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首页> 外文期刊>Solid state sciences >Enhancing the lithium-ion conductivity in Li2SrTa2-xNbxO7 (x=0-2)
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Enhancing the lithium-ion conductivity in Li2SrTa2-xNbxO7 (x=0-2)

机译:提高Li2SRTA2-XNBXO7(x = 0-2)中的锂离子电导率

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The lithium-ion conductivity in layered oxides, Li2SrTa2O7, Li2SrTaNbO7, and Li2SrNb2O7 has been demonstrated. Neutron and X-ray diffraction experiments were used for structural characterization, and confirmed that these compounds feature the so-called Ruddlesden-Popper structure, containing bilayer stacks of TaO6 or NbO6 octahedra, separated by layers of lithium ions, consistent with a previous report on the structure of the two end members. Variable-temperature impedance spectroscopy experiments show a methodical increase in the lithium-ion conductivity: Li2SrTa2O7 < Li2SrTaNbO7 < Li2SrNb2O7. Furthermore, a hypothesis-driven strategy has been investigated by generating defects in the structure. It was hypothesized that the lithium-ion mobility could be enhanced if defects were created in the lithium layer. Therefore, a lithium-deficient analogue of the most conductive compound, Li2SrNb2O7, was synthesized. Neutron diffraction experiments indicated that the defect material, Li1.8Sr0.8La0.2Nb2O7, retains the same structural framework. Most importantly, this compound shows remarkably higher conductivity, by two orders of magnitude, compared to the parent material, Li2SrNb2O7. These findings demonstrate that defects can be utilized as an effective tool to enhance the lithium-ion mobility in solid systems.
机译:已经证实了层状氧化物,Li2SRTA2O7,Li2SrantanBO7和Li2SRNB2O7中的锂离子电导率。中子和X射线衍射实验用于结构表征,并证实这些化合物具有所谓的鲁德德德普勒结构,含有双层堆叠的Tao6或Nbo6八面体的叠层结构,与锂离子层分开,与之前的报告一致两个终端成员的结构。可变温度阻抗光谱实验表明,锂离子电导率的有条理增加:Li2SRTA2O7

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