DNA-based self-assembly of chiral plasmonic nanostructures with tailored optical response
Explore this paper's citation graph
Summary
It is shown that DNA origami enables the high-yield production of plasmonic structures that contain nanoparticles arranged in nanometre-scale helices, and it is found that the structures in solution exhibit defined circular dichroism and optical rotatory dispersion effects at visible wavelengths that originate from the collective plAsmon–plasmon interactions of the nanoparticles positioned with an accuracy better than two nanometres.
- Type
- article
- Published
- 2011-08-18
- Cited by
- 1,985
- References
- 44
- Access
- Open access
- OpenAlex
- https://openalex.org/W2049721533
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:4418237
Keywords
DNA origami, Plasmon, Nanotechnology, Materials science, Fabrication
References
- Negative refraction makes a perfect lens
- Metamaterials: a new frontier of science and technology.
- Circular Dichroism: Principles and Applications
- Self-assembly of DNA into nanoscale three-dimensional shapes
- Past achievements and future challenges in the development of three-dimensional photonic metamaterials
- Giant Gold−Glutathione Cluster Compounds: Intense Optical Activity in Metal-Based Transitions
- Control of Self-Assembly of DNA Tubules Through Integration of Gold Nanoparticles
- Gold Helix Photonic Metamaterial as Broadband Circular Polarizer
- DNA-nanotube-induced alignment of membrane proteins for NMR structure determination
- Plasmonic nanoclusters: a path towards negative-index metafluids.
- Chirality of silver nanoparticles synthesized on DNA.
- Giant optical activity in quasi-two-dimensional planar nanostructures.
- A Hybridization Model for the Plasmon Response of Complex Nanostructures
- Pyramidal and Chiral Groupings of Gold Nanocrystals Assembled Using DNA Scaffolds
- Sequence-Specific Molecular Lithography on Single DNA Molecules
- A Chiral Route to Negative Refraction
- Templated techniques for the synthesis and assembly of plasmonic nanostructures.
- Applied physics. Plasmonics applied.
- Chiral inorganic nanoparticles: origin, optical properties and bioapplications.
- Preparation of unique 1-D nanoparticle superstructures and tailoring their structural features.
Cited by
- Chirality and Chiroptical Effects in Plasmonic Nanostructures: Fundamentals, Recent Progress, and Outlook
- Molecular threading and tunable molecular recognition on DNA origami nanostructures.
- DNA Brick Crystals with Prescribed Depth
- Aggregation of inorganic nanoparticles mediated by biomimetic oligomers.
- Dynamic Chiral Nanoparticle Assemblies and Specific Chiroplasmonic Analysis of Cancer Cells
- Plasmon-Exciton Coupling Using DNA Templates.
- Block Copolymer Micellization as a Protection Strategy for DNA Origami.
- Core–Shell Plasmonic Nanohelices
- Spectral signatures of charge transfer in assemblies of molecularly-linked plasmonic nanoparticles
- Plasmonic nanostructures through DNA-assisted lithography
- Exploring the Addressability of DNA Decorated Multifunctional Gold Nanoparticles with DNA Origami Template.
- Triggered Reversible Reconfiguration of G-Quadruplex-Bridged "Domino"-Type Origami Dimers: Application of the Systems for Programmed Catalysis.
- DNA-Decorated, Helically Twisted Nanoribbons: A Scaffold for the Fabrication of One-Dimensional, Chiral, Plasmonic Nanostructures.
- Photon Management through Virus‐Programmed Supramolecular Arrays
- Controlled Hierarchical Self-Assembly of Nanoparticles and Chiral Molecules into Tubular Nanocomposites.
- Detection of Stochastic and Heterogeneous Behaviors in DNA Nanodevices by Super-Resolution Fluorescence Microscopy.
- Metallic Nanostructures Based on Self-Assembling DNA Templates for Studying Optical Phenomena
- Préparation et auto-assemblage de nanobâtonnets fonctionnalisés pour la photo oxydo-réduction catalytique
- Sélection d'anticorps recombinants dirigés contre des matériaux inorganiques pour des applications en nanosciences
- DNA Nanostructures as Programmable Biomolecular Scaffolds.
Related papers
- Beyond the smiley face: applications of structural DNA nanotechnology
- Surface Assembly of DNA Origami on a Lipid Bilayer Observed Using High-Speed Atomic Force Microscopy
- Recent progress in DNA origami
- Mimicking membrane-related biological events by DNA origami nanotechnology.
- Dynamic DNA Origami-Based Nanoparticle Assemblies
- Hierarchically assembled DNA origami tubules with reconfigurable chirality
- DNA Nanostructures on Membranes as Tools for Synthetic Biology
- DNA origami: the art of folding DNA.
- The Energy Landscape for the Self-Assembly of a Two-Dimensional DNA Origami Complex.