首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >A hybrid energy storage mechanism of carbonous anodes harvesting superior rate capability and long cycle life for sodium/potassium storage
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A hybrid energy storage mechanism of carbonous anodes harvesting superior rate capability and long cycle life for sodium/potassium storage

机译:碳阳极的混合储能机制,收获优异速率能力和钠/钾储存的长循环寿命

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摘要

Engineering of carbonous materials with excellent electrochemical performances for both sodium and potassium ion batteries is still challenging. In this work, N-doped interconnected carbon spheres with ultrathin nanosheets and expanded interplanar spacing (UNCns) were fabricated by a simple and scalable template-assisted spray pyrolysis method. The hybrid ion storage mechanism endows the UNCns with excellent rate performance and ultra-long cycling lifespan. Moreover, it has been found that the difference between sodium and potassium storage mechanisms in the UNCns strongly influences their performance, which is inspiring to further improve the electrochemical performance of electrode materials by coordinating adsorption (capacitive-controlled) energy storage and redox (diffusioncontrolled) energy storage through controlling structural construction.
机译:碳材料的工程含钠和钾离子电池具有优异的电化学性能仍然具有挑战性。 在这项工作中,通过简单且可伸缩的模板辅助喷雾热解法制造了具有超薄纳米片和膨胀的白板间距(UNCN)的N掺杂的互连碳球。 混合离子储存机构具有优异的速率性能和超长循环寿命。 此外,已经发现,UNCN中钠和钾储存机制之间的差异强烈影响它们的性能,这是通过协调吸附(电容控制)能量存储和氧化还原(扩散控制)进一步提高电极材料的电化学性能。 通过控制结构结构的能量存储。

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