Department of Physics and Astronomy, Iowa State University, Ames, Iowa 50011, USA.
Institut Jean Lamour, UMR CNRS 7098, Université de Lorraine, 54011 Nancy Cedex, France.
J Chem Phys. 2016 Dec 7;145(21):211904. doi: 10.1063/1.4954410.
Point island models (PIMs) are presented for the formation of supported nanoclusters (or islands) during deposition on flat crystalline substrates at lower submonolayer coverages. These models treat islands as occupying a single adsorption site, although carrying a label to track their size (i.e., they suppress island structure). However, they are particularly effective in describing the island size and spatial distributions. In fact, these PIMs provide fundamental insight into the key features for homogeneous nucleation and growth processes on surfaces. PIMs are also versatile being readily adapted to treat both diffusion-limited and attachment-limited growth and also a variety of other nucleation processes with modified mechanisms. Their behavior is readily and precisely assessed by kinetic Monte Carlo simulation.
点岛模型(PIMs)被提出用于描述在较低亚单层覆盖度下在平坦晶体基底上沉积时形成的支撑纳米团簇(或岛)。这些模型将岛视为占据单个吸附位,尽管带有标签以跟踪其大小(即,它们抑制了岛结构)。然而,它们在描述岛的大小和空间分布方面特别有效。实际上,这些 PIM 提供了对表面上均匀成核和生长过程的关键特征的基本了解。PIM 也具有多功能性,很容易适应于处理扩散限制和附着限制生长以及各种具有修改机制的其他成核过程。它们的行为可以通过动力学蒙特卡罗模拟来轻松且精确地评估。