DNA origami has taken a leading position in organizing materials at the nanoscale for various applications such as manipulation of light by exploiting plasmonic nanoparticles. We here present the arrangement of gold nanorods in a plasmonic nanoantenna dimer enabling up to 1600-fold fluorescence enhancement of a conventional near-infrared (NIR) dye positioned at the plasmonic hotspot between the nanorods. Transmission electron microscopy, dark-field spectroscopy, and fluorescence analysis together with numerical simulations give us insights on the heterogeneity of the observed enhancement values. The size of our hotspot region is ∼12 nm, granted by using the recently introduced design of NAnoantenna with Cleared HotSpot (NACHOS), which provi...
Plasmonic sensors are extremely promising candidates for label-free single-molecule analysis but req...
Coupling to metal nanoparticles can increase the fluorescence intensity and photostability of fluore...
ABSTRACT We investigate the optical response of a gold nanorod array coupled with a semicontinuous n...
Metal-enhanced fluorescence has attracted much attention due to its scientific importance and lots o...
We perform time-resolved fluorescence spectroscopy on clusters of plasmonic nanoantennas covered wit...
Optical nanoantennas can affect the decay rates of nearby emitters by modifying the local density of...
Plasmon coupling interactions between adjacent noble metal nanoparticles (NPs) can cause significant...
Gold nanorods have been pursued due to their unique optoelectronic properties, which have led to pot...
Optical nanoantennas are known to focus freely propagating light and reversely to mediate the emissi...
Metal-enhanced fluorescence (MEF), resulting from the near-field interaction of fluorophores with me...
Gold nanostructures act as optical antennas : they couple efficiently in the near field to photon em...
The potential of highly ordered array nanostructures in sensing applications is well recognized, par...
Optical theranostic applications demand near‐infrared (NIR) localized surface plasmon resonance (LSP...
Plasmonic waveguides consisting of metal nanoparticle chains can localize and guide light well below...
Paired metallic nanoparticles can show a strong optical resonance that depends strongly upon particl...
Plasmonic sensors are extremely promising candidates for label-free single-molecule analysis but req...
Coupling to metal nanoparticles can increase the fluorescence intensity and photostability of fluore...
ABSTRACT We investigate the optical response of a gold nanorod array coupled with a semicontinuous n...
Metal-enhanced fluorescence has attracted much attention due to its scientific importance and lots o...
We perform time-resolved fluorescence spectroscopy on clusters of plasmonic nanoantennas covered wit...
Optical nanoantennas can affect the decay rates of nearby emitters by modifying the local density of...
Plasmon coupling interactions between adjacent noble metal nanoparticles (NPs) can cause significant...
Gold nanorods have been pursued due to their unique optoelectronic properties, which have led to pot...
Optical nanoantennas are known to focus freely propagating light and reversely to mediate the emissi...
Metal-enhanced fluorescence (MEF), resulting from the near-field interaction of fluorophores with me...
Gold nanostructures act as optical antennas : they couple efficiently in the near field to photon em...
The potential of highly ordered array nanostructures in sensing applications is well recognized, par...
Optical theranostic applications demand near‐infrared (NIR) localized surface plasmon resonance (LSP...
Plasmonic waveguides consisting of metal nanoparticle chains can localize and guide light well below...
Paired metallic nanoparticles can show a strong optical resonance that depends strongly upon particl...
Plasmonic sensors are extremely promising candidates for label-free single-molecule analysis but req...
Coupling to metal nanoparticles can increase the fluorescence intensity and photostability of fluore...
ABSTRACT We investigate the optical response of a gold nanorod array coupled with a semicontinuous n...