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Crystal growth kinetics exhibit a fragility-dependent decoupling from viscosity

机译:晶体生长动力学表现出与脆性相关的与粘度的解耦

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In this paper we establish the temperature dependence of the kinetic coefficient associated with crystal growth into the supercooled liquid for a wide range of organic and inorganic materials. We show that the kinetic coefficient for crystal growth scales with the shear viscosity eta as eta(-xi) and that the exponent depends systematically on the fragility of the liquid. The greater the fragility (i.e., deviation away from an Arrhenius temperature dependence for eta), the larger the difference 1-xi. We argue that this breakdown in scaling between the crystal growth kinetics and the viscosity is a manifestation of heterogeneous dynamics in supercooled liquids. In addition, we show that the absolute growth rate at intermediate viscosities is correlated with the entropy difference between the liquid and the crystal. (C) 2008 American Institute of Physics.
机译:在本文中,我们建立了对于多种有机和无机材料,与过冷液体中晶体生长相关的动力学系数的温度依赖性。我们显示出晶体生长的动力学系数与剪切粘度eta为eta(-xi)成比例,并且该指数系统地取决于液体的脆性。脆性越大(即,偏离eta的阿伦尼乌斯温度依赖性),差1-xi越大。我们认为,晶体生长动力学和粘度之间的结垢的这种破坏是过冷液体中异质动力学的表现。此外,我们表明,在中等粘度下的绝对增长率与液体和晶体之间的熵差相关。 (C)2008美国物理研究所。

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