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富铝液态合金中的输运性质与斯托克斯-爱因斯坦关系

Transport properties and Stokes-Einstein relation in Al-rich liquid alloys.

作者信息

Jakse N, Pasturel A

机构信息

Sciences et Ingénierie des Matériaux et Procédés (SIMAP), UMR CNRS 5266, Grenoble Université Alpes, BP 75, 38402 Saint-Martin d'Hères Cedex, France.

出版信息

J Chem Phys. 2016 Jun 28;144(24):244502. doi: 10.1063/1.4954322.

Abstract

We use ab initio molecular dynamics simulations to study the transport properties and the validity of the Stokes-Einstein relation in Al-rich liquid alloys with Ni, Cu, and Zn as alloying elements. First, we show that the composition and temperature dependence of their transport properties present different behaviors, which can be related to their local structural ordering. Then, we evidence that the competition between the local icosahedral ordering and the local chemical ordering may cause the breakdown of the Stokes-Einstein relation even in the liquid phase. We demonstrate that this breakdown can be captured by entropy-scaling relationships developed by Rosenfeld and using the two-body excess entropy. Our findings provide a unique framework to study the relation between structure, thermodynamics, and dynamics in metallic melts and pave the way towards the explanation of various complex transport properties in metallic melts.

摘要

我们使用从头算分子动力学模拟来研究以镍、铜和锌作为合金元素的富铝液态合金中的输运性质以及斯托克斯-爱因斯坦关系的有效性。首先,我们表明它们的输运性质对成分和温度的依赖性呈现出不同的行为,这可能与它们的局部结构有序性有关。然后,我们证明即使在液相中,局部二十面体有序和局部化学有序之间的竞争也可能导致斯托克斯-爱因斯坦关系失效。我们表明这种失效可以通过罗森菲尔德提出的熵标度关系并利用两体过剩熵来捕捉。我们的研究结果为研究金属熔体中结构、热力学和动力学之间的关系提供了一个独特的框架,并为解释金属熔体中各种复杂的输运性质铺平了道路。

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