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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Alluaudite Na2Co2Fe(PO4)(3) as an electroactive material for sodium ion batteries
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Alluaudite Na2Co2Fe(PO4)(3) as an electroactive material for sodium ion batteries

机译:钙铝石Na2Co2Fe(PO4)(3)作为钠离子电池的电活性材料

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摘要

The electroactive orthophosphate Na2Co2Fe(PO4)(3) was synthesized using a solid state reaction. Its crystal structure was solved using the combination of powder X-ray-and neutron-diffraction data. This material crystallizes according to the alluaudite structure (S.G. C2/c). The structure consists of edge sharing [MO6] octahedra (M = Fe, Co) resulting in chains parallel to [-101]. These chains are linked together via the [PO4] tetrahedra to form two distinct tunnels in which sodium cations are located. The electrochemical properties of Na2Co2Fe(PO4)(3) were evaluated by galvanostatic charge-discharge cycling. During the first discharge to 0.03 V, Na2Co2Fe(PO4)(3) delivers a specific capacity of 604 mA h g(-1). This capacity is equivalent to the reaction of more than seven sodium ions per formula unit. Hence, this is a strong indication of a conversion-type reaction with the formation of metallic Fe and Co. The subsequent charge and discharge involved the reaction of fewer Na ions as expected for a conversion reaction. When discharged to 0.9 V, the material intercalated only one Na+-ion leading to the formation of a new phase Na3Co2Fe(PO4)(3). This phase could then be cycled reversibly with an average voltage of 3.6 V vs. Na+/Na and a capacity of 110 mA h g(-1). This result is in good agreement with the theoretical capacity expected from the extraction/insertion of two sodium atoms in Na2Co2Fe(PO4)(3).
机译:使用固态反应合成了电活性正磷酸盐Na2Co2Fe(PO4)(3)。利用粉末X射线和中子衍射数据相结合来解析其晶体结构。该材料根据钙铝石结构结晶(S.G. C2 / c)。该结构由边缘共享[MO6]八面体(M = Fe,Co)组成,形成平行于[-101]的链。这些链通过[PO4]四面体连接在一起,形成两个不同的通道,钠离子位于其中。 Na2Co2Fe(PO4)(3)的电化学性能通过恒电流充放电循环进行了评估。在第一次放电至0.03 V的过程中,Na2Co2Fe(PO4)(3)的比容量为604 mA h g(-1)。该容量相当于每个配方单元超过七个钠离子的反应。因此,这是形成金属Fe和Co的转化型反应的有力指示。随后的充放电涉及转化反应所预期的较少Na离子的反应。当放电至0.9 V时,该材料仅插入一个Na +离子,导致形成新相Na3Co2Fe(PO4)(3)。然后,该相可以以3.6 V vs. Na + / Na的平均电压和110 mA h g(-1)的容量可逆地循环。该结果与Na2Co2Fe(PO4)(3)中两个钠原子的萃取/插入所预期的理论容量非常吻合。

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