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首页> 外文期刊>Electrochimica Acta >Effect of the electrode/electrolyte interface structure on the potassium-ion diffusional and charge transfer rates: towards a high voltage potassium-ion battery
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Effect of the electrode/electrolyte interface structure on the potassium-ion diffusional and charge transfer rates: towards a high voltage potassium-ion battery

机译:电极/电解质界面结构对钾离子扩散和电荷传递速率的影响:朝向高压钾离子电池

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摘要

Potassium and sodium-ion transfer kinetics were compared for the intercalation reactions into the KVPO4F positive electrode material in acetonitrile-and ethylene carbonate-based electrolytes, which implied the formation of different electrode/electrolyte interface structures. The presence of surface layers was found to result in a significantly more pronounced effect on the ion transfer kinetics for K+ compared with Na+, while the barrier layers in K+ electrolytes were demonstrated to be less resistive. Difficulties associated with the stabilization of the electrode material/potassium electrolyte interface under high operating potentials require the application of higher voltage electrolytes. The kinetic trends in three high voltage electrolytes were compared for the potassium (de) intercalation reaction, and the general obstacles to developing a high-voltage potassium-ion battery were identified. (C) 2017 Elsevier Ltd. All rights reserved.
机译:将钾和钠离子转移动力学与乙腈和碳酸亚乙酯类电解质中的kVPO4F正极材料中的嵌入反应进行比较,这暗示了不同电极/电解质界面结构的形成。 发现表面层的存在导致与Na +相比,对K +的离子转移动力学产生显着更明显的影响,而K +电解质中的阻挡层被证明是较低的电阻。 在高运行电位下与稳定电极材料/钾电解质界面相关的困难需要施加更高电压电解质。 将三个高压电解质中的动力学趋势与钾(DE)嵌入反应进行比较,并鉴定了开发高压钾离子电池的一般障碍。 (c)2017 Elsevier Ltd.保留所有权利。

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