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首页> 外文期刊>The Journal of Chemical Physics >Temperature dependence of intermediate-range orders in the viscosity-temperature relationship of supercooled liquids and glasses
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Temperature dependence of intermediate-range orders in the viscosity-temperature relationship of supercooled liquids and glasses

机译:过冷液体和玻璃的粘度-温度关系中中间级温度的温度依赖性

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摘要

The viscosity-temperature relationship obtained by us for several glasses over a wide temperature range was analyzed by extending the Adam-Gibbs theory to the range below the glass transition temperature (Tg). The entropy change of the intermediate-range orders (IROs) is discussed on the basis of the theory developed by Prigogine. It is estimated that the time dependence of the vibrational entropy of a glass shows a constant decrease with a smallest change, while that of its configurational entropy is 0, keeping the constant fictive temperature and the isostructural state. The result predicts the decrease of the volume of a glass at the constant time-rate through spontaneous aging at the constant temperature. We also show that the glass transition is a phase transition from an equilibrium Vogel-Fulcher-Tamman state to a nonequilibrium and (meta-)stable Arrhenius state through fluctuations at Tg, and a microscopic feature of the glass transition is the self-organization of the IROs. These findings are extremely useful in analyzing glass and nanomaterial productions because the size of the IROs in the glass state is a few nanometers.
机译:通过将Adam-Gibbs理论扩展到低于玻璃化转变温度(Tg)的范围,我们分析了我们在宽温度范围内获得的几种玻璃的粘度-温度关系。在Prigogine提出的理论的基础上,讨论了中间阶数(IRO)的熵变。据估计,玻璃的振动熵的时间依赖性以最小的变化呈现出恒定的减小,而其结构熵的时间依赖性为0,从而保持了恒定的虚构温度和同构状态。该结果预测通过恒定温度下的自发老化,在恒定时间速率下玻璃体积的减少。我们还表明,玻璃化转变是通过Tg的波动从平衡Vogel-Fulcher-Tamman态到非平衡态和(亚稳态)阿累尼乌斯态的相变,并且玻璃化转变的微观特征是Pg的自组织。 IRO。这些发现对于分析玻璃和纳米材料的生产非常有用,因为处于玻璃态的IRO的大小只有几纳米。

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