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Tunable Layered (NaMn)V8O20·nH2O Cathode Material for High‐Performance Aqueous Zinc Ion Batteries

机译:用于高性能水性锌离子电池的可调谐层状(NaMn)V8O20·nH2O阴极材料

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摘要

Rechargeable aqueous zinc‐ion batteries (ZIBs) show promise for use in energy storage. However, the development of ZIBs has been plagued by the limited cathode candidates, which usually show low capacity or poor cycling performance. Here, a reversible Zn//(Na,Mn)V O · H O system is reported, the introduction of manganese (Mn) ions in NaV O to form (Na,Mn)V O exhibits an outstanding electrochemical performance with a capacity of 377 mA h g at a current density of 0.1 A g . Through experimental and theoretical results, it is discovered that the outstanding performance of (Na,Mn)V O · H O is ascribed to the Mn /Mn ‐induced high electrical conductivity and Na ‐induced fast migration of Zn . Other cathode materials derived from (Na,Mn)V O · H O by substituting Mn with Fe, Co, Ni, Ca, and K are explored to confirm the unique advantages of transition metal ions. With an increase in Mn content in NaV O , (Na ,Mn )V O · H O can deliver a reversible capacity of 150 mA h g and a capacity retention of 99% after 1000 cycles, which may open new opportunities for the development of high‐performance aqueous ZIBs.
机译:可再充电的水性锌离子电池(ZIB)有望用于储能。然而,有限的阴极候选物困扰着ZIB的发展,其通常显示出低容量或不良的循环性能。此处报道了可逆的Zn //(Na,Mn)VO·HO体系,在NaV O中引入锰(Mn)离子以形成(Na,Mn)VO具有优异的电化学性能,容量为377mA hg在0.1 A g的电流密度下。通过实验和理论结果,发现(Na,Mn)V O·H O的优异性能归因于Mn / Mn诱导的高电导率和Na诱导的锌的快速迁移。为了证实过渡金属离子的独特优势,还探索了通过用Mn,Fe,Co,Ni,Ca和K取代Mn衍生自(Na,Mn)V O·H O的其他阴极材料。随着NaV O中Mn含量的增加,(Na,Mn)VO·HO在1000次循环后可提供150mA hg的可逆容量和99%的容量保持率,这可能为开发高性能提供新的机会水性ZIB。

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