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首页> 外文期刊>Nature Communications >Rechargeable potassium-ion batteries with honeycomb-layered tellurates as high voltage cathodes and fast potassium-ion conductors
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Rechargeable potassium-ion batteries with honeycomb-layered tellurates as high voltage cathodes and fast potassium-ion conductors

机译:具有蜂窝状层状碲酸盐的可充电钾离子电池,可作为高压阴极和快速的钾离子导体

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Rechargeable potassium-ion batteries have been gaining traction as not only promising low-cost alternatives to lithium-ion technology, but also as high-voltage energy storage systems. However, their development and sustainability are plagued by the lack of suitable electrode materials capable of allowing the reversible insertion of the large potassium ions. Here, exploration of the database for potassium-based materials has led us to discover potassium ion conducting layered honeycomb frameworks. They show the capability of reversible insertion of potassium ions at high voltages (~4?V for K2Ni2TeO6) in stable ionic liquids based on potassium bis(trifluorosulfonyl) imide, and exhibit remarkable ionic conductivities e.g. ~0.01?mS?cm?1 at 298?K and ~40?mS?cm–1 at 573?K for K2Mg2TeO6. In addition to enlisting fast potassium ion conductors that can be utilised as solid electrolytes, these layered honeycomb frameworks deliver the highest voltages amongst layered cathodes, becoming prime candidates for the advancement of high-energy density potassium-ion batteries.
机译:可充电的钾离子电池不仅作为锂离子技术的低成本替代品,而且还作为高压储能系统,受到了人们的青睐。然而,它们的发展和可持续性受到缺乏合适的电极材料的困扰,所述电极材料能够使大钾离子可逆地插入。在这里,对钾基材料数据库的探索使我们发现了传导钾离子的分层蜂窝状骨架。它们显示了在基于双(三氟磺酰基)酰亚胺化钾的稳定离子液体中,高电压下钾离子可逆插入的能力(对于K2Ni2TeO6为〜4?V),并具有出色的离子电导率,例如对于K2Mg2TeO6,在298?K时约为0.01?mS?cm?1,在573?K时约为40?mS?cm?1。除了采用可以用作固体电解质的快速钾离子导体外,这些层状蜂窝状框架还可以在层状阴极中提供最高的电压,成为发展高能量密度钾离子电池的主要候选产品。

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