Pham-Van Hai, Tran-Phan-Thuy Linh, Tran-Manh Cuong, Do-Danh Bich, Luc-Huy Hoang
Department of Physics, Hanoi National University of Education, 136 Xuanthuy, Caugiay, Hanoi 100000, Vietnam.
Nanomaterials (Basel). 2020 Jan 16;10(1):156. doi: 10.3390/nano10010156.
The minimization principle of the second moment of the mass distribution ( M 2 ) is responsible for the unique structure of three-dimensional clusters by using emulsion droplet evaporation. Herein we study the structure of two-dimensional clusters of colloidal particles bound at the interface of liquid droplets in the plane. We found that, differently from the three-dimensional system, the two-dimensional clusters have multiple degenerate configurations (isomers). An interesting feature of such two-dimensional clusters is that they have the same packings as those belonging to a class of geometric figures known as polyiamonds. In particular, except for the six-particle cluster, many higher order clusters of polyiamond have not been reported previously. Using a simple geometrical approach, based on the number of ways to generate a packing, we calculated the occupation probabilities of distinct isomeric clusters. The level of agreement with the results of metropolis Monte Carlo simulations was good for clusters containing up to nine particles, suggesting that our two-dimensional cluster structures are not a result of the minimization of the second moment. In addition, the structure of these clusters is somewhat insensitive to the range and depth of the interparticle potential, in good agreement with the results in the literature.
质量分布二阶矩(M₂)的最小化原理通过乳液滴蒸发负责三维聚集体的独特结构。在此,我们研究平面内液滴界面处结合的胶体颗粒二维聚集体的结构。我们发现,与三维系统不同,二维聚集体具有多种简并构型(异构体)。这种二维聚集体的一个有趣特征是它们具有与一类称为多菱形的几何图形相同的堆积方式。特别是,除了六粒子聚集体外,许多高阶多菱形聚集体以前尚未被报道。使用一种基于生成堆积方式数量的简单几何方法,我们计算了不同异构体聚集体的占据概率。对于包含多达九个粒子的聚集体,与 metropolis 蒙特卡罗模拟结果的吻合程度良好,这表明我们的二维聚集体结构不是二阶矩最小化的结果。此外,这些聚集体的结构对粒子间势的范围和深度有些不敏感,这与文献中的结果非常吻合。