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Dielectric study and ac conductivity of iron sodium silicate glasses

机译:硅酸钠铁玻璃的介电研究和交流电导率

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摘要

A series of glasses with formula (SiO_2)_(0.7-x)(Na _2O)_(0.3)(Fe_2O_3)_x with (0.0 ≤ x ≤ 0.20) were prepared and studied by means of AC measurements in the frequency range 20 kHz to 13 MHz at room temperature. The study of frequency dependence of both dielectric constant ε' and dielectric loss ε" showed a decrease of both quantities with increasing frequency. The results have been explained on the basis of frequency assistance of electron hopping besides electron polarization. From the Cole-Cole diagram the values of the static dielectric constant ε_s, infinity dielectric constant ε∞, macroscopic time constant τ, and molecular time constant τ_m are calculated for the studied amorphous samples. The frequency dependence of the ac conductivity obeys a power relation, that is σ_(ac) (ω) = Α ω~s. The obtained values of the constant s lie in the range of 0.7 ≤ s ≤ 1 in agreement with the theoretical value which confirms the simple quantum mechanical tunneling (QMT) model. The increase in ac conductivity with iron concentration is likely to arise due to structural changes occurring in the glass network. The structure of a glass with similar composition was published and showed clustering of Fe~(2+) and Fe~(3+) ions which favor electron hopping and provide pathways for charge transport.
机译:制备了一系列具有(SiO_2)_(0.7-x)(Na _2O)_(0.3)(Fe_2O_3)_x(0.0≤x≤0.20)的玻璃,并通过在20 kHz频率范围内进行AC测量进行了研究在室温下达到13 MHz对介电常数ε'和介电损耗ε”两者的频率依赖性的研究表明,这两个量都随频率增加而减小。除了电子极化以外,还基于电子跳跃的频率辅助对结果进行了解释。从科尔-科尔图计算得到的非晶态样品的静态介电常数ε_s,无穷大介电常数ε∞,宏观时间常数τ和分子时间常数τ_m的值,交流电导率的频率依赖性服从幂函数关系,即σ_(ac )(ω)= Aω〜s。常数s的取值在0.7≤s≤1的范围内,与理论值相符,这证实了简单的量子力学隧穿(QMT)模型。玻璃网络中发生的结构变化很可能导致铁浓度升高,并公布了具有相似成分的玻璃结构,并显示出Fe〜(2+)的聚集和Fe〜(3+)离子,它们有利于电子跳跃并为电荷传输提供路径。

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