| openaire: EC/H2020/713645/EU//BioMEPThe inherent addressability of DNA origami structures makes them ideal templates for the arrangement of metal nanoparticles into complex plasmonic nanostructures. The high spatial precision of a DNA origami-templated assembly allows controlling the coupling between plasmonic resonances of individual particles and enables tailoring optical properties of the constructed nanostructures. Recently, chiral plasmonic systems attracted a lot of attention due to the strong correlation between the spatial configuration of plasmonic assemblies and their optical responses (e.g., circular dichroism [CD]). In this protocol, we describe the whole workflow for the generation of DNA origami-based chiral assemblies of go...
3D plasmonic chiral colloids are synthesized through deterministically grouping of two gold nanorod ...
Plasmonic structures allow the manipulation of light with materials that are smaller than the optica...
Discrete, three-dimensional (3D) gold nanoparticle (AuNP) tetrahedron nanoarchitectures are successf...
The inherent addressability of DNA origami structures makes them ideal templates for the arrangement...
Asymmetric three-dimensional (3D) nanoarchitectures that cannot coincide with their mirrored-symmetr...
Construction of three-dimensional (3D) plasmonic architectures using structural DNA nanotechnology i...
Arraying noble metal nanoparticles with nanoscale features is an important way to develop plasmonic ...
© 2018 American Chemical Society. The ability to dynamically tune the self-assembled structures of n...
Molecular chemistry offers a unique toolkit to draw inspiration for the design of artificial metamol...
Templated by DNA origami, plasmonic gold nanorods (AuNRs) could be assembled into complex nanostruct...
3D plasmonic chiral colloids are synthesized through deterministically grouping of two gold nanorod ...
Discrete three-dimensional (3D) plasmonic nanoarchitectures with well-defined spatial configuration ...
The ability to dynamically tune the self-assembled structures of nanoparticles is of significant int...
A great challenge for nanotechnology is to controllably organize anisotropic nanomaterials into well...
3D plasmonic chiral colloids are synthesized through deterministically grouping of two gold nanorod ...
3D plasmonic chiral colloids are synthesized through deterministically grouping of two gold nanorod ...
Plasmonic structures allow the manipulation of light with materials that are smaller than the optica...
Discrete, three-dimensional (3D) gold nanoparticle (AuNP) tetrahedron nanoarchitectures are successf...
The inherent addressability of DNA origami structures makes them ideal templates for the arrangement...
Asymmetric three-dimensional (3D) nanoarchitectures that cannot coincide with their mirrored-symmetr...
Construction of three-dimensional (3D) plasmonic architectures using structural DNA nanotechnology i...
Arraying noble metal nanoparticles with nanoscale features is an important way to develop plasmonic ...
© 2018 American Chemical Society. The ability to dynamically tune the self-assembled structures of n...
Molecular chemistry offers a unique toolkit to draw inspiration for the design of artificial metamol...
Templated by DNA origami, plasmonic gold nanorods (AuNRs) could be assembled into complex nanostruct...
3D plasmonic chiral colloids are synthesized through deterministically grouping of two gold nanorod ...
Discrete three-dimensional (3D) plasmonic nanoarchitectures with well-defined spatial configuration ...
The ability to dynamically tune the self-assembled structures of nanoparticles is of significant int...
A great challenge for nanotechnology is to controllably organize anisotropic nanomaterials into well...
3D plasmonic chiral colloids are synthesized through deterministically grouping of two gold nanorod ...
3D plasmonic chiral colloids are synthesized through deterministically grouping of two gold nanorod ...
Plasmonic structures allow the manipulation of light with materials that are smaller than the optica...
Discrete, three-dimensional (3D) gold nanoparticle (AuNP) tetrahedron nanoarchitectures are successf...