International audienceWe demonstrate that symmetric or asymmetric gold nanoparticle dimers with substantial scattering cross sections and plasmon coupling can be produced with a perfectly controlled chemical environment and a high purity using a single DNA linker as short as 7 nm. A statistical analysis of the optical properties and morphology of single dimers is performed using darkfield and cryo-electron microscopies. These results, correlated to Mie theory calculations, indicate that the particle dimers are stretched in water by electrostatic interactions
DNA is a powerful tool to assemble gold nanoparticles into discrete structures with tunable plasmoni...
Nous montrons comment des dimères de nanoparticules d'or, assemblés sur un brin d'ADN unique présent...
Bonding individual metallic nanoparticles at small separation distances to let them form dimers and ...
International audienceWe demonstrate that symmetric or asymmetric gold nanoparticle dimers with subs...
A quantitative understanding of the localized surface plasmon resonances (LSPRs) of metallic nanostr...
Plasmon rulers consisting of optically coupled metal nanoparticles linked by biological macromolecul...
International audienceHybrid nanostructures, in which a known number of quantum emitters are strongl...
bS Supporting Information Gold nanoparticles (AuNPs) have been extensively studied asphotothermal1,2...
We demonstrate how gold nanoparticle dimers assembled around a single DNA template exhibiting a spec...
The optical properties of metallic particles change dramatically as the size shrinks to the nanoscal...
Gold nanostructures act as optical antennas : they couple efficiently in the near field to photon em...
Two‐photon photoluminescence (TPPL) emission spectra of DNA–gold nanoparticle (AuNP) monoconjugates ...
Two-photon photoluminescence (TPPL) emission spectra of DNA–gold nanoparticle (AuNP) monoconjugates ...
Single particle microscopy and spectroscopy strategies reveal hidden relationships between the surfa...
© 2016 American Chemical Society. We fabricate heterocomponent dimers built from a single 40 nm gold...
DNA is a powerful tool to assemble gold nanoparticles into discrete structures with tunable plasmoni...
Nous montrons comment des dimères de nanoparticules d'or, assemblés sur un brin d'ADN unique présent...
Bonding individual metallic nanoparticles at small separation distances to let them form dimers and ...
International audienceWe demonstrate that symmetric or asymmetric gold nanoparticle dimers with subs...
A quantitative understanding of the localized surface plasmon resonances (LSPRs) of metallic nanostr...
Plasmon rulers consisting of optically coupled metal nanoparticles linked by biological macromolecul...
International audienceHybrid nanostructures, in which a known number of quantum emitters are strongl...
bS Supporting Information Gold nanoparticles (AuNPs) have been extensively studied asphotothermal1,2...
We demonstrate how gold nanoparticle dimers assembled around a single DNA template exhibiting a spec...
The optical properties of metallic particles change dramatically as the size shrinks to the nanoscal...
Gold nanostructures act as optical antennas : they couple efficiently in the near field to photon em...
Two‐photon photoluminescence (TPPL) emission spectra of DNA–gold nanoparticle (AuNP) monoconjugates ...
Two-photon photoluminescence (TPPL) emission spectra of DNA–gold nanoparticle (AuNP) monoconjugates ...
Single particle microscopy and spectroscopy strategies reveal hidden relationships between the surfa...
© 2016 American Chemical Society. We fabricate heterocomponent dimers built from a single 40 nm gold...
DNA is a powerful tool to assemble gold nanoparticles into discrete structures with tunable plasmoni...
Nous montrons comment des dimères de nanoparticules d'or, assemblés sur un brin d'ADN unique présent...
Bonding individual metallic nanoparticles at small separation distances to let them form dimers and ...