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Magnetic Assembly Of Colloidal Superstructures With Multipole Symmetry

机译:具有多极对称性的胶态超结构的磁性组装

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The assembly of complex structures out of simple colloidal building blocks is of practical interest for building materials with unique optical properties (for example photonic crystals and DNA biosensors) and is of fundamental importance in improving our understanding of self-assembly processes occurring on molecular to macroscopic length scales. Here we demonstrate a self-assembly principle that is capable of organizing a diverse set of colloidal particles into highly reproducible, rotationally symmetric arrangements. The structures are assembled using the magneto-static interaction between effectively diamagnetic and paramagnetic particles within a magnetized ferrofluid. The resulting multipolar geometries resemble electrostatic charge configurations such as axial quadrupoles ('Saturn rings'), axial octupoles ('flowers'), linear quadrupoles (poles) and mixed multipole arrangements ('two tone'), which represent just a few examples of the type of structure that can be built using this technique.
机译:由简单的胶体构建块组装复杂结构对于具有独特光学特性的建筑材料(例如光子晶体和DNA生物传感器)具有实际意义,并且对于增进我们对从分子到宏观发生的自组装过程的理解至关重要长度刻度。在这里,我们展示了一种自组装原理,该原理能够将多种胶体颗粒组织成高度可再现的旋转对称排列。利用磁化铁磁流体中有效抗磁性和顺磁性粒子之间的静磁相互作用来组装结构。产生的多极几何形状类似于静电荷配置,例如轴向四极(“土星环”),轴向八极(“花”),线性四极(极)和混合多极排列(“两个音调”),它们仅代表以下几个例子:使用此技术可以构建的结构的类型。

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