State Key Laboratory of Polymer Physics and Chemistry, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun 130022, People's Republic of China.
J Chem Phys. 2010 Apr 14;132(14):144506. doi: 10.1063/1.3383239.
We report a numerical investigation of the crystallization of monodisperse hard spheres on different patterned substrates. We find that the duration of a metastable fluid state, which may last for relatively long time in the homogeneous crystallization, can be deeply reduced or almost eliminated when a substrate is used as the seed of crystallization. In the presence of the square patterned substrate, which has the basic character of the body-centered cubic (bcc) crystal structure, a transient bcc crystal phase was observed, suggesting that the bcc structure could be possible to be stabilized by the square patterned substrates. The process of crystallization becomes complicated when the patterned substrate is incommensurate with the bulk crystal. Furthermore, a purely face-centered cubic or hexagonal close packed crystal phase with stacking faults can be generated by using a certain patterned substrate without other factors such as gravity.
我们报告了在不同图案化基底上单分散硬球结晶的数值研究。我们发现,在使用基底作为结晶种子时,均相成核结晶中可能持续相对较长时间的亚稳流体状态的持续时间可以被大大缩短或几乎消除。在具有体心立方(bcc)晶体结构基本特征的方形图案化基底存在的情况下,观察到了瞬态 bcc 晶体相,表明 bcc 结构可以通过方形图案化基底稳定下来。当图案化基底与体相晶体不相容时,结晶过程变得复杂。此外,通过使用特定的图案化基底而无需其他因素(例如重力),可以生成具有堆垛层错的纯面心立方或六方密堆积晶体相。