多面体
DNA折纸
四面体
空格(标点符号)
材料科学
聚乙二醇
八面体
纳米技术
配对
立方体(代数)
结晶学
拓扑(电路)
纳米结构
几何学
计算机科学
化学
物理
数学
晶体结构
组合数学
凝聚态物理
操作系统
超导电性
有机化学
作者
Wenjie Zhou,Yuanwei Li,Kwanghwi Je,Thi Vo,Haixin Lin,Benjamin E. Partridge,Ziyin Huang,Sharon C. Glotzer,Chad A. Mirkin
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2024-01-18
卷期号:383 (6680): 312-319
被引量:15
标识
DOI:10.1126/science.adj1021
摘要
Generating space-filling arrangements of most discrete polyhedra nanostructures of the same shape is not possible. However, if the appropriate individual building blocks are selected (e.g., cubes), or multiple shapes of the appropriate dimensions are matched (e.g., octahedra and tetrahedra) and their pairing interactions are subsequently forced, space-filled architectures may be possible. With flexible molecular ligands (polyethylene glycol-modified DNA), the shape of a polyhedral nanoparticle can be deliberately altered and used to realize geometries that favor space tessellation. In this work, 10 new colloidal crystals were synthesized from DNA-modified nanocrystal building blocks that differed in shapes and sizes, designed to form space-filling architectures with micron-scale dimensions. The insights and capabilities provided by this new strategy substantially expand the scope of colloidal crystals possible and provide an expanded tool kit for researchers interested in designing metamaterials.
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