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Dynamically Programmable Fluidic Assembly

机译:动态可编程流体组件

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A major challenge in fluidic assembly is the dynamically programmable fabrication of arbitrary geometries from basic components. Current approaches require predetermination of either the assembly machinery or the component interfaces for the specific target geometries. We present an alternative concept that exploits self-assembly forces locally but directs these forces globally, allowing fabrication and manipulation of target structures without tailoring the substrate or interfaces. By controlling the flow in a microfluidic chamber, components are directed to their target locations where local interactions align and bond them. Following this approach, we demonstrate and quantify the experimental assembly of structures composed of two to ten components.
机译:流体装配中的主要挑战是从基本组件动态编程制造任意几何形状。当前的方法要求针对特定目标几何形状的组装机械或部件接口的预先确定。我们提出了一个替代性的概念,该概念在局部利用自组装力,但在全球范围内引导这些力,从而可以在不定制基板或界面的情况下制造和操纵目标结构。通过控制微流体腔室中的流动,将组件定向到它们的目标位置,在该位置上,局部相互作用将它们对齐并结合起来。按照这种方法,我们演示并量化了由两到十个组件组成的结构的实验组装。

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