Nanostructured materials, including plasmonic metamaterials made from gold and silver nanoparticles, provide access to new materials properties. The assembly of nanoparticles into extended arrays can be controlled through surface functionalization and the use of increasingly sophisticated linkers. We present a versatile way to control the bonding symmetry of gold nanoparticles by wrapping them in flower-shaped DNA origami structures. These ‘nanoflowers’ assemble into two-dimensonal gold nanoparticle lattices with symmetries that can be controlled through auxiliary DNA linker strands. Nanoflower lattices are true composites: interactions between the gold nanoparticles are mediated entirely by DNA, and the DNA origami will only fold into its ...
Here we demonstrate Au nanoparticle self-similar chain structure organized by triangle DNA origami w...
Construction of three-dimensional (3D) plasmonic architectures using structural DNA nanotechnology i...
The hybridization of gold nanoparticles (AuNPs), along with other nanomaterials, has encouraged appl...
Nanostructured materials, including plasmonic metamaterials made from gold and silver nanoparticles,...
Gold nanoparticles have attracted extensive research interests due to their unique optical, electric...
Arraying noble metal nanoparticles with nanoscale features is an important way to develop plasmonic ...
DNA self-assembly is a powerful route to the production of very small, complex structures. When used...
DNA self-assembly is a powerful route to the production of very small, complex structures. When used...
DNA self-assembly is a powerful route to the production of very small, complex structures. When used...
The arrangements of metal nanoparticles into spatially ordered structures is still challenging, but ...
The arrangements of metal nanoparticles into spatially ordered structures is still challenging, but ...
The inherent addressability of DNA origami structures makes them ideal templates for the arrangement...
| openaire: EC/H2020/713645/EU//BioMEPThe inherent addressability of DNA origami structures makes th...
DNA origami has become an established technique for designing well-defined nanostructures with any d...
One on each side: Gold nanoparticles (AuNPs) and semiconducting quantum dots (QDs) are integrated on...
Here we demonstrate Au nanoparticle self-similar chain structure organized by triangle DNA origami w...
Construction of three-dimensional (3D) plasmonic architectures using structural DNA nanotechnology i...
The hybridization of gold nanoparticles (AuNPs), along with other nanomaterials, has encouraged appl...
Nanostructured materials, including plasmonic metamaterials made from gold and silver nanoparticles,...
Gold nanoparticles have attracted extensive research interests due to their unique optical, electric...
Arraying noble metal nanoparticles with nanoscale features is an important way to develop plasmonic ...
DNA self-assembly is a powerful route to the production of very small, complex structures. When used...
DNA self-assembly is a powerful route to the production of very small, complex structures. When used...
DNA self-assembly is a powerful route to the production of very small, complex structures. When used...
The arrangements of metal nanoparticles into spatially ordered structures is still challenging, but ...
The arrangements of metal nanoparticles into spatially ordered structures is still challenging, but ...
The inherent addressability of DNA origami structures makes them ideal templates for the arrangement...
| openaire: EC/H2020/713645/EU//BioMEPThe inherent addressability of DNA origami structures makes th...
DNA origami has become an established technique for designing well-defined nanostructures with any d...
One on each side: Gold nanoparticles (AuNPs) and semiconducting quantum dots (QDs) are integrated on...
Here we demonstrate Au nanoparticle self-similar chain structure organized by triangle DNA origami w...
Construction of three-dimensional (3D) plasmonic architectures using structural DNA nanotechnology i...
The hybridization of gold nanoparticles (AuNPs), along with other nanomaterials, has encouraged appl...