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  4. Designing DNA-grafted particles that self-assemble into desired crystalline structures using the genetic algorithm
 
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Designing DNA-grafted particles that self-assemble into desired crystalline structures using the genetic algorithm

Source
Proceedings of the National Academy of Sciences of the United States of America
ISSN
00278424
Date Issued
2013-11-12
Author(s)
Srinivasana, Babji
Vo, Thi
Zhang, Yugang
Gang, Oleg
Kumar, Sanat
Venkatasubramanian, Venkat
DOI
10.1073/pnas.1316533110
Volume
110
Issue
46
Abstract
In conventional research, colloidal particles grafted with single-stranded DNA are allowed to self-assemble, and then the resulting crystal structures are determined. Although this Edisonian approach is useful for a posteriori understanding of the factors governing assembly, it does not allow one to a priori design ssDNA-grafted colloids that will assemble into desired structures. Here we address precisely this design issue, and present an experimentally validated evolutionary optimization methodology that is not only able to reproduce the original phase diagram detailing regions of known crystals, but is also able to elucidate several previously unobserved structures. Although experimental validation of these structures requires further work, our early success encourages us to propose that this genetic algorithm-based methodology is a promising and rational materials-design paradigm with broad potential applications.
Publication link
https://www.pnas.org/content/pnas/110/46/18431.full.pdf
URI
https://d8.irins.org/handle/IITG2025/21130
Subjects
Crystal lattice predictions | DNA-grafted colloids | Evolutionary algorithm | Inverse design | Nanostructures
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