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A sodium-ion battery exploiting layered oxide cathode, graphite anode and glyme-based electrolyte

机译:一种钠离子电池利用分层氧化物阴极,石墨阳极和基于Glyme的电解质

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摘要

Room-temperature rechargeable sodium-ion batteries (SIBs), in view of the large availability and low cost of sodium raw materials, represent an important class of electrochemical systems suitable for application in large-scale energy storage. In this work, we report a novel, high power SIB formed by coupling the layered P2-Na0.7CoO2 cathode with the graphite anode in an optimized ether-based electrolyte. The study firstly addresses the electrochemical optimization of the two electrode materials and then the realization and characterization of the novel SIB based on their combination. The cell represents an original sodium rocking chair battery obtained combining the intercalation/de-intercalation processes of sodium within the cathode and anode layers. We show herein that this battery, favored by suitable electrode/electrolyte combination, offers unique performance in terms of cycle life, efficiency and, especially, power capability.
机译:鉴于原料的较大可用性和低成本,室温可充电钠离子电池(SIB)代表了适用于大规模储能的重要电化学系统。在这项工作中,我们报告了一种通过在优化的醚基电解质中与石墨阳极偶联的层状P2-Na0.7COO2阴极偶联形成一种新型的高功率SIB。该研究首先解决了两个电极材料的电化学优化,然后基于它们的组合来实现新型SIB的实现和表征。该电池代表一个原始的摇钠摇椅电池,其组合在阴极和阳极层内的钠内的插层/去嵌段过程。我们展示了由合适的电极/电解质组合青睐的这种电池,在循环寿命,效率,特别是电力能力方面提供独特的性能。

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