首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Formation of Spatially Patterned Colloidal Photonic Crystals through the Control of Capillary Forces and Template Recognition
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Formation of Spatially Patterned Colloidal Photonic Crystals through the Control of Capillary Forces and Template Recognition

机译:通过控制毛细作用力和模板识别形成空间图案化的胶体光子晶体

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摘要

We report the formation of microscopic patterns of substrate-supported, 3D planar colloidal crystals using physical confinement in conjunction with surfaces displaying predetermined binary patterns of hydropholicity. The formation process involves a primary self-assembly wherein nano- and microscale colloids order into a photonic fcc lattice via capillary interactions followed by a secondary template-induced crystal cleavage step. Following this method, arbitrary arrays of pattern elements, which preserve structural and orientational properties of the parent crystal, can be easily obtained.
机译:我们报告了使用物理限制结合显示预定的疏水性二元图案的表面,将基质支撑的3D平面胶体晶体的微观图案形成。形成过程涉及一次自组装,其中纳米级和微米级胶体通过毛细管相互作用依次排列成光子fcc晶格,然后进行二次模板诱导的晶体裂解步骤。按照这种方法,可以容易地获得保留母体晶体的结构和取向特性的图案元素的任意阵列。

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