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Non-Arrhenius conductivity in the fast ionic conductor Li_(0.05)La_(0.5)TiO_(3): reconciling spin-lattice and electrical-conductivity relaxations

机译:快速离子导体Li_(0.05)La_(0.5)TiO_(3)中的非阿里尼乌斯电导率:调节自旋晶格和电导率弛豫

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摘要

Nuclear magnetic resonance and electrical conductivity measurements are conducted to study the dynamics of the ionic diffusion process in the crystalline ionic conductor Li_(0.05)La_(0.5)TiO_(3). dc conductivity shows a nonArrhenius temperature dependence, similar to the one recently reported for some ionic conducting glasses. Spin-lattice and conductivity relaxations are analyzed in the same frequency and temperature range in terms of the non-Arrhenius dependence of the correlation time. Both relaxations are then described using a single correlation function of the form f(t)=exp(-(t/τ)^(β)), with β=0.4 over the whole temperature range.
机译:进行了核磁共振和电导率测量,以研究晶体离子导体Li_(0.05)La_(0.5)TiO_(3)中离子扩散过程的动力学。直流电导率显示出非阿伦尼乌斯温度依赖性,类似于最近报道的某些离子导电玻璃的温度依赖性。根据相关时间的非阿伦尼乌斯依赖性,在相同的频率和温度范围内分析了自旋晶格和电导率弛豫。然后使用形式为f(t)= exp(-(t(τ/τ)^(β))的单个相关函数描述两个松弛,在整个温度范围内,β= 0.4。

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