首页> 外文期刊>The Journal of Chemical Physics >Universality of the onset of activated transport in Lennard-Jones liquids with tunable coordination: Implications for the effects of pressure and directional bonding on the crossover to activated transport, configurational entropy, and fragility of glassforming liquids
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Universality of the onset of activated transport in Lennard-Jones liquids with tunable coordination: Implications for the effects of pressure and directional bonding on the crossover to activated transport, configurational entropy, and fragility of glassforming liquids

机译:Lennard-Jones液体中活化传输开始时具有协调性的普遍性:压力和方向键合对活化传输,构型熵和玻璃成型液体脆性交叉的影响

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摘要

We establish, via classical density functional theory, that the crossover to activated transport in liquids takes place when the depth of the metastable minimum in the free energy corresponding to long-lived aperiodic structures reaches a certain near universal value. We show that the particle vibrational displacement is strongly correlated with this depth in a broad range of pressure and temperature, thus providing basis for a Lindemann-like criterion for the onset of activated transport in liquids. The configurational entropy at the crossover temperature T _(cr), too, is found to be nearly system-independent, consistent with the random first order transition theory. We show that to reproduce existing data for the pressure dependence of T _(cr), the liquid must increase its coordination with pressure. Upon increasing pressure at fixed coordination, the liquids fragility is predicted to exhibit re-entrant behavior. This prediction is consistent with glycerol data but is in contrast with data in several organic liquids and polymers, whose fragility monotonically decreases with pressure in the so far accessed pressure range. Allowing for increase in coordination with pressure mitigates the disagreement, owing to the resulting decrease in the thermal expansivity. Finally, we rationalize the correlation between the isobaric and isochoric fragilities put forth by Casalini and Roland [Phys. Rev. E 72, 031503 (2005)10.1103/Phys.Rev.E.72.031503] and make predictions on the limiting behavior of the fragility at high pressure.
机译:我们通过经典的密度泛函理论确定,当与长寿命非周期性结构相对应的自由能中的亚稳态最小值达到某个接近普遍值时,就会发生向液体中活化传输的交叉。我们表明,在很宽的压力和温度范围内,颗粒的振动位移与该深度密切相关,从而为液体中活化运输的开始提供了类似于Lindemann准则的依据。还发现,在交叉温度T _(cr)处的构型熵几乎与系统无关,这与随机的一阶跃迁理论一致。我们表明,要重现T_(cr)的压力依赖性现有数据,液体必须增加其与压力的协调性。在固定配位压力增加时,预计液体的脆性表现出凹角行为。该预测与甘油数据一致,但与几种有机液体和聚合物中的数据相反,它们的脆性会随压力的增加而单调降低。由于热膨胀系数的降低,允许与压力的配合增加减轻了分歧。最后,我们合理化了Casalini和Roland提出的等压脆弱性和等速脆性之间的相关性。修订版E 72,031503(2005)10.1103 / Phys.Rev.E.72.031503],并预测了高压下脆性的极限行为。

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