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首页> 外文期刊>ACS nano >Directed Self-Assembly of Colloidal Particles onto Nematic Liquid Crystalline Defects Engineered by Chemically Patterned Surfaces
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Directed Self-Assembly of Colloidal Particles onto Nematic Liquid Crystalline Defects Engineered by Chemically Patterned Surfaces

机译:通过化学图案化表面设计的胶体颗粒的自我组装在甲型液晶缺陷上

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摘要

In exploiting topological defects of liquid crystals as the targeting sites for trapping colloidal objects, previous work has relied on topographic features with uniform anchoring to create defects, achieving limited density and spacing of particles. We report a generalizable strategy to create topological defects on chemically patterned surfaces to assemble particles in precisely defined locations with a tunable interparticle distance at nanoscale dimensions. Informed by experimental observations and numerical simulations that indicate that liquid crystals, confined between a homeotropic-anchoring surface and a surface with lithographically defined planar-anchoring stripes in a homeotropic-anchoring background, display splay-bend deformation, we successfully create pairs of defects and subsequently trap particles with controlled spacing by designing patterns of intersecting stripes aligned at 45 degrees with homeotropic-anchoring gaps at the intersections. Application of electric fields allows for dynamic control of trapped particles. The tunability, responsiveness, and adaptability of this platform provide the opportunities for assembly of colloidal structures toward functional materials.
机译:在利用作为捕获胶体物体的靶位部位的液晶的拓扑缺陷时,先前的工作依赖于具有均匀锚定的地形特征,以产生缺陷,实现颗粒的有限密度和间距。我们报告了一种概括的策略,以在化学图案化表面上产生拓扑缺陷,以在纳米级尺寸下的可调谐颗粒间距离在精确定义的位置中组装颗粒。通过实验观察结果和数值模拟,表示液晶在垂直锚固表面和具有光刻限定的平面锚定条纹的垂直锚固表面和表面之间的表面之间,展示展开弯曲变形,我们成功创造了成对的缺陷和随后通过在与交叉点处的垂直锚固间隙以45度对准的交叉条纹的图案设计具有受控间隔的颗粒。电场的应用允许动态控制被困粒子。该平台的可调性,响应性和适应性提供了组装胶体结构朝向功能材料的机会。

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