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笼形胶体晶体。

Clathrate colloidal crystals.

机构信息

Department of Chemistry, Northwestern University, Evanston, IL 60208, USA.

International Institute for Nanotechnology, Northwestern University, Evanston, IL 60208, USA.

出版信息

Science. 2017 Mar 3;355(6328):931-935. doi: 10.1126/science.aal3919.

Abstract

DNA-programmable assembly has been used to deliberately synthesize hundreds of different colloidal crystals spanning dozens of symmetries, but the complexity of the achieved structures has so far been limited to small unit cells. We assembled DNA-modified triangular bipyramids (~250-nanometer long edge, 177-nanometer short edge) into clathrate architectures. Electron microscopy images revealed that at least three different structures form as large single-domain architectures or as multidomain materials. Ordered assemblies, isostructural to clathrates, were identified with the help of molecular simulations and geometric analysis. These structures are the most sophisticated architectures made via programmable assembly, and their formation can be understood based on the shape of the nanoparticle building blocks and mode of DNA functionalization.

摘要

DNA 可编程组装已被用于有目的地合成数百种不同的胶体晶体,涵盖数十种对称类型,但迄今为止,所实现结构的复杂性仅限于小单元胞。我们将 DNA 修饰的三角双锥(~250 纳米长边,177 纳米短边)组装成笼形结构。电子显微镜图像显示,至少有三种不同的结构形成大的单畴结构或多畴材料。借助分子模拟和几何分析,确定了与笼形物同构的有序组装体。这些结构是通过可编程组装制造的最复杂的结构,它们的形成可以基于纳米颗粒构建块的形状和 DNA 功能化模式来理解。

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