结晶学
胶体晶体
胶体
材料科学
粒子(生态学)
晶界
对流
晶体生长
化学物理
楔形(几何)
纳米技术
化学
几何学
物理
热力学
微观结构
数学
地质学
海洋学
物理化学
作者
Sumeng Hu,Jun Nozawa,Kejia Kang,Suxia Guo,Hideaki Koizumi,Zon-Han Wei,Satoshi Uda
标识
DOI:10.1016/j.jcis.2021.02.016
摘要
The structural evolution of growing thin colloidal crystals in a confined space via the convective assembly technique has been investigated. The thin colloidal crystals were grown in a wedge-shaped cell, where the height of the cell increased with increased crystal growth. Triangle and square patterns, denoted as [1 1 1]- and [1 0 0]-oriented grains, respectively, were formed alternately as the height of the cell increased. The structural transformation was associated with an increase in the number of layers when the n-layer [1 0 0]-oriented grains changed to n + 1-layer [1 1 1]-oriented grains. Between the different grain structures, a stripe pattern was observed, which was a transitional region, where particle configuration gradually changed. The structural transformation occurred through the continuous change of particle configuration rather than through the abrupt formation of a grain boundary. The interval of the strip pattern lengthened as the number of layers increased, which is understood to be the structure with the highest packing density. The findings of the study give a better insight into convective assembly in a confined space, and also contribute to the greater structural control of colloidal crystals, useful for a number of applications.
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