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3D DNA Origami Cuboids as Monodisperse Patchy Nanoparticles for Switchable Hierarchical Self-Assembly

机译:3D DNA折纸长方体作为可切换的分层自组装的单分散性修补纳米颗粒。

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摘要

The rational design of anisotropic interaction patterns is a key step for programming colloid and nanoparticle self-assembly and emergent functions. Herein, we demonstrate a concept for harnessing the capabilities of 3D DNA origami for extensive supracolloidal self-assembly and showcase its use for making truly monodisperse, patchy, divalent nanocuboids that can self-assemble into supracolloidal fibrils via programmable DNA hybridization. A change in the number of connector duplexes at the patches reveals that multivalency and cooperativity play crucial roles to enhance superstructure formation. We further show thermal and chemical switching of the superstructures as the first steps toward reconfigurable self-assemblies. This concept lays the groundwork for merging monodisperse 3D DNA origami, featuring programmable patchiness and interactions, with nanoparticle self-assembly.
机译:各向异性相互作用模式的合理设计是编程胶体和纳米粒子自组装和紧急功能的关键步骤。在本文中,我们演示了利用3D DNA折纸的广泛胶体上自组装功能的概念,并展示了其用于制造真正的单分散,片状,二价纳米立方体的功能,这些纳米立方体可以通过可编程DNA杂交自组装成胶体上原纤维。斑块处的连接器双链体数量的变化表明,多价和协同作用对于增强超结构的形成起着至关重要的作用。我们进一步显示了上层建筑的热化学切换,这是可重构自组装的第一步。这一概念为融合单分散3D DNA折纸奠定了基础,该折纸具有可编程的修补程序和交互作用以及纳米粒子自组装功能。

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