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首页> 外文期刊>Journal of Physics. Condensed Matter >Fluoride ion diffusion of superionic PbSnF4 studied by nuclear magnetic resonance and impedance spectroscopy
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Fluoride ion diffusion of superionic PbSnF4 studied by nuclear magnetic resonance and impedance spectroscopy

机译:核磁共振和阻抗谱研究超离子PbSnF4的氟离子扩散

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Super-ionic material PbSnF4 prepared by precipitation from aqueous solution was characterized by x-ray diffraction, DTA and F-19 nuclear magnetic resonance (NMR) techniques. The temperature and frequency dependence of the conductivity, the modulus and the dielectric properties were investigated by means of impedance spectroscopy. The Arrhenius plot of the dc conductivity shows a gradual slope change around 355 K from a high-activation-energy (E-sigma = 30 kJ mol(-1)) region to a low-activation-energy region (E-sigma = 22 kJ mol(-1)). At lower temperatures the real part of the ac conductivity exhibited a power-law behaviour as found in most ionic conductors. At high temperatures, on the other hand, a low-frequency dispersion of the conductivity was observed due to the space charge polarization, which resulted from the high ionic conductivity. An extremely large dielectric constant was observed with decreasing frequency due to the space charge polarization. A dielectric anomaly was also observed around the phase transition temperature. The modulus formalism was used to-estimate the conductivity relaxation times, and was compared with those from the line width transition of the F-19 NMR. [References: 18]
机译:通过X射线衍射,DTA和F-19核磁共振(NMR)技术对通过从水溶液中沉淀制备的超离子材料PbSnF4进行了表征。通过阻抗谱研究了电导率,模量和介电特性的温度和频率依赖性。直流电导率的Arrhenius图显示了从高激活能(E-sigma = 30 kJ mol(-1))区域到低激活能区域(E-sigma = 22)大约355 K处的逐渐斜率变化kJ mol(-1))。在较低温度下,交流电导率的实部表现出幂律行为,这在大多数离子导体中都可以发现。另一方面,在高温下,由于空间电荷极化而观察到电导率的低频分散,这是由于高离子电导率引起的。由于空间电荷极化,随着频率降低,观察到极大的介电常数。在相变温度附近也观察到介电异常。模量形式用于估计电导率弛豫时间,并将其与F-19 NMR的线宽跃迁进行比较。 [参考:18]

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