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Conductivity and dielectric relaxation in niobium alkali borate glasses

机译:铌碱硼酸盐玻璃中的电导率和介电弛豫

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摘要

The frequency and temperature dependent conductivity investigations for alkali niobium borate glasses of composition xNb_2O _5·(30-x)M_2O·70B_2O_3 (where M=Li, Na; x=0, 4, 8 mol) have been carried out using impedance spectroscopy (IS). The complex impedance data have been analyzed by using both the conductivity and the electric modulus formalisms. The conductivity decreases with the decrease in M_2O:Nb_2O_5 ratio. The effect of temperature on the scaling of dielectric modulus indicates that the conductivity relaxation mechanism is temperature independent. The overlapping of the normalized peaks corresponding to impedance and electric modulus and the identical values of thermal activation energy for conduction and relaxation suggest the single mechanism for the dynamic processes occurring in the present glasses. The variation of density, molar volume and glass transition temperature with glass composition has also been reported to supplement the conductivity results.
机译:xNb_2O _5·(30-倍)使用阻抗谱(IS)进行了M_2O·70B_2O_3(其中M=Li,Na;x=0,4,8 mol%)。使用电导率和电模量形式分析了复杂的阻抗数据。电导率随着M_2O:Nb_2O_5比的降低而降低。温度对介电模量缩放的影响表明,电导弛豫机制与温度无关。对应于阻抗和电模量的归一化峰的重叠以及传导和弛豫的热活化能值的相同值表明了本玻璃中发生的动态过程的单一机制。据报道,密度、摩尔体积和玻璃化转变温度随玻璃成分的变化也补充了电导率结果。

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