National Laboratory of Solid State Microstructures, Nanjing University, Nanjing 210093, PR China.
Langmuir. 2010 Jun 1;26(11):7859-64. doi: 10.1021/la9047165.
Self-assembly of colloidal spheres confined within cells of different shapes formed with two slides under capillary forces are studied. It is found that by controlling the shape of the cell the curvature of the drying front can result in a significant effect on the self-organization process. A curved drying front formed within parallel slides is always associated with growth of colloidal crystal structures with a high density of disorder. We demonstrate that single-domain two-dimensional colloidal crystals with centimeter size can be grown under capillary forces under a straight drying front formed in a wedge-shaped cell. These findings are demonstrated by laser diffraction, microscopy imaging methods and off-normal optical transmission measurements. The present growth method should be of importance in expanding colloidal crystal applications in angle-resolved nanosphere lithography, as well as in preparation of high-quality quasi-three-dimensional plasmonic crystals.
我们研究了在毛细作用力下,由两块载玻片形成的不同形状的容器中胶体球的自组装。研究发现,通过控制容器的形状,可以使干燥前沿的曲率对自组装过程产生显著影响。在平行载玻片之间形成的弯曲干燥前沿总是与胶体晶体结构的高密度无序生长相关联。我们证明,在楔形容器中形成的直干燥前沿的作用下,通过毛细作用力可以生长出厘米级大小的单畴二维胶体晶体。这些发现通过激光衍射、显微镜成像方法和非正光学透射测量得到了验证。目前的生长方法在扩展胶体晶体在角分辨纳米球光刻中的应用,以及制备高质量的类三维等离子体晶体方面具有重要意义。