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自组装结构来自各种 DNA 框架纳米颗粒。

Self-organized architectures from assorted DNA-framed nanoparticles.

机构信息

Center for Functional Nanomaterials, Brookhaven National Laboratory, Upton, New York 11973, USA.

出版信息

Nat Chem. 2016 Sep;8(9):867-73. doi: 10.1038/nchem.2540. Epub 2016 Jun 13.

Abstract

The science of self-assembly has undergone a radical shift from asking questions about why individual components self-organize into ordered structures, to manipulating the resultant order. However, the quest for far-reaching nanomanufacturing requires addressing an even more challenging question: how to form nanoparticle (NP) structures with designed architectures without explicitly prescribing particle positions. Here we report an assembly concept in which building instructions are embedded into NPs via DNA frames. The integration of NPs and DNA origami frames enables the fabrication of NPs with designed anisotropic and selective interactions. Using a pre-defined set of different DNA-framed NPs, we show it is possible to design diverse planar architectures, which include periodic structures and shaped meso-objects that spontaneously emerge on mixing of the different topological types of NP. Even objects of non-trivial shapes, such as a nanoscale model of Leonardo da Vinci's Vitruvian Man, can be self-assembled successfully.

摘要

自组装科学已经发生了根本性的转变,从研究为什么单个组件会自组织成有序结构,转变为操纵由此产生的有序结构。然而,对于深远的纳米制造的追求需要解决一个更具挑战性的问题:如何在不明确规定粒子位置的情况下,形成具有设计架构的纳米粒子(NP)结构。在这里,我们报告了一个组装概念,其中通过 DNA 框架将构建指令嵌入到 NPs 中。NP 和 DNA 折纸框架的集成使具有设计各向异性和选择性相互作用的 NPs 的制造成为可能。使用一组预定义的不同 DNA 框架 NPs,我们证明可以设计出多种平面结构,包括周期性结构和各种形状的介观物体,这些结构在混合不同拓扑类型的 NP 时会自发出现。甚至是具有非平凡形状的物体,例如达芬奇的《维特鲁威人》的纳米级模型,也可以成功地自组装。

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