The arrangements of metal nanoparticles into spatially ordered structures is still challenging, but DNA-based nanostructures have proven to be feasible building blocks in directing the higher-ordered arrangements of nanoparticles. However, an additional DNA functionalization of the particles is often required to link them to the DNA frames. Herein, we show that ordered 3D metal nanoparticle superlattices could be formed also by plainly employing electrostatic interactions between particles and DNA nanostructures. By utilizing the negatively charged DNA origami surface, we were able to assemble 6-helix bundle DNA origami and cationic gold nanoparticles (AuNPs) into well-ordered 3D tetragonal superlattices. Further, the results reveal that sh...
Here we demonstrate Au nanoparticle self-similar chain structure organized by triangle DNA origami w...
Artificial DNA nanostructures, such as DNA origami, have great potential as templates for the bottom...
Artificial DNA nanostructures, such as DNA origami, have great potential as templates for the bottom...
The arrangements of metal nanoparticles into spatially ordered structures is still challenging, but ...
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...
Nanostructured materials, including plasmonic metamaterials made from gold and silver nanoparticles,...
Scaffolded DNA origami has proven to be a versatile method for generating functional nanostructures ...
Nanostructured materials, including plasmonic metamaterials made from gold and silver nanoparticles,...
3D crystals assembled entirely from DNA provide a route to design materials on a molecular level and...
3D crystals assembled entirely from DNA provide a route to design materials on a molecular level and...
Over the last decade, DNA origami has matured into one of the most powerful bottom-up nanofabricatio...
DNA origami has become an established technique for designing well-defined nanostructures with any d...
DNA nanotechnology represents a powerful medium for manipulating the nanoscale arrangement of functi...
Here we demonstrate Au nanoparticle self-similar chain structure organized by triangle DNA origami w...
Artificial DNA nanostructures, such as DNA origami, have great potential as templates for the bottom...
Artificial DNA nanostructures, such as DNA origami, have great potential as templates for the bottom...
The arrangements of metal nanoparticles into spatially ordered structures is still challenging, but ...
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...
Nanostructured materials, including plasmonic metamaterials made from gold and silver nanoparticles,...
Scaffolded DNA origami has proven to be a versatile method for generating functional nanostructures ...
Nanostructured materials, including plasmonic metamaterials made from gold and silver nanoparticles,...
3D crystals assembled entirely from DNA provide a route to design materials on a molecular level and...
3D crystals assembled entirely from DNA provide a route to design materials on a molecular level and...
Over the last decade, DNA origami has matured into one of the most powerful bottom-up nanofabricatio...
DNA origami has become an established technique for designing well-defined nanostructures with any d...
DNA nanotechnology represents a powerful medium for manipulating the nanoscale arrangement of functi...
Here we demonstrate Au nanoparticle self-similar chain structure organized by triangle DNA origami w...
Artificial DNA nanostructures, such as DNA origami, have great potential as templates for the bottom...
Artificial DNA nanostructures, such as DNA origami, have great potential as templates for the bottom...