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Two-dimensional nematic colloidal crystals self-assembled by topological defects.

机译:二维向列胶体晶体通过拓扑缺陷自组装。

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The ability to generate regular spatial arrangements of particles is an important technological and fundamental aspect of colloidal science. We showed that colloidal particles confined to a few-micrometer-thick layer of a nematic liquid crystal form two-dimensional crystal structures that are bound by topological defects. Two basic crystalline structures were observed, depending on the ordering of the liquid crystal around the particle. Colloids inducing quadrupolar order crystallize into weakly bound two-dimensional ordered structure, where the particle interaction is mediated by the sharing of localized topological defects. Colloids inducing dipolar order are strongly bound into antiferroelectric-like two-dimensional crystallites of dipolar colloidal chains. Self-assembly by topological defects could be applied to other systems with similar symmetry.
机译:产生规则的粒子空间排列的能力是胶体科学的重要技术和基本方面。我们发现,局限于向列液晶的几微米厚层的胶体颗粒形成了二维晶体结构,该结构被拓扑缺陷所束缚。根据颗粒周围液晶的顺序,观察到两个基本的晶体结构。诱导四极阶的胶体结晶为弱结合的二维有序结构,其中粒子相互作用是由局部拓扑缺陷的共享介导的。诱导偶极顺序的胶体牢固地结合到偶极胶体链的反铁电状二维微晶中。通过拓扑缺陷进行的自组装可以应用于具有相似对称性的其他系统。

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