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Binder-Free α-MnO2 Nanowires on Carbon Cloth as Cathode Material for Zinc-Ion Batteries

机译:碳布上无粘结剂的α-MnO2纳米线作为锌离子电池的阴极材料

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摘要

Recently, rechargeable zinc-ion batteries (ZIBs) have gained a considerable amount of attention due to their high safety, low toxicity, abundance, and low cost. Traditionally, a composite manganese oxide (MnO ) and a conductive carbon having a polymeric binder are used as a positive electrode. In general, a binder is employed to bond all materials together and to prevent detachment and dissolution of the active materials. Herein, the synthesis of α-MnO nanowires on carbon cloth via a simple one-step hydrothermal process and its electrochemical performance, as a binder-free cathode in aqueous and nonaqueous-based ZIBs, is duly reported. Morphological and elemental analyses reveal a single crystal α-MnO having homogeneous nanowire morphology with preferential growth along {001}. It is significant that analysis of the electrochemical performance of the α-MnO nanowires demonstrates more stable capacity and superior cyclability in a dimethyl sulfoxide (DMSO) electrolyte ZIB than in an aqueous electrolyte system. This is because DMSO can prevent irreversible proton insertion as well as unfavorable dendritic zinc deposition. The application of the binder-free α-MnO nanowires cathode in DMSO can promote follow-up research on the high cyclability of ZIBs.
机译:近来,可再充电锌离子电池(ZIB)由于其高安全性,低毒性,丰度和低成本而受到了相当多的关注。传统上,将复合锰氧化物(MnO)和具有聚合物粘合剂的导电碳用作正极。通常,使用粘合剂将所有材料粘合在一起并防止活性材料脱离和溶解。在本文中,适当地报道了通过简单的一步水热法在碳布上合成α-MnO纳米线及其电化学性能,作为水性和非水性ZIBs中的无粘结剂阴极。形态和元素分析显示具有均匀纳米线形态且沿{001}优先生长的单晶α-MnO。重要的是,对α-MnO纳米线的电化学性能的分析表明,与含水电解质体系相比,在二甲基亚砜(DMSO)电解质ZIB中具有更稳定的容量和出色的循环能力。这是因为DMSO可以防止不可逆的质子插入以及不利的树枝状锌沉积。无粘合剂的α-MnO纳米线阴极在DMSO中的应用可以促进对ZIBs高循环性的后续研究。

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