Departamento de Física, Facultad de Ciencias, Universidad de Chile, Santiago, Chile.
Phys Chem Chem Phys. 2018 Jun 20;20(24):16347-16353. doi: 10.1039/c7cp08642c.
We studied the soft landing of Ni atoms on a previously damaged graphene sheet by means of molecular dynamics simulations. We found a monotonic decrease of the cluster frequency as a function of its size, but few big clusters comprise an appreciable fraction of the total number of Ni atoms. The aggregation of Ni atoms is also modeled by means of a simple phenomenological model. The results are in clear contrast with the case of hard or energetic landing of metal atoms, where there is a tendency to form mono-disperse metal clusters. This behavior is attributed to the high diffusion of unattached Ni atoms, together with vacancies acting as capture centers. The findings of this work show that a simple study of the energetics of the system is not enough in the soft landing regime, where it is unavoidable to also consider the growth process of metal clusters.
我们通过分子动力学模拟研究了 Ni 原子在先前受损的石墨烯片上的软着陆。我们发现,随着团簇尺寸的增加,团簇的频率呈单调下降趋势,但少数大团簇占据了总 Ni 原子数的相当大一部分。Ni 原子的聚集也通过一个简单的唯象模型来建模。结果与金属原子硬着陆或高能着陆的情况形成了鲜明的对比,在硬着陆或高能着陆的情况下,金属原子倾向于形成单分散的金属团簇。这种行为归因于未附着的 Ni 原子的高扩散,以及空位作为捕获中心的作用。这项工作的发现表明,在软着陆机制中,仅仅研究系统的能量是不够的,在软着陆机制中,不可避免地还需要考虑金属团簇的生长过程。