Soft Condensed Matter, Debye Institute for NanoMaterials Science, Utrecht University, Utrecht, the Netherlands.
Phys Rev Lett. 2011 Oct 14;107(16):168302. doi: 10.1103/PhysRevLett.107.168302. Epub 2011 Oct 11.
We determine the phase diagram of a binary mixture of small and large hard spheres with a size ratio of 0.3 using free-energy calculations in Monte Carlo simulations. We find a stable binary fluid phase, a pure face-centered-cubic (fcc) crystal phase of the small spheres, and binary crystal structures with LS and LS(6) stoichiometries. Surprisingly, we demonstrate theoretically and experimentally the stability of a novel interstitial solid solution in binary hard-sphere mixtures, which is constructed by filling the octahedral holes of an fcc crystal of large spheres with small spheres. We find that the fraction of octahedral holes filled with a small sphere can be completely tuned from 0 to 1. Additionally, we study the hopping of the small spheres between neighboring octahedral holes, and interestingly, we find that the diffusion increases upon increasing the density of small spheres.
我们使用蒙特卡罗模拟中的自由能计算来确定小、大硬球(大小比为 0.3)二元混合物的相图。我们发现了稳定的二元流体相、小硬球的纯面心立方(fcc)晶体相以及具有 LS 和 LS(6)化学计量比的二元晶体结构。令人惊讶的是,我们从理论和实验上证明了在二元硬球混合物中一种新型的间隙固溶体的稳定性,它是由大球的 fcc 晶体中的八面体孔填充小球构建而成。我们发现,填充有小球的八面体孔的分数可以从 0 完全调至 1。此外,我们研究了小球在相邻八面体孔之间的跳跃,有趣的是,我们发现随着小球密度的增加,扩散增加。