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Ionic mobility, ionic transport, and charge transfer mechanism in solid solutions (1-x)PbF2-xMF(n) by the NMR and impedance spectroscopy data

机译:NMR和阻抗谱数据显示固溶体(1-x)PbF2-xMF(n)中的离子迁移率,离子迁移和电荷转移机理

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The internal mobility and ionic conduction of solid solutions in systems PbF2-MF2 and PbF2-MF3 are studied by the NMR (F-19, Al-27 , Pb-207) and impedance spectroscopy methods. Factors that define the form of ionic movements and their energy characteristics in the temperature region 150 to 550 K are considered and analyzed. Temperature shifts of the frequency range that defines the ionic conduction of solid solutions are discovered on the basis of impedance spectroscopy data and explained. It is established that the high ionic conductance in lead difluoride doped with fluorides of metals of Groups II and III is caused by the diffusion of fluoride ions. The large values of specific conductance ( 10(-4) to 10(-3) S cm(-1)) at a relatively low activation energy (less than 0.6 eV) allow one to consider the solid solutions studied in the role of a basis for the obtaining of new fluoride materials with high ionic conductance.
机译:通过NMR(F-19,Al-27,Pb-207)和阻抗谱方法研究了系统PbF2-MF2和PbF2-MF3中固溶体的内部迁移率和离子传导性。考虑并分析了在150至550 K温度范围内定义离子运动形式及其能量特性的因素。在阻抗谱数据的基础上发现并解释了定义固溶体离子传导的频率范围的温度变化。可以确定的是,掺杂有第二和第三族金属的氟化物的二氟化铅中的高离子电导是由氟化物离子的扩散引起的。在相对较低的活化能(小于0.6 eV)下,较大的比电导值(10(-4)至10(-3)S cm(-1))使人们可以考虑以固溶体的形式研究的固溶体。获得具有高离子电导率的新型氟化物材料的基础。

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