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过冷水中弹性模型的评估:采用 TIP4P/2005f 力场的分子动力学研究。

Assessment of elastic models in supercooled water: A molecular dynamics study with the TIP4P/2005f force field.

机构信息

Institut Lumière Matière, CNRS, Université de Lyon, Université Claude Bernard Lyon 1, 69622 Villeurbanne, France.

Department of Materials Science, Institute of Glass and Ceramics, University of Erlangen-Nürnberg, Martensstrasse 5, 91058 Erlangen, Germany.

出版信息

J Chem Phys. 2017 Jul 7;147(1):014504. doi: 10.1063/1.4991372.

Abstract

Glass formers exhibit a viscoelastic behavior: at the laboratory time scale, they behave like (glassy) solids at low temperatures and like liquids at high temperatures. Based on this observation, elastic models relate the long time supercooled dynamics to short time elastic properties of the supercooled liquid. In the present work, we assess the validity of elastic models for the shear viscosity and the α-relaxation time of supercooled water, using molecular dynamics simulations with the TIP4P/2005f force field over a wide range of temperatures. We show that elastic models provide a good description of supercooled water dynamics. For the viscosity, two different regimes are observed and the crossover temperature is found to be close to the one where the Stokes-Einstein relation starts to be violated. Our simulations show that only shear properties are important to characterize the effective flow activation energy. This study calls for experimental determination of the high frequency elastic properties of water at low temperatures.

摘要

玻璃形成体表现出粘弹性行为

在实验室时间尺度上,它们在低温下表现为(玻璃态)固体,在高温下表现为液体。基于这一观察,弹性模型将长时间过冷动力学与过冷液体的短时间弹性性质联系起来。在本工作中,我们使用 TIP4P/2005f 力场的分子动力学模拟,在很宽的温度范围内评估弹性模型对过冷水剪切黏度和 α-松弛时间的适用性。我们表明,弹性模型可以很好地描述过冷水动力学。对于黏度,观察到两个不同的区域,并且发现转变温度接近于开始违反斯托克斯-爱因斯坦关系的温度。我们的模拟表明,只有剪切性质对于表征有效流动活化能是重要的。这项研究呼吁在低温下实验确定水的高频弹性性质。

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