese dioxide with structural defects is reported as the cathode for aqueous rechargeable zinc-ion batteries (ARZIBs). Because of the existence of the abundant structural defects and intrinsic isotropic nature, the A-MnO2-delta exhibits significant pseudocapacitive contribution and facilitated reaction kinetics. As expected, the A-MnO2-delta delivers a high specific capacity of 301 mAh g(-1) at 100 mA g(-1) and long cycle-life with a capacity retention of 78% over 1000 cycles at 1 A g(-1), which is better than its crystalline counterparts. In addition, a reversible H+ and Zn2+ two-step insertion storage mechanism of the A-MnO2-delta electrode is demonstrated. This study not only suggests that amorphous manganese dioxide can serve as a stable cathode for ARZIBs but also provides significant guidance to realize other high-capacity and long-lifespan aqueous batteries by using the amorphous materials.
机译:由于其高能量密度,低成本和环境友好,含水可充电锌 - 二氧化锰电池引起了广泛的关注。然而,结晶MnO 2多晶型物在循环后患有大量相变,导致结构崩溃和差的长期循环性能。这里,具有结构缺陷的高度可逆非晶二氧化锰作为用于含水充电锌离子电池(Arzibs)的阴极。由于存在丰富的结构缺陷和内在各向同性的性质,A-MnO2δ具有显着的假偶联贡献和促进的反应动力学。如预期的,A-MnO2-DELTA在100 mA G(-1)和长循环 - 寿命的高度特定容量为301mAhg(-1),并且容量保留为1 a g( -1),这比其结晶对应物更好。另外,证明A-MnO2-Delta电极的可逆H +和Zn2 +两步插入储存机构。这项研究不仅表明无定形锰二氧化锰可以用作arzibs的稳定阴极,而且还提供了通过使用无定形材料来实现其他高容量和长寿命的含水电池的显着指导。

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