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THERMAL DIFFUSION DYNAMIC BEHAVIOR OF TWO-DIMENSIONAL Ag-SMALL CLUSTERS ON Ag(111) SURFACE

机译:Ag(111)表面二维Ag-SMALL团簇的热扩散动力学行为

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摘要

In this paper, the thermal diffusion behavior of small two-dimensional Ag-islands on Ag(1 1 1) surface has been explored using molecular dynamics (MD) simulations. The approach is based on semi-empirical potentials. The key microscopic processes responsible for the diffusion of Ag1-5 adislands on Ag(1 1 1) surface are identified. The hopping and zigzag concerted motion along with rotation are observed for Ag one-atom to three-atom islands while single-atom and multi-atom processes are revealed for Ag four-atom and five-atom islands, during the diffusion on Ag(1 1 1) surface. The same increasing/decreasing trend in the diffusion coefficient and er effective energy barrier is observed in both the self learning kinetic Monte Carlo (SLKMC) and MD calculations, for the temperature range of 300-700 K. An increase in the value of er effective energy barrier is noticed with corresponding increase in the number of atoms in Ag-adislands. A reasonable linear fit is observed for the diffusion coefficient for studied temperatures (300, 500 and 700 K). For the observed diffusion mechanisms, our findings are in good agreement with ab initio density-functional theory (DFT) calculations for Al/Al(1 1 1) while the energy barrier values are in same range as the experimental values for Cu/Ag(1 1 1) and the theoretical values using ab initio DFT supplemented with embedded-atom method for Ag/Ag(1 1 1).
机译:本文采用分子动力学(MD)模拟方法研究了Ag(1 1 1)表面上小二维Ag岛的热扩散行为.该方法基于半经验潜力。确定了负责Ag1-5 adislands在Ag(1,1,1)表面扩散的关键微观过程。在Ag(1 1 1)表面扩散过程中,Ag单原子到三原子岛观察到了跳跃和锯齿形协同运动以及旋转,而Ag四原子和五原子岛则揭示了单原子和多原子过程。在300-700 K的温度范围内,自学习动力学蒙特卡洛(SLKMC)和MD计算中都观察到扩散系数和有效能量势垒的相同增加/减少趋势。随着Ag-adislands中原子数的相应增加,er有效能垒值的增加被注意到。观察到所研究温度(300、500 和 700 K)的扩散系数具有合理的线性拟合。对于观测到的扩散机理,研究结果与Al/Al(1 1 1)的从头密度泛函理论(DFT)计算结果吻合较好,而能垒值与Cu/Ag(1 1 1)的实验值和从头DFT辅以嵌入原子法的Ag/Ag理论值(1 1 1)处于同一范围。

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