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New Phosphate-based Electrode Material for High Performance Sodium-Ion Batteries

机译:用于高性能钠离子电池的新型磷酸盐基电极材料

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A new Nasicon-type phosphate Na3ZrCo(PO4)3is successfully synthesized using a sol-gel method. In this study, we investigate the synthesis, structural and electrochemical properties of this 3D phosphate. The Rietveld refinement of the XRD pattern showed that at room temperature, the material exhibits a hexagonal symmetry with the space group (R-3) and the cell parameters a = 8.931(3) Å; c = 22.310(1) Å. The structure of Na3ZrCo(PO4)3consists of edge sharing [MO6] octahedra (M = Zr, 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 synthesized Na3ZrCo(PO4)3were tested in sodium half-cell. An initial discharge capacity of 120 mAhg−1at C/20 for the first cycle and good capacity retention at high rates were obtained.
机译:新型Nasicon型磷酸钠 3 锆钴(PO 4 3 使用溶胶-凝胶法成功合成。在这项研究中,我们研究了这种3D磷酸盐的合成,结构和电化学性能。 XRD图的Rietveld细化表明,在室温下,该材料与空间群(R-3)和电池参数a = 8.931(3)Å呈六边形对称。 c = 22.310(1)Å。 Na的结构 3 锆钴(PO 4 3 由边缘共享[MO6]八面体(M = Zr,Co)组成,导致链平行于[-101]。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。合成钠 3 锆钴(PO 4 3 在钠半电池中测试。初始放电容量为120 mAhg -1 在第一个循环中以C / 20的速度运行,并获得了高效率的良好容量保持率。

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