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首页> 外文期刊>Nanoscale >Metastable FeCN2@nitrogen-doped carbon with high pseudocapacitance as an anode material for sodium ion batteries
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Metastable FeCN2@nitrogen-doped carbon with high pseudocapacitance as an anode material for sodium ion batteries

机译:亚稳FeCN2@nitrogen-doped碳高pseudocapacitance作为钠的阳极材料离子电池

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摘要

Pseudocapacitive materials are good candidates for fast charging anodes of sodium ion batteries (SIB). However, pseudocapacitive materials with a high surface area face the severe problem of low initial coulombic efficiency. In this work, micro-sized nitrogen-doped carbon (NC) coated and supported polyhedron FeCN2 networks are designed and synthesized by a facile in situ gel-swelling technique. Impressively, FeCN2@NC as an SIB anode exhibits excellent rate performance with highly reversible rate capacities of 466 and 303 mA h g−1 at 0.2 and 10.0 A g−1, respectively. Furthermore, the FeCN2@NC anode shows a high initial coulombic efficiency (ICE) of 86% due to a low surface area. Electrochemical tests and density functional theory (DFT) calculation indicate that the metastable character enables the low intercalation/conversion reaction energy for FeCN2 and further greatly promotes the fast pseudocapacitive storage mechanism for FeCN2@NC. This work provides evidence that FeCN2 is a new type of metastability induced pseudocapacitive material with high initial coulombic efficiency.
机译:Pseudocapacitive材料是很好的候选人钠离子电池的快速充电阳极(SIB)。高表面积面对低的严重的问题首次库仑效率。nitrogen-doped碳(NC)涂层和微粒支持多面体FeCN2网络设计灵巧的原位gel-swelling和合成技术。展览优秀的速度性能高可逆的速度能力466年和303年的马h在0.2和10.0 g g−1−1,分别。此外,FeCN2@NC阳极显示了一个高最初由于库仑效率(ICE) 86%低表面积。密度泛函理论(DFT)计算表明,使亚稳态的字符低夹层/转换反应能量FeCN2和进一步大大促进了快FeCN2@NC pseudocapacitive存储机制。这项工作提供了证据表明FeCN2是一个新的类型的亚稳定性诱导pseudocapacitive材料与首次库仑效率高。

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