The precise positioning of plasmonic nanoscale objects and organic molecules can significantly boost our ability to fabricate hybrid nanoarchitectures with specific target functionalities. In this work, we used a DNA origami structure to precisely localize three different fluorescent dyes close to the tips of hollow gold nanotriangles. A spectral dependence of plasmon-enhanced fluorescence is evidenced through colocalized AFM and fluorescence measurements. The experimental results match well with explanatory FDTD simulations. Our findings open the way to the bottom-up fabrication of plasmonic routers operating through plasmon energy transfer. They will allow one to actively control the direction of light propagation.Initiative d'excellence ...
Elaborating efficient strategies and deepening the understanding of light transport at the nanoscale...
We used DNA origami as a platform to coassemble a 20 nm gold nanoparticle (AuNP) and an organic fluo...
Nanoscale plasmonic waveguides composed of metallic nanoparticles are capable of guiding electromagn...
International audienceThe precise positioning of plasmonic nanoscale objects and organic molecules c...
Plasmonic nanoantennas allow for enhancing the spontaneous emission, altering the emission polarizat...
Plasmonic nanoantennas allow for enhancing the spontaneous emission, altering the emission polarizat...
Optical nanoantennas can affect the decay rates of nearby emitters by modifying the local density of...
The DNA origami technique provides an unprecedented method to create multiple copies of well-defined...
The specificity and simplicity of the Watson–Crick base pair interactions make DNA one of the most v...
Plasmonic waveguides consisting of metal nanoparticle chains can localize and guide light well below...
DNA nanotechnology provides a versatile toolbox for creating custom and accurate shapes that can ser...
We study the distance-dependent quenching of fluorescence due to a metallic nanoparticle in proximit...
Manipulating light by controlling surface plasmons on metals is being discussed as a means for bridg...
Nanophotonische Strukturen sind in der Lage das Licht zu kontrollieren und auch zu manipulieren. Ein...
Nanoscale plasmonic waveguides composed of metallic nanoparticles are capable of guiding electromagn...
Elaborating efficient strategies and deepening the understanding of light transport at the nanoscale...
We used DNA origami as a platform to coassemble a 20 nm gold nanoparticle (AuNP) and an organic fluo...
Nanoscale plasmonic waveguides composed of metallic nanoparticles are capable of guiding electromagn...
International audienceThe precise positioning of plasmonic nanoscale objects and organic molecules c...
Plasmonic nanoantennas allow for enhancing the spontaneous emission, altering the emission polarizat...
Plasmonic nanoantennas allow for enhancing the spontaneous emission, altering the emission polarizat...
Optical nanoantennas can affect the decay rates of nearby emitters by modifying the local density of...
The DNA origami technique provides an unprecedented method to create multiple copies of well-defined...
The specificity and simplicity of the Watson–Crick base pair interactions make DNA one of the most v...
Plasmonic waveguides consisting of metal nanoparticle chains can localize and guide light well below...
DNA nanotechnology provides a versatile toolbox for creating custom and accurate shapes that can ser...
We study the distance-dependent quenching of fluorescence due to a metallic nanoparticle in proximit...
Manipulating light by controlling surface plasmons on metals is being discussed as a means for bridg...
Nanophotonische Strukturen sind in der Lage das Licht zu kontrollieren und auch zu manipulieren. Ein...
Nanoscale plasmonic waveguides composed of metallic nanoparticles are capable of guiding electromagn...
Elaborating efficient strategies and deepening the understanding of light transport at the nanoscale...
We used DNA origami as a platform to coassemble a 20 nm gold nanoparticle (AuNP) and an organic fluo...
Nanoscale plasmonic waveguides composed of metallic nanoparticles are capable of guiding electromagn...