Pan Shao-Peng, Feng Shi-Dong, Qiao Jun-Wei, Niu Xiao-Feng, Wang Wei-Min, Qin Jing-Yu
College of Materials Science and Engineering, Taiyuan University of Technology, Taiyuan, 030024, China.
Phys Chem Chem Phys. 2017 Aug 23;19(33):22094-22098. doi: 10.1039/c7cp03475j.
The breakdown of the Stokes-Einstein relation (SER) in three model metallic liquids is investigated via molecular dynamics simulations. It is found that the breakdown of SER is closely correlated with the clustering behavior of well-packed atoms. When the SER breaks down, many cluster properties have almost the same value in these metallic liquids. At the breakdown temperature of SER, the temperature dependence of the number of clusters begins to deviate from a linear increase and the average number of well-packed atoms in the clusters reaches about 2, which indicates an increase in structure heterogeneity. Moreover, the size of the largest cluster shows a direct correlation with the SER. Therefore, our study provides a possible structural origin for the breakdown of SER in metallic liquids.
通过分子动力学模拟研究了三种模型金属液体中斯托克斯-爱因斯坦关系(SER)的失效情况。发现SER的失效与紧密堆积原子的聚集行为密切相关。当SER失效时,这些金属液体中的许多团簇性质几乎具有相同的值。在SER的失效温度下,团簇数量的温度依赖性开始偏离线性增加,并且团簇中紧密堆积原子的平均数量达到约2,这表明结构异质性增加。此外,最大团簇的尺寸与SER呈直接相关。因此,我们的研究为金属液体中SER的失效提供了一种可能的结构起源。