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3-Dimensional structural control of silica microparticles using photoresponsive materials

机译:二氧化硅微粒的三维结构控制使用光反应材料

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We demonstrate the three-dimensional arrangement of silica microparticles in body-centered cubic lattice structure using both a relief pattern formed in the film of the azopolymer and silica micro particles dispersed in a nematic liquid crystal. In the method, firstly, the square lattice relief structures with the spacing of 2000 nm and the depth of 400 nm were formed on the azopolymer film by twice exposure to two beam interference patterns with coherent light of 488 nm in wavelength from Ar ion laser. Next, a nematic liquid crystal (5CB) containing 2000 nm diam. silica microparticles, with the surface modified with silane coupling reagent giving rise to homeotropic texture, was dropped on the relief structure on the azopolymer. The two dimensional square lattice structures of the micropaticles were formed spontaneously in an isotropic to nematic phase transition. Finally, the microparticles were three-dimensionally arranged by using optical tweezers. The microparticles were successfully stacked in a four-step pyramid structure with body centered tetragonal lattice structure.
机译:我们证明了使用形成在偶氮聚合物的膜和分散在向列型液晶的二氧化硅微粒两者的浮雕图案在体心立方晶格结构的二氧化硅微粒的三维排列。在该方法中,首先,形成具有2000nm的间距和400nm的深度的正方形格子浮雕结构分别对偶氮聚合物膜通过两次曝光于两个波束干涉图案具有在从Ar离子激光波长488nm的相干光。接着,将含有2000纳米直径的向列型液晶(5CB)。二氧化硅微粒子,用硅烷偶合剂引起各向同性结构改性的表面上,滴上的偶氮聚合物的浮雕结构。是在各向同性到向列相转移自发形成的micropaticles的二维正方晶格结构。最后,该微粒是通过使用光学镊子三维布置。所述微粒被成功堆叠在四步金字塔结构与身体心四方晶格结构。

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