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Colloidal ribbons and rings from Janus magnetic rods

机译:Janus磁棒的胶体带和环

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摘要

Dipolar particles are fundamental building blocks in nature and technology, yet the effect of particle anisotropy is seldom explored. Here, we fabricate colloidal silica rods coated with a hemicylindrical magnetic layer to satisfy multiple criteria: nearly monodisperse, easily imaged and magnetic interaction that dominates over gravity. We confirm long-predicted features of dipolar assembly and stress the microstructural variety brought about by shape and constituent anisotropy, especially by extrapolating knowledge learned from literal molecules. In this colloidal system, we describe analogies to liquid crystalline deformations with bend, splay and twist; an analogy to cis/trans isomerism in organic molecules, which in our system can be controllably and reversibly switched; and a field-switching methodology to direct single ribbons into not only single but also multiple rings that can subsequently undergo hierarchical self-assembly. We highlight subtle material issues of control and design rules for reconfigurable dipolar materials with building blocks of complex shape.
机译:偶极子粒子是自然界和技术界的基本组成部分,但很少研究粒子各向异性的影响。在这里,我们制造了涂覆有半圆柱形磁性层的胶体二氧化硅棒,以满足多个条件:几乎单分散,易于成像以及在重力作用下占主导地位的磁性相互作用。我们确认了偶极组装的长期预测特征,并强调了形状和组成各向异性(特别是通过从文字分子中学习的知识)所带来的微观结构变化。在这种胶体系统中,我们描述了具有弯曲,张开和扭曲的液晶变形的类比。类似于有机分子中的顺/反异构现象,在我们的系统中可以被可控和可逆地切换;以及一种场切换方法,可将单个色带不仅引导到单个环中,而且将其引导到多个环中,然后再进行分层自组装。我们重点介绍了形状复杂的可重构偶极材料的控制和设计规则的细微材料问题。

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