Fabrication of plasmonic metamolecules (PMs) with rationally designed complexity is one of the major goals of nanotechnology. Most self-assembled PMs, however, have been constructed using single-component systems. The corresponding plasmonic assemblies still suffer from the lack of complexity, which is required to achieve a high degree of functionality. Here, we report a general applicable strategy that can realize a series of high-ordered hetero-PMs using bottom-up DNA self-assembly. DNA-functionalized differently shaped nanoparticles were deliberately arranged in prescribed positions on 3D triangular DNA origami frames to form various hetero-PMs. Importantly, we showed that the optical properties of assembled PMs could be facially tuned b...
Scaffolded DNA origami has proven to be a versatile method for generating functional nanostructures ...
As a step toward deterministic and scalable assembly of ordered spin arrays we here demonstrate a bo...
Nanostructured materials, including plasmonic metamaterials made from gold and silver nanoparticles,...
Arraying noble metal nanoparticles with nanoscale features is an important way to develop plasmonic ...
Plasmonic structures allow the manipulation of light with materials that are smaller than the optica...
Plasmonic molecules are small assemblies of metal nanoparticles with definitive bond angles and gap ...
Plasmonic structures allow the manipulation of light with materials that are smaller than the optica...
The specificity and simplicity of the Watson–Crick base pair interactions make DNA one of the most v...
The specificity and simplicity of the Watson Crick base pair interactions make DNA one of the most v...
The rational design of anisotropic interaction patterns is a key step for programming colloid and na...
The specificity and simplicity of the Watson Crick base pair interactions make DNA one of the most v...
The inherent addressability of DNA origami structures makes them ideal templates for the arrangement...
Distinct electromagnetic properties can emerge from the three-dimensional (3D) configuration of a pl...
The DNA origami technique provides an unprecedented method to create multiple copies of well-defined...
A reconfigurable plasmonic nanosystem combines an active plasmonic structure with a regulated physic...
Scaffolded DNA origami has proven to be a versatile method for generating functional nanostructures ...
As a step toward deterministic and scalable assembly of ordered spin arrays we here demonstrate a bo...
Nanostructured materials, including plasmonic metamaterials made from gold and silver nanoparticles,...
Arraying noble metal nanoparticles with nanoscale features is an important way to develop plasmonic ...
Plasmonic structures allow the manipulation of light with materials that are smaller than the optica...
Plasmonic molecules are small assemblies of metal nanoparticles with definitive bond angles and gap ...
Plasmonic structures allow the manipulation of light with materials that are smaller than the optica...
The specificity and simplicity of the Watson–Crick base pair interactions make DNA one of the most v...
The specificity and simplicity of the Watson Crick base pair interactions make DNA one of the most v...
The rational design of anisotropic interaction patterns is a key step for programming colloid and na...
The specificity and simplicity of the Watson Crick base pair interactions make DNA one of the most v...
The inherent addressability of DNA origami structures makes them ideal templates for the arrangement...
Distinct electromagnetic properties can emerge from the three-dimensional (3D) configuration of a pl...
The DNA origami technique provides an unprecedented method to create multiple copies of well-defined...
A reconfigurable plasmonic nanosystem combines an active plasmonic structure with a regulated physic...
Scaffolded DNA origami has proven to be a versatile method for generating functional nanostructures ...
As a step toward deterministic and scalable assembly of ordered spin arrays we here demonstrate a bo...
Nanostructured materials, including plasmonic metamaterials made from gold and silver nanoparticles,...