Publication | Closed Access
Gold‐Nanoparticle‐Mediated Jigsaw‐Puzzle‐like Assembly of Supersized Plasmonic DNA Origami
104
Citations
41
References
2015
Year
NanoarchitectonicsDna NanotechnologyOligonucleotide-functionalized Aunps FunctionEngineeringNanomaterialsNanotechnologySelf-assemblyMolecular Self-assemblyGold NanoparticlesNatural SciencesMolecular BiologyJigsaw‐puzzle‐like AssemblyNanofabricationMolecular EngineeringDna OrigamiBiomolecular EngineeringPlasmonic Material
DNA origami has rapidly emerged as a powerful and programmable method to construct functional nanostructures. However, the size limitation of approximately 100 nm in classic DNA origami hampers its plasmonic applications. Herein, we report a jigsaw-puzzle-like assembly strategy mediated by gold nanoparticles (AuNPs) to break the size limitation of DNA origami. We demonstrated that oligonucleotide-functionalized AuNPs function as universal joint units for the one-pot assembly of parent DNA origami of triangular shape to form sub-microscale super-origami nanostructures. AuNPs anchored at predefined positions of the super-origami exhibited strong interparticle plasmonic coupling. This AuNP-mediated strategy offers new opportunities to drive macroscopic self-assembly and to fabricate well-defined nanophotonic materials and devices.
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