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Structural relaxation and quasi-elastic light scattering in glass: Approach by ferroelectric and ion-conducting phases

机译:玻璃中的结构弛豫和准弹性光散射:铁电和离子导电相的方法

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摘要

Inelastic light scattering has been utilized for examining the structure of glass and its relaxation. However, the quasi-elastic-light-scattering (QLS) phenomenon has not been addressed in much detail. In this study, we observed pronounced QLS-intensity variations in two temperature domains—supercooled liquid (SCL) state (α-relaxation regime) and below the glass-transition temperature (β-relaxation regime)—in niobium-oxide (Nb2O5)-rich glass. These variations may be interpreted on the basis of the concept of ferroelectric and ion-conducting phases. It was suggested that the observed QLS originates as a result of the polarization fluctuation of NbO6 units, which is due to the dynamics of the nanometric phase separation in the SCL phase (α-regime), and the fluctuation due to the migration/hopping of conductible ions that are localized in the vicinity of the NbO6 units (β-regime).
机译:非弹性光散射已用于检查玻璃的结构及其松弛。但是,准弹性光散射(QLS)现象尚未得到详细解决。在这项研究中,我们在氧化铌(Nb2O5)-中的两个温度域中观察到明显的QLS强度变化-过冷液体(SCL)状态(α弛豫状态)和低于玻璃化转变温度(β弛豫状态)-丰富的玻璃杯。这些变化可以基于铁电相和离子导电相的概念来解释。有人认为,观察到的QLS是NbO6单元极化波动的结果,这是由于SCL相(α-区)中的纳米相分离的动力学,以及NbO6单元的迁移/跃迁引起的波动。导电离子位于NbO6单元(β-区)附近。

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