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Novel Mg-ion conductive oxide of μ-cordierite Mg0.6Al1.2Si1.8O6

机译:μ-堇青石Mg0.6Al1.2Si1.8O6的新型Mg离子导电氧化物

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摘要

Solid electrolytes with high Mg-ion conductivity are required to develop solid-state Mg-ion batteries. The migration energies of the Mg ions of 5,576 Mg compounds tabulated from the inorganic crystal structure database (ICSD) were evaluated via high-throughput calculations. Among the computational results, we focused on the Mg ion diffusion in Mg Al  Si O , as this material showed a relatively low migration energy for Mg and was composed solely of ubiquitous elements. Furthermore, first-principles molecular dynamics calculations confirmed a single-phase Mg ion conductor. The bulk material with a single Mg Al Si O phase was successfully prepared using the sol-gel method. The relative density of the sample was 81%. AC impedance measurements indicated an electrical conductivity of 1.6 × 10 Scm at 500°C. The activation energy was 1.32 eV, which is comparable to that of monoclinic-type Mg Zr (PO ) .
机译:开发固态Mg离子电池需要具有高Mg离子电导率的固体电解质。通过高通量计算来评估从无机晶体结构数据库(ICSD)制成表格的5,576种Mg化合物的Mg离子的迁移能。在计算结果中,我们专注于Mg Al SiO 2中的Mg离子扩散,因为这种材料对Mg的迁移能较低,并且仅由普遍存在的元素组成。此外,第一性原理分子动力学计算证实了单相Mg离子导体。使用溶胶-凝胶法成功制备了具有单个Mg Al Si O相的块状材料。样品的相对密度为81%。交流阻抗测量表明,在500°C下的电导率为1.6×10 Scm。活化能为1.32eV,与单斜晶型Mg Zr(PO)相当。

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