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Effect of Bi2O3 on the dynamics of Li+ ions in Li2O·P2O5 glasses

机译:Bi 2 O 3 对Li 2 O·P 中Li + 离子动力学的影响2 O 5 眼镜

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摘要

Lithium ion transport has been studied in bismuth lithium phosphate glasses in the frequency range 20 Hz–1 MHz and in the temperature range 423–573 K using impedance spectroscopy. The addition of Bi2O3 in Li2O·P2O5 glass is related to the modification of the glass structure and facilitates the Li+ ions migration. The ac and dc conductivities, activation energy of the dc conductivity and relaxation frequency are extracted from the impedance spectra. Conductivity of the present glass system is found to be ionic in nature. The electrical response of the glasses has been studied using both conductivity and electric modulus formalisms. A single ‘master curve’ for normalized plots of all the modulus isotherms observed for a given composition indicates the temperature independence of the dynamic processes for ions in these glasses. Nearly identical values of activation energy for dc conduction and for conductivity relaxation time indicate that the ions overcome same energy barrier while conducting and relaxing.
机译:使用阻抗光谱技术已经在20 Hz–1 MHz的频率范围和423–573 K的温度范围内研究了磷酸锂铋玻璃中的锂离子迁移。 Li 2 O·P 2 O 5 中Bi 2 O 3 的添加>玻璃与玻璃结构的改性有关,并促进Li + 离子迁移。从阻抗谱中提取出交流和直流电导率,直流电导率的活化能和弛豫频率。发现本玻璃系统的电导率本质上是离子的。已经使用电导率和电模量形式学来研究玻璃的电响应。对于给定的组成,观察到的所有模量等温线的归一化图的单个“主曲线”表示这些玻璃中离子动态过程的温度独立性。直流传导和传导率弛豫时间的活化能值几乎相同,表明离子在传导和弛豫时克服了相同的能垒。

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