Plasmonic sensors are extremely promising candidates for label-free single-molecule analysis but require exquisite control over the physical arrangement of metallic nanostructures. Here we employ self-assembly based on the DNA origami technique for accurate positioning of individual gold nanoparticles. Our innovative design leads to strong plasmonic coupling between two 40 nm gold nanoparticles reproducibly held with gaps of 3.3 ± 1 nm. This is confirmed through far field scattering measurements on individual dimers which reveal a significant red shift in the plasmonic resonance peaks, consistent with the high dielectric environment due to the surrounding DNA. We use surface-enhanced Raman scattering (SERS) to demonstrate local field enhanc...
Plasmonic molecules are small assemblies of metal nanoparticles with definitive bond angles and gap ...
© 2016 American Chemical Society. We fabricate heterocomponent dimers built from a single 40 nm gold...
During the last years, soft matter colloids have gained important achievements and a large amount of...
Plasmonic sensors are extremely promising candidates for label-free single-molecule analysis but req...
DNA origami is a powerful approach for assembling plasmonic nanoparticle dimers and Raman...
DNA nanotechnology holds great promise for the fabrication of novel plasmonic nanostructures and the...
DNA origami is a novel self-assembly technique allowing one to form various two-dimensional shapes a...
DNA origami is a novel self-assembly technique allowing one to form various 2D shapes and position m...
DNA origami technology allows for the precise nanoscale assembly of chemical entities that give rise...
<p>DNA origami is a novel self-assembly technique that can be used to form various </p><p>2D and 3D ...
We demonstrate the synthesis of Au nanostar dimers with tunable interparticle gap and controlled sto...
We report that plasmonic nanoantennas made by DNA origami can be used as reliable and efficient prob...
The programmable assembly of DNA strands is a promising tool for building tailored bottom-up nanostr...
AbstractSurface-enhanced Raman scattering (SERS) is a promising technology owing to its single-molec...
Localized surface plasmon resonance is a popular optical detection technique due to its ease of use....
Plasmonic molecules are small assemblies of metal nanoparticles with definitive bond angles and gap ...
© 2016 American Chemical Society. We fabricate heterocomponent dimers built from a single 40 nm gold...
During the last years, soft matter colloids have gained important achievements and a large amount of...
Plasmonic sensors are extremely promising candidates for label-free single-molecule analysis but req...
DNA origami is a powerful approach for assembling plasmonic nanoparticle dimers and Raman...
DNA nanotechnology holds great promise for the fabrication of novel plasmonic nanostructures and the...
DNA origami is a novel self-assembly technique allowing one to form various two-dimensional shapes a...
DNA origami is a novel self-assembly technique allowing one to form various 2D shapes and position m...
DNA origami technology allows for the precise nanoscale assembly of chemical entities that give rise...
<p>DNA origami is a novel self-assembly technique that can be used to form various </p><p>2D and 3D ...
We demonstrate the synthesis of Au nanostar dimers with tunable interparticle gap and controlled sto...
We report that plasmonic nanoantennas made by DNA origami can be used as reliable and efficient prob...
The programmable assembly of DNA strands is a promising tool for building tailored bottom-up nanostr...
AbstractSurface-enhanced Raman scattering (SERS) is a promising technology owing to its single-molec...
Localized surface plasmon resonance is a popular optical detection technique due to its ease of use....
Plasmonic molecules are small assemblies of metal nanoparticles with definitive bond angles and gap ...
© 2016 American Chemical Society. We fabricate heterocomponent dimers built from a single 40 nm gold...
During the last years, soft matter colloids have gained important achievements and a large amount of...