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首页> 外文期刊>Journal of Materials Science >AC conductivity in rare earth ions doped vanadophosphate glasses
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AC conductivity in rare earth ions doped vanadophosphate glasses

机译:稀土离子掺杂钒磷酸盐玻璃中的交流电导率

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Room temperature density and AC conductivity in the temperature range 300–525 K and frequency range 50 Hz to 5 MHz have been investigated in a set of La2O doped vanadophosphate glasses. The density decreased and total conductivity increased with increase of La2O content. The high temperature electrical conductivity has been analyzed using Mott’s small polaron model and polaron activation energies were determined. The polaron activation energy decreased marginally with increase of lanthanum content, at all frequencies of interest. These results have been attributed to the presence of mixed ion–polaron conduction in the present glasses. It is for the first time that La2O doped vanadophosphate glasses have been investigated for AC conductivity and despite heaviness of lanthanum ions, the mixed ion–polaron conduction has been detected. Frequency dependence of AC conductivity has been considered under the correlated barrier hopping (CBH) model of single electron hopping.
机译:在一组La 2 O掺杂的钒磷酸盐玻璃中,研究了室温密度和AC电导率,温度范围为300-525 K,频率范围为50 Hz至5 MHz。随着La 2 O含量的增加,密度降低,总电导率增加。已经使用Mott的小型极化子模型分析了高温导电率,并确定了极化子活化能。在所有感兴趣的频率下,极化子活化能随镧含量的增加而略有下降。这些结果归因于目前的玻璃中存在混合的离子-极化子传导。首次研究了掺杂La <2> O的钒磷酸盐玻璃的交流电导率,尽管镧离子很重,但仍检测到了混合的离子-极化子导电性。在单电子跳跃的相关势垒跳跃(CBH)模型下,已经考虑了交流电导率的频率依赖性。

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