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Electrochemical insertion of potassium ions in mixed phosphate

机译:混合磷酸盐中钾离子的电化学插入

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Potassium-ion batteries (KIBs) can offer high-voltage performance and energy density similar to lithium-ion batteries with the added advantages of elemental abundance, materials economy, and efficient K+ intercalation due to smaller radius of solvated ions. This nascent field offers ample room to exploit open framework polyanionic compounds as efficient cathode materials. Due to similar ionic size, Na-based compounds can be employed as suitable cathodes for KIBs. In this work, iron-based mixed phosphate Na4Fe3(PO4)(2)P2O7 is demonstrated as a robust 3.0 V cathode for potassium-ion batteries. The in-situ carbon coated nanoscale Na4Fe3(PO4)(2)P2O7 cathode delivers a discharge capacity of-120 mAh g(-1) (i.e., 94% of its theoretical capacity) with excellent capacity retention and rate kinetics. With its three-dimensional open framework having multiple alkali sites, Na4-xFe3(PO4)(2)P2O7 undergoes a solid-solution Fe3+/Fe2+ redox mechanism acting as an efficient host for K+ (de)insertion. It forms the best Fe-based phospho-polyanionic cathode for potassium-ion batteries. A full cell comprising Na4-xFe3(PO4)(2)P2O7 cathode and graphite anode demonstrates the potential future application in KIBs. It marks the first demonstration of Na-based mixed polyanionic phosphates as insertion hosts for KIBs, which can be extended to various polyanionic insertion materials.
机译:钾离子电池(KIBs)可以提供与锂离子电池相似的高压性能和能量密度,由于较小的溶剂化离子,具有元素丰度,材料经济性和高效k +嵌入的额外优点。这款新生的领域提供充足的房间,以利用开放的框架聚阴离子化合物作为高效的阴极材料。由于类似的离子尺寸,基于Na基化合物可用作Kibs的合适阴极。在该工作中,将铁基混合磷酸Na4Fe3(PO4)(2)P2O7作为耐钾离子电池作为鲁棒3.0V阴极。原位碳涂覆的纳米透视Na4Fe3(PO4)(2)P2O7阴极可提供120mAhg(-1)(即其理论能力的94%)的放电容量,具有优异的容量保留和速率动力学。利用其具有多个碱性位点的三维开放框架,Na4-XFE3(PO4)(2)P2O7经历固溶体Fe3 + / Fe2 +氧化还原机制,作用为K +(DE)插入的有效宿主。它形成了用于钾离子电池的最佳Fe基磷光聚阴离子阴极。包含Na4-XFE3(PO4)(2)P2O7阴极和石墨阳极的全细胞演示了KIBs中的潜在未来应用。它标志着Na基混合聚阴离子磷酸盐的第一次演示作为Kibs的插入宿主,其可以扩展到各种多阴离子插入材料。

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