直觉
超材料
格子(音乐)
纳米技术
统计物理学
DNA折纸
反向
材料科学
各向同性
计算机科学
生物系统
物理
光学
纳米结构
几何学
数学
生物
哲学
声学
认识论
作者
Hao Liu,Michael Matthies,John Russo,Lorenzo Rovigatti,Raghu Pradeep Narayanan,Thong Diep,Daniel McKeen,Oleg Gang,Nicholas Stephanopoulos,Francesco Sciortino,Hao Yan,Flavio Romano,Petr Šulc
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2024-05-16
卷期号:384 (6697): 776-781
被引量:93
标识
DOI:10.1126/science.adl5549
摘要
Sophisticated statistical mechanics approaches and human intuition have demonstrated the possibility of self-assembling complex lattices or finite-size constructs. However, attempts so far have mostly only been successful in silico and often fail in experiment because of unpredicted traps associated with kinetic slowing down (gelation, glass transition) and competing ordered structures. Theoretical predictions also face the difficulty of encoding the desired interparticle interaction potential with the experimentally available nano- and micrometer-sized particles. To overcome these issues, we combine SAT assembly (a patchy-particle interaction design algorithm based on constrained optimization) with coarse-grained simulations of DNA nanotechnology to experimentally realize trap-free self-assembly pathways. We use this approach to assemble a pyrochlore three-dimensional lattice, coveted for its promise in the construction of optical metamaterials, and characterize it with small-angle x-ray scattering and scanning electron microscopy visualization.
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