Casting inorganic structures with DNA molds

We report a general strategy for designing and synthesizing inorganic nanostructures with arbitrarily prescribed three-dimensional shapes. Computationally designed DNA strands self-assemble into a stiff "nanomold" that contains a user-specified three-dimensional cavity and encloses a nucle...

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Veröffentlicht in:Science (American Association for the Advancement of Science) 2014-11, Vol.346 (6210), p.717-717
Hauptverfasser: Sun, Wei, Boulais, Etienne, Hakobyan, Yera, Li Wang, Wei, Guan, Amy, Bathe, Mark, Yin, Peng
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Sprache:eng
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Zusammenfassung:We report a general strategy for designing and synthesizing inorganic nanostructures with arbitrarily prescribed three-dimensional shapes. Computationally designed DNA strands self-assemble into a stiff "nanomold" that contains a user-specified three-dimensional cavity and encloses a nucleating gold "seed." Under mild conditions, this seed grows into a larger cast structure that fills and thus replicates the cavity. We synthesized a variety of nanoparticles with 3-nanometer resolution: three distinct silver cuboids with three independently tunable dimensions, silver and gold nanoparticles with diverse cross sections, and composite structures with homo- and heterogeneous components. The designer equilateral silver triangular and spherical nanoparticles exhibited plasmonic properties consistent with electromagnetism-based simulations. Our framework is generalizable to more complex geometries and diverse inorganic materials, offering a range of applications in biosensing, photonics, and nanoelectronics.
ISSN:0036-8075
1095-9203
DOI:10.1126/science.1258361